WO2012116278A1 - Cannabinoid receptor modulators - Google Patents

Cannabinoid receptor modulators Download PDF

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Publication number
WO2012116278A1
WO2012116278A1 PCT/US2012/026510 US2012026510W WO2012116278A1 WO 2012116278 A1 WO2012116278 A1 WO 2012116278A1 US 2012026510 W US2012026510 W US 2012026510W WO 2012116278 A1 WO2012116278 A1 WO 2012116278A1
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WIPO (PCT)
Prior art keywords
alkyl
aryl
heteroaryl
alkoxy
compound
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PCT/US2012/026510
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French (fr)
Inventor
Jayant Thatte
Anthony C. Blackburn
Sangdon Han
Robert M. Jones
Jae-Kyu Jung
Anthony Garrido MONTALBAN
Biman B. PAL
Jaimie Karyn Rueter
Sonja Strah-Pleynet
Lars Thoresen
Yifeng Xiong
Dawei Yue
Xiuwen Zhu
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Arena Pharmaceuticals, Inc.
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Publication of WO2012116278A1 publication Critical patent/WO2012116278A1/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K31/00Medicinal preparations containing organic active ingredients
    • A61K31/33Heterocyclic compounds
    • A61K31/395Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
    • A61K31/41Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
    • A61K31/4151,2-Diazoles
    • A61K31/4161,2-Diazoles condensed with carbocyclic ring systems, e.g. indazole
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K31/00Medicinal preparations containing organic active ingredients
    • A61K31/33Heterocyclic compounds
    • A61K31/395Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
    • A61K31/435Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
    • A61K31/44Non condensed pyridines; Hydrogenated derivatives thereof
    • A61K31/4427Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems
    • A61K31/4439Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems containing a five-membered ring with nitrogen as a ring hetero atom, e.g. omeprazole
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K31/00Medicinal preparations containing organic active ingredients
    • A61K31/33Heterocyclic compounds
    • A61K31/395Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
    • A61K31/495Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
    • A61K31/4965Non-condensed pyrazines
    • A61K31/497Non-condensed pyrazines containing further heterocyclic rings
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K45/00Medicinal preparations containing active ingredients not provided for in groups A61K31/00 - A61K41/00
    • A61K45/06Mixtures of active ingredients without chemical characterisation, e.g. antiphlogistics and cardiaca
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P19/00Drugs for skeletal disorders
    • A61P19/02Drugs for skeletal disorders for joint disorders, e.g. arthritis, arthrosis

Definitions

  • Cannabinoids are a group of extracellular signaling molecules that are found in both plants and animals. Signals from these molecules are mediated in animals by two G-protein coupled receptors, Cannnabinoid Receptor 1 (CB and Cannabinoid Receptor 2 (CB 2 ). CBi is expressed most abundantly in the neurons of the CNS but is also present at lower concentrations in a variety of peripheral tissues and cells (Matsuda, L. A. et al. (1990) Nature 346:561-564). In contrast, CB 2 is expressed predominantly, although not exclusively, in non-neural tissues, e.g.
  • CBi is believed to be primarily responsible for mediating the psychotropic effects of cannabinoids on the body, whereas CB 2 is believed to be primarily responsible for most of their non-neural effects.
  • composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • composition comprising a compound of Formula la or a
  • Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof, one or more known pharmaceutical agents selected from osteoarthritis agents, and a pharmaceutically acceptable carrier.
  • composition obtained by any of the methods described herein.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents; for treating osteoarthritis in an individual.
  • Figure 1 shows the effect of Compound 493 in the monosodium iodoacetate (MIA) model of osteoarthritis in rats at 1 h post dosing. See Example 5.
  • Figure 2 shows a general synthesis of compounds described herein wherein X is CC(0)N(R 8 )R 9 and Y is NR 7 .
  • a 2-(but-3-enyl)oxirane derivative is cyclized by treatment with a base.
  • the resulting bicyclic alcohol is oxidized to the ketone and reacted with a dialkyl oxalate derivative in the presence of a base.
  • the pyrazole ring is then formed by reaction with a substituted hydrazine and the resulting ester is hydrolyzed and coupled with an amine to form compounds described herein.
  • Figure 3 shows a general synthesis of compounds described herein in which R 7 is a 4- oxy-pyrazin-2-yl group.
  • Figure 4 shows a general synthesis of compounds described herein similar to the one shown in Figure 2 except the group R 7 is introduced subsequent to the formation of a tri- substituted pyrazole.
  • Figure 5 shows a general synthesis of compounds described herein in which R 7 is either a 5-substituted-pyridin-2-yl group or a 5-substituted-pyrazin-2-yl group.
  • Figure 6 shows a general synthesis of compounds described herein in which R 7 is a 4- substituted-pyridin-2-yl group.
  • Figure 7 shows a general synthesis of compounds described herein wherein X is NR 7 and Y is CC(0)N(R 8 )R 9 .
  • X is NR 7 and Y is CC(0)N(R 8 )R 9 .
  • a bicyclo[3.1.0]hexan-3-ol derivative is oxidized and the resulting ketone is reacted with a dialkyl oxalate derivative in the presence of a base.
  • the pyrazole ring is then formed by reaction with a substituted hydrazine and the resulting ester is hydrolyzed and coupled with an amine to form compounds described herein.
  • Figure 8 shows a differential scanning calorimetry (DSC) thermogram for a sample containing a crystalline form of Compound 699 CH 2 C1 2 solvate and a thermogravimetric analysis (TGA) thermogram of a sample containing a crystalline form of Compound 699 CH 2 C1 2 solvate.
  • DSC differential scanning calorimetry
  • TGA thermogravimetric analysis
  • Figure 9 shows an overlay of a powder X-ray diffraction pattern (PXRD) for a sample containing a crystalline form of Compound 699 CH 2 C1 2 solvate obtained from recrystallization using CH 2 Cl 2 /hexane (Top Trace) and a powder X-ray diffraction pattern (PXRD) for a sample containing a crystalline form of Compound 699 CH 2 C1 2 solvate obtained by slurrying non- solvated Compound 699 in CH 2 C1 2 (Bottom Trace).
  • the PXRD showed the crystalline solvate obtained from the CH 2 C1 2 slurry is substantially indistinguishable from the crystalline solvate resulting from recrystallized from CH 2 Cl 2 /hexane.
  • Figure 10 shows the effect of Compound 669 (1 mpk) and morphine (1 mpk) in relieving osteoarthritis pain. See Example 6.
  • Figure 11 shows a powder X-ray diffraction pattern (PXRD) for a sample containing an anhydrous crystalline form of Compound 699.
  • PXRD powder X-ray diffraction pattern
  • Figure 12 shows a differential scanning calorimetry (DSC) thermogram for a sample containing an anhydrous crystalline form of Compound 699 and a thermogravimetric analysis (TGA) thermogram of a sample containing an anhydrous crystalline form of Compound 699.
  • DSC differential scanning calorimetry
  • TGA thermogravimetric analysis
  • Figure 13 shows an adsorption and desorption isotherm
  • analgesic agent is intended to mean any biomolecule, drug or active agent that alleviates or prevents pain.
  • co-analgesic agent is intended to mean a drug that typically addresses indications other than pain relief, but possesses analgesic action for certain painful conditions.
  • agonist is intended to mean a moiety that interacts with and activates a G- protein-coupled receptor, for instance a cannabinoid receptor, and can thereby initiate a physiological or pharmacological response characteristic of that receptor.
  • a G- protein-coupled receptor for instance a cannabinoid receptor
  • an agonist may activate an intracellular response upon binding to a receptor, or enhance GTP binding to a membrane.
  • antagonist is intended to mean a moiety that competitively binds to the receptor at the same site as an agonist (for example, the endogenous ligand), but which does not activate the intracellular response initiated by the active form of the receptor and can thereby inhibit the intracellular responses by an agonist or partial agonist.
  • An antagonist does not diminish the baseline intracellular response in the absence of an agonist or partial agonist.
  • hydrate as used herein means a compound described herein or a salt thereof, that further includes a stoichiometric or non-stoichiometric amount of water bound by non- covalent intermolecular forces.
  • solvate means a compound described herein or a salt, thereof, that further includes a stoichiometric or non-stoichiometric amount of a solvent bound by non- covalent intermolecular forces.
  • the solvents are volatile, non-toxic, and/or acceptable for administration to humans in trace amounts.
  • in need of treatment and the term “in need thereof when referring to treatment are used interchangeably to mean a judgment made by a caregiver (e.g. physician, nurse, nurse practitioner, etc. in the case of humans; veterinarian in the case of animals, including non-human mammals) that an individual or animal requires or will benefit from treatment. This judgment is made based on a variety of factors that are in the realm of a caregiver's expertise, but that includes the knowledge that the individual or animal is ill, or will become ill, as the result of a disease, condition or disorder that is treatable by the compounds described herein. Accordingly, the compounds described herein can be used in a protective or preventive manner; or compounds described herein can be used to alleviate, inhibit or ameliorate the disease, condition or disorder.
  • a caregiver e.g. physician, nurse, nurse practitioner, etc. in the case of humans; veterinarian in the case of animals, including non-human mammals
  • mice are intended to mean any animal, including mammals, such as mice, rats, other rodents, rabbits, dogs, cats, swine, cattle, sheep, horses, or primates, and in some embodiments, humans.
  • inverse agonist is intended to mean a moiety that binds to the endogenous form of the receptor or to the constitutively activated form of the receptor and which inhibits the baseline intracellular response initiated by the active form of the receptor below the normal base level of activity which is observed in the absence of an agonist or partial agonist, or decreases GTP binding to a membrane.
  • the baseline intracellular response is inhibited in the presence of the inverse agonist by at least 30%, such as by at least 50% and for example, by at least 75%, as compared with the baseline response in the absence of the inverse agonist.
  • modulate or modulating is intended to mean an increase or decrease in the amount, quality, response or effect of a particular activity, function or molecule.
  • composition is intended to mean a composition comprising at least one active ingredient; including but not limited to, salts, solvates, and hydrates of compounds described herein, whereby the composition is amenable to investigation for a specified, efficacious outcome in a mammal (for example, without limitation, a human).
  • a mammal for example, without limitation, a human.
  • terapéuticaally effective amount is intended to mean the amount of active compound or pharmaceutical agent that elicits the biological or medicinal response in a tissue, system, animal, individual or human that is being sought by a researcher, veterinarian, medical doctor or other clinician or caregiver or by an individual, which includes one or more of the following:
  • Preventing the disease for example, preventing a disease, condition or disorder in an individual that may be predisposed to the disease, condition or disorder but does not yet experience or display the pathology or symptomatology of the disease;
  • Inhibiting the disease for example, inhibiting a disease, condition or disorder in an individual that is experiencing or displaying the pathology or symptomatology of the disease, condition or disorder (i.e., arresting further development of the pathology and/or
  • Ameliorating the disease for example, ameliorating a disease, condition or disorder in an individual that is experiencing or displaying the pathology or symptomatology of the disease, condition or disorder (i.e., reversing the pathology and/or symptomatology).
  • Ci-C 4 acyl is intended to mean a radical comprising a Ci-C 4 alkyl group attached to the carbon of a carbonyl group, wherein Ci-C 4 alkyl has the same definition as found herein. Examples include, but are not limited to acetyl, propionyl, butyryl, isobutyryl, pivaloyl, and the like.
  • amino is intended to mean the group -NH 2 .
  • aryl is intended to mean a ring system containing 6 to 10 carbon atoms, that may contain a single ring or two fused rings, and wherein at least one ring is aromatic. Examples include phenyl, indanyl, and naphthyl.
  • arylamino is intended to mean a radical comprising an aryl group, attached to a nitrogen, wherein aryl has the same definition as found herein. Examples include, but are not limited to, phenylamino and naphthylamino.
  • arylcarbonyl is intended to mean a radical comprising an aryl group, attached to the carbon atom of a carbonyl group, wherein aryl has the same definition as found herein. Examples include, but are not limited to, benzoyl and naphthylcarbonyl.
  • aryloxy is intended to mean a radical comprising an aryl group, attached to an oxygen, wherein aryl has the same definition as found herein. Examples include, but are not limited to, phenoxy and naphthyloxy.
  • Ci-C 6 alkoxy is intended to mean a radical comprising a Ci-C 6 alkyl group attached directly to an oxygen atom, wherein C 1 -C6 alkyl has the same definition as found herein. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons.
  • Examples include, but are not limited to methoxy, ethoxy, «-propoxy, isopropoxy, «-butoxy, t- butoxy, isobutoxy, s-butoxy, and the like.
  • C 1 -C6 alkoxycarbonyl is intended to mean a radical comprising a single d- (, alkoxy group attached to the carbon of a carbonyl group, wherein C 1 -C6 alkoxy has the same definition as found herein.
  • the alkoxycarbonyl group may be represented by the following:
  • Ci-C 6 alkyl is intended to mean a straight or branched carbon radical containing 1 to 6 carbons. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 isopropyl, n-butyl, s-butyl, isobutyl, i-butyl, pentyl, isopentyl, i-pentyl, neopentyl, 1-methylbutyl [i.e. , -CH(CH 3 )CH 2 CH 2 CH 3 ], 2-methylbutyl [i.e. , -CH 2 CH(CH 3 )CH 2 CH 3 ] , ra-hexyl, and the like.
  • C 1 -C4 alkyl is intended to mean a straight or branched carbon radical containing 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons. Examples of an alkyl group include, but are not limited to, methyl, ethyl, w-propyl, isopropyl, n-butyl, s-butyl, isobutyl, i-butyl, and the like.
  • C 1 -C6 alkylamino is intended to mean a radical comprising one C 1 -C6 alkyl group attached to an NH group, wherein C 1 -C6 alkyl has the same meaning as described herein.
  • Some examples include, but are not limited to, methylamino, ethylamino, «-propylamino, isopropylamino, «-butylamino, s-butylamino, isobutylamino, i-butylamino, and the like.
  • Some embodiments are "Ci-C 2 alkylamino.”
  • C 1 -C6 alkylcarboxamide is intended to mean a single C 1 -C6 alkyl group attached to either the carbon or the nitrogen of an amide group, wherein C 1 -C6 alkyl has the same definition as found herein.
  • the C 1 -C6 alkylcarboxamido group may be represented by the following: a lk yl
  • Examples include, but are not limited to, N-methylcarboxamide, N-ethylcarboxamide, N-n- propylcarboxamide, N-isopropylcarboxamide, N- «-butylcarboxamide, N-s-butylcarboxamide, N- isobutylcarboxamide, N-i-butylcarboxamide, and the like.
  • C 1 -C6 alkylene is intended to mean a straight or branched, saturated aliphatic, divalent radical having 1 to 6 carbon atoms. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons.
  • Examples include, but are not limited to, methylene, ethylene, ⁇ -propylene, isopropylene, «-butylene, s-butylene, isobutylene, i-butylene, pentylene, isopentylene, i-pentylene, neopentylene, 1-methylbutylene [i.e., -CH(CH 3 )CH 2 CH 2 CH 3 ] , 2- methylbutylene [i.e. , -CH 2 CH(CH 3 )CH 2 CH 3 ] , «-hexylene, and the like.
  • Ci-C 6 alkylsulfonyl is intended to mean a radical comprising a Ci-C 6 alkyl group attached to the sulfur of a sulfonyl group, wherein the Ci-C 6 alkyl radical has the same definition as described herein. Examples include, but are not limited to, methylsulfonyl, ethylsulfonyl, «-propylsulfonyl, isopropylsulfonyl, «-butylsulfonyl, s-butylsulfonyl, isobutylsulfonyl, i-butylsulfonyl, and the like.
  • C 5 -Cn bicycloalkyl is intended to mean a radical comprising two fused or bridged, saturated rings containing 5 to 11 ring carbon atoms.
  • Examples of a bicycloalkyl group include, but are not limited to, bicyclo[3.1.1]heptyl, bicyclo[2.2.1]heptyl, and the like.
  • C 3 -C 7 cycloalkenylene is intended to mean is intended to mean a mono unsaturated ring di-radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropenediyl, cyclobutenediyl, cyclopentenediyl, cyclohexenediyl, cycloheptenediyl, and the like.
  • C 3 -C 7 cycloalkyl is intended to mean a saturated ring radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, and the like.
  • C 3 -C 7 cycloalkylamino is intended to mean a radical comprising a C 3 -C 7 cycloalkyl attached the nitrogen of an amino group, wherein C 3 -C 7 cycloalkyl has the same definition as found herein. Examples include, but are not limited to, cyclopropylamino, cyclobutylamino, cyclopentylamino, cyclohexylamino, and the like.
  • C 3 -C 7 cycloalkylene is intended to mean a saturated ring di-radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropanediyl, cyclobutanediyl, cyclopentanediyl, cyclohexanediyl, cycloheptanediyl, and the like.
  • C 3 -C 7 cycloalkylene is selected from: 1,1 -cyclopropanediyl, 1,1 -cyclobutanediyl, 1,1 -cyclopentanediyl, 1,1- cyclohexanediyl, 1,1 -cycloheptanediyl, and the like.
  • C 3 -C 7 cycloalkylene is selected from: 1 ,2-cyclopropanediyl, 1 ,2-cyclobutanediyl, 1 ,2-cyclopentanediyl, 1 ,2- cyclohexanediyl, 1 ,2-cycloheptanediyl, and the like.
  • carbo-Ci-C 6 -alkoxy is intended to mean a Ci-C 6 alkyl ester of a carboxylic acid, wherein C 1 -C6 alkyl has the same definition as found herein. Examples include, but are not limited to, carbomethoxy [-C(0)OCH 3 ], carboethoxy, carbo- «-propoxy, carboisopropoxy, carbo- «-butoxy, carbo-s-butoxy, carbo-isobutoxy, carbo-i-butoxy, carbo- «-pentoxy, carbo- isopentoxy, carbo-i-pentoxy, carbo-neopentoxy, carbo- «-hexyloxy, and the like.
  • carboxy is intended to mean the group -C0 2 H; also referred to as a carboxylic acid group.
  • cyano is intended to mean the group -CN.
  • C 2 -C 8 dialkylamino is intended to mean a radical comprising an amino group substituted with two of the same or different C 1 -C4 alkyl groups, wherein Ci-C alkyl has the same definition as found herein. Some examples include, but are not limited to,
  • C 2 -C 4 dialkylamino C 2 -C 8 dialkylsulfonamide
  • C 1 -C4 alkyl has the same definition as found herein.
  • Ci-C 6 haloalkoxy is intended to mean a radical comprising a Ci-C 6 haloalkyl group directly attached to an oxygen atom, wherein Ci-C 6 haloalkyl has the same definition as found herein. Examples include, but are not limited to, difluoromethoxy, trifluoromethoxy, 2,2,2-trifluoroethoxy, pentafluoroethoxy, and the like.
  • Ci-C 6 haloalkyl is intended to mean a radical comprising a Ci-C 6 alkyl group substituted with one or more halogens, wherein Ci-C 6 alkyl has the same definition as found herein.
  • the Ci-C 6 haloalkyl may be fully substituted in which case it can be represented by the formula C n L 2n+ i > wherein L is a halogen and "n" is 1, 2, 3, 4, 5 or 6. When more than one halogen is present then they may be the same or different and selected from: fluorine, chlorine, bromine, and iodine. In some embodiments, haloalkyl contains 1 to 5 carbons.
  • haloalkyl contains 1 to 4 carbons. In some embodiments, haloalkyl contains 1 to 3 carbons. In some embodiments, haloalkyl contains 1 or 2 carbons. Examples of haloalkyl groups include, but are not limited to, fluoromethyl, difluoromethyl, trifluoromethyl,
  • chlorodifluoromethyl 2,2,2-trifluoroethyl, pentafluoroethyl, and the like.
  • halogen is intended to mean to a fluoro, chloro, bromo or iodo group.
  • heteroaryl is intended to mean a ring system containing 5 to 14 ring atoms, that may contain a single ring, two fused rings or three fused rings, and wherein at least one ring is aromatic and at least one ring atom is a heteroatom selected from, for example: O, S and N, wherein N is optionally substituted with H, Q-C4 acyl, Q-C4 alkyl, or oxide (i.e., together with an aromatic ring nitrogen form an N-oxide).
  • Some embodiments contain 5 to 6 ring atoms for example, furanyl, thienyl, pyrrolyl, imidazolyl, oxazolyl, thiazolyl, isoxazolyl, pyrazolyl, isothiazolyl, oxadiazolyl, triazolyl, tetrazolyl, thiadiazolyl, pyridinyl, pyrazinyl, pyrimidinyl, pyridazinyl, triazinyl, and the like.
  • Some embodiments contain 8 to 14 ring atoms for example, quinolizinyl, quinolinyl, isoquinolinyl, cinnolinyl, phthalazinyl, quinazolinyl, quinoxalinyl, triazinyl, indolyl, isoindolyl, indazolyl, indolizinyl, purinyl, naphthyridinyl, pteridinyl, carbazolyl, acridinyl.
  • heteroarylene is intended to mean is intended to mean an aromatic ring di- radical containing 5 to 14 ring atoms that may be a single ring, two fused rings or three fused rings, wherein at least one aromatic ring atom is a heteroatom selected from, for example: O, S, and N, wherein N is optionally substituted with H, C 1 -C4 acyl, Ci-C alkyl, or oxide (i.e., together with an aromatic ring nitrogen form an N-oxide).
  • Some embodiments contain 5 to 6 ring atoms for example, furandiyl, thiophenediyl, pyrrolediyl, imidazolediyl, oxazolediyl, thiazolediyl, isoxazolediyl, pyrazolediyl, isothiazolediyl, oxadiazolediyl, triazolediyl, thiadiazolediyl, pyridinediyl, pyrazinediyl, pyrimidinediyl, pyridazinediyl, triazinediyl, and the like.
  • Some embodiments contain 8 to 14 ring atoms for example, quinolizinediyl, quinolinediyl, isoquinolinediyl, cinnolinediyl, phthalazinediyl, quinazolinediyl, quinoxalinediyl, triazinediyl, indolediyl, isoindolediyl, indazolediyl, indolizinediyl, purinediyl, naphthyridinediyl, pteridinediyl, carbazolediyl, acridinediyl.
  • phenazinediyl phenothiazinediyl, phenoxazinediyl, benzoxazolediyl, benzothiazolediyl, lH-benzimidazolediyl, imidazopyridinediyl,
  • heteroaryloxy is intended to mean a radical comprising a heteroaryl group, attached to an oxygen, wherein heteroaryl has the same definition as found herein.
  • heterobicyclyl is intended to mean a radical comprising two fused or bridged, non- aromatic rings containing 5 to 11 ring atoms wherein one, two, three or four ring atoms are heteroatoms selected from, for example: O, S, and ⁇ , wherein ⁇ is substituted with ⁇ , Ci-C acyl or Ci-C alkyl, and S is optionally substituted with one or two oxygens.
  • heterobicyclyl group include, but are not limited to, octahydropyrrolo[l,2-a]pyrazinyl, 1-aza- bicyclo[2.2.2]octyl, 9-aza-bicyclo[3.3.1]nonyl, and the like.
  • heterocyclyl is intended to mean a non-aromatic ring radical containing 3 to 8 ring atoms, wherein one, two or three ring atoms are heteroatoms selected from, for example: O, S, and ⁇ , wherein ⁇ is substituted with ⁇ , Ci-C 4 acyl or Ci-C 4 alkyl, and S is optionally substituted with one or two oxygens.
  • heterocyclyl group examples include, but are not limited to, aziridinyl, azetidinyl, piperidinyl, morpholinyl, piperazinyl, pyrrolidinyl, [1,3]- dioxolanyl, thiomorpholinyl, [l,4]oxazepanyl, 1,1-dioxothiomorpholinyl, azepanyl, tetrahydrofuranyl, tetrahydropyranyl, tetrahydrothiopyranyl, l-oxo-hexahydro- ⁇ 4 -thiopyranyl, l,l-dioxo-hexahydro- ⁇ 6 -thiopyranyl, and the like.
  • heterocyclylene is intended to mean a non-aromatic ring di-radical containing 3 to 8 ring atoms, wherein one, two or three ring atoms are heteroatoms selected from, for example: O, S, and ⁇ , wherein ⁇ is substituted with ⁇ , Ci-C acyl or Ci-C alkyl, and S is optionally substituted with one or two oxygens.
  • heterocyclylene group examples include, but are not limited to, aziridinediyl, azetidinediyl, piperidinediyl, morpholinediyl, piperazinediyl, pyrrolidinediyl, [l,3]-dioxolanediyl, thiomorpholinediyl, [l,4]oxazepanediyl, 1,1-dioxothiomorpholinediyl, azepanediyl, tetrahydrofurandiyl, and the like.
  • hydroxyl is intended to mean the group -OH.
  • ureyl is intended to mean the group -NH 2 C(0)NH 2 .
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in combination with and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in combination with and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • pharmaceutical agents selected from analgesic agents and osteoarthritis agents in the manufacture of a medicament for treating osteoarthritis in an individual are also provided. Also provided is the use of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis in the manufacture of a medicament for treating osteoarthritis in an individual.
  • compositions comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier.
  • composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents, and a pharmaceutically acceptable carrier.
  • a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier.
  • a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier.
  • Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are admixed with a pharmaceutically acceptable carrier.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof and the one or more known pharmaceutical agents are each admixed with a different pharmaceutically acceptable carrier.
  • the pharmaceutical carrier generally is compatible with the other ingredients in the composition and should be tolerated by the individual recipient.
  • Other physiologically active ingredients can be incorporated into the pharmaceutical composition if desired, and if such ingredients are compatible with the other ingredients in the composition.
  • Conventional excipients such as binding agents, fillers, acceptable wetting agents, tabletting lubricants, and disintegrants can be used in tablets and capsules for oral administration.
  • compositions for oral administration can be in the form of solutions, emulsions, aqueous or oily suspensions, and syrups.
  • the compositions for oral administration can be in the form of dry powder that can be reconstituted with water or another suitable liquid vehicle before use. Additional additives such as suspending or emulsifying agents, non-aqueous vehicles (including edible oils), preservatives, and flavorings and colorants can be added.
  • compositions for parenteral administration can be prepared by dissolving the compounds in a suitable liquid vehicle and filter sterilizing the solution before filling and sealing an appropriate vial or ampoule. These are just a few examples of the many appropriate methods well known in the art for preparing compositions for oral or parenteral administration.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein for use in a method for the treatment of treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
  • one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in combination with a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein. Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents, for use in combination with a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein.
  • one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises administering to said individual one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein.
  • one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises prescribing to said individual one or more known pharmaceutical agents selected from analgesic agents, antidiabetic agents, osteoarthritis agents, and anticancer agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein.
  • a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents; for treating osteoarthritis in an individual.
  • a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents; for treating osteoarthritis in an individual.
  • the pharmaceutical product comprises a pharmaceutical composition.
  • the pharmaceutical product comprises a formulation.
  • the pharmaceutical product comprises a dosage form.
  • the pharmaceutical product comprises a combined preparation. In some embodiments, the pharmaceutical product comprises a twin pack. In some embodiments, the pharmaceutical product comprises a kit.
  • the kit comprises a first package comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein or a pharmaceutical composition thereof, and a second package comprising one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents or a pharmaceutical composition thereof.
  • the kit comprises a first package comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein or a pharmaceutical composition thereof, and a second package comprising one or more known pharmaceutical agents selected from osteoarthritis agents.
  • a method for the treatment of osteoarthritis in an individual in need thereof comprising administering to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • a method for the treatment of osteoarthritis in an individual in need thereof comprising prescribing to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
  • the individual is a human.
  • the one or more known pharmaceutical agents are administered to the individual simultaneously, separately, or sequentially.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are administered simultaneously.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and the one or more known pharmaceutical agents are administered separately.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are administered sequentially.
  • a synergistic effect means that the effect, as demonstrated, e.g., by one of the measures described herein, observed with the combination therapy is greater than that seen by adding the effect of each compound together.
  • One advantage of using a synergistic combination therapy is that less of each compound is required to achieve a significant effect and so fewer side effects can result from treatment. In some cases, side effects are not seen at the lower doses used. Also, in some cases, the side effect profile of one drug can mitigate or average out the side effect profile of the other drug. For example, one of the drugs may result in increased blood pressure and the other drug results in lowered blood pressure so that the combination therapy does not effect blood pressure.
  • Another potential advantage of combination therapy is that, since less compound is required, the cost of therapy can be reduced.
  • the osteoarthritis is associated with a joint, hip, knee, back, neck, and/or lower back of the individual.
  • the treatment slows the progression of osteoarthritis.
  • the treatment reverses the progression of osteoarthritis.
  • the treatment alleviates one or more of the signs and symptoms of osteoarthritis.
  • the sign or symptom is chosen from joint stiffness, pain, swelling, and difficulty in physical function.
  • the sign or symptom is pain.
  • the pain is measured as pain intensity.
  • the sign or symptom is joint stiffness.
  • the sign or symptom is difficulty in physical function.
  • the method further comprises assessing disease severity.
  • the treatment results in attenuation of a total score of the individual on at least one index selected from Western Ontario and McMaster Universities (WOMAC) Arthritis Index, Australian/Canadian (AUSCAN) Osteoarthritis Hand Index, and the Osteoarthritis Global (OGI) Index.
  • WOMAC Western Ontario and McMaster Universities
  • AUSCAN Australian/Canadian
  • OOGI Osteoarthritis Global
  • a reduction of signs and symptoms is shown by American College of Rheumatology Criteria ACR20 response or American College of Rheumatology Criteria ACR70 response.
  • disease severity is measured by patient or physician global assessments, patient or physician assessments of joint tenderness, joint swelling stiffness, pain, or physical function, cytokine levels, B-cell or T-cell subtype ratios, erythrocyte sedimentation rate (ESR), or C-reactive protein level.
  • Suitable pharmaceutical agents that can be used in combination with the compounds described herein include analgesic agents and osteoarthritis agents.
  • the analgesic agent is chosen from non-opioid drugs, opioid drugs, and co-analgesic medications.
  • the non opioid drug is chosen from non steroidal antiinflammatory agents, choline magnesium trisalicylate, sulfasalazine, olsalazin, phenacetin, tenoxicam, phenylbutazone, oxyphenthartazone, tapentadol, celecoxib, etoricoxib, lumiracoxib, rofecoxib, parecoxib, and ziconotide.
  • the non steroidal anti-inflammatory agent is chosen from acemetacin, acetaminophen, aminoprofen, aspirin, benoxaprofen, bucloxic acid, carprofen, choline magnesium salicylate, choline salicylate, clidanac, diclofenac, diflunisal, diflurisal, etodolac, fenoprofen, fenoprofen calcium, fentiazac, flosulide, flubufen, flufenamic acid, flufenisal, flurbiprofen, fluprofen, ibuprofen, indoprofen, indomethacin, isoxicam, ketoprofen, ketorolac tromethamine, lornoxicam, magnesium salicylate, meclofenamic acid, meclofenamate sodium, mefenamic acid, meloxicam, muroprofen, nabumet
  • the opioid drug is chosen from alfentanil, allylprodine, alphaprodine, anileridine, apomorphine, benzylmorphine, bezitramide, buprenorphine, butorphanol, clonitazene, codeine, desomorphine, dextromor amide, dextropropoxyphene, dezocine, diampromide, diamorphone, dihydrocodeine, dihydrocodeinone enol acetate, dihydromorphine, dilaudid, dimenoxadol, dimepheptanol, dimethylthiambutene, dioxaphetyl butyrate, dipipanone, eptazocine, ethoheptazine, ethylmethylthiambutene, ethylmorphine, etonitazene, fentanyl, heroin, hydrocodeine, hydrocodone, hydromorphone, hydroxypeth
  • the at least one analgesic agent comprises an NSAID and an opiod drug.
  • the at least one analgesic agent is chosen from vicodin
  • acetaminophen and hydrocodone percocet (oxycodone and acetaminophen), norco (hydrocodone bitartrate and acetaminophen), lorcet (acetaminophen and hydrocodone), darvocet (acetaminophen and propoxyphene), and percodan (aspirin and oxycodone).
  • the at least one analgesic agent is at least one co-analgesic medication chosen from antidepressants, anti-anxiety medications, migraine medications, and gabapentin.
  • the migraine medication is chosen from alpiropride,
  • dihydroergotamine dolasetron, ergocornine, ergocorninine, ergocryptine, ergot, ergotamine, flumedroxone acetate, fonazine, lisuride, lomerizine, methysergide oxetorone, and pizotyline.
  • the antidepressant is chosen from escitalopram, binedaline, caroxazone, citalopram, (S)-citalopram, dimethazan, fencamine, indalpine, indeloxazine hydrocholoride, nefopam, nomifensine, oxitriptan, oxypertine, paroxetine, sertraline, thiazesim, trazodone, benmoxine, iproclozide, iproniazid, isocarboxazid, nialamide, octamoxin, phenelzine, cotinine, rolicyprine, rolipram, maprotiline, metralindole, mianserin, mirtazepine, adinazolam, amitriptyline, amitriptylinoxide, amoxapine, butriptyline, clomipramine, demexi
  • the anti-anxiety medication is chosen from alprazolam, chlordiazepoxide, clonazepam, clorazepate, diazepam, halazepam, lorazepam, oxazepam, and prazepam, buspirone, and barbituates.
  • the or more known pharmaceutical agents is chosen from osteoarthritis agents.
  • the osteoarthritis agent is chosen from localized injections, topical patches, creams and gels, glucosamine, chondroitin sulfate, and vitamins.
  • the localized injection is chosen from a corticosteroid injection and an injection of hyaluronan.
  • the topical patches, creams and gels are chosen from civamide patch, diclofenac patch, topical strontium chloride hexahydrate, diclofenac sodium topical solution, capsaicin cream and methylsalicylate cream.
  • the osteoarthritis agent is chosen from valdecoxib, meloxicam, etodolac, naproxen sodium, diacerhein, tetracycline, antimalarial therapies, Gen-S, JNJ- 39439335, JNJ-42160443 (a monoclonal antibody against nerve growth factor (NGF)), JNS013 (combination of tramadol and acetaminophen), ABT-102 (N-[5-teri-butyl-2,3-dihydro-lH- inden-l(R)-yl]-N-(lH-indazol-4-yl)urea), SARI 14137, MEDI-578, LY545694 (iGluR5 antagonist), BEMA buprenorphine (CA Index Name: 6, 14-ethenomorphinan-7-methanol, 17- (cyclopropylmethyl)-a-( 1 , 1 -dimethylethyl)-4,5
  • the osteoarthritis agent ABT-102 is N-[5-teri-butyl-2,3-dihydro-lH-inden-l(R)-yl]-N- (lH-indazol-4-yl)urea, and the chemical structure is:
  • the osteoarthritis agent BEMA buprenorphine has the CA Index Name: 6, 14- ethenomorphinan-7-methanol, 17-(cyclopropylmethyl)-a-(l ,l-dimethylethyl)-4,5-epoxy-18,19- dihydro-3-hydroxy-6-methoxy-a-methyl-, (aS,5a,7a)- hydrochloride, and the chemical structure is:
  • the osteoarthritis agent PH-797804 has the CA Index Name: benzamide, 3-[3-bromo-4- [(2,4-difluorophenyl)methoxy]-6-methyl-2-oxo-l(2H)-pyridinyl]-N,4-dimethyl-), and the chemical structure is:
  • the osteoarthritis agent NT-11624 has the CA Index Name: lH-pyrrolo[l ,2- a]imidazole-2,5(3H,6H)-dione, dihydro-), and the chemical structure is:
  • combination-therapy of the compound of Formula la or a pharmaceutically acceptable salt, solvate, and hydrate thereof described herein with other pharmaceutical agents is not limited to those listed herein but includes in principle any combination with any pharmaceutical agent or pharmaceutical composition useful for the treatment of diseases, conditions or disorders that are linked to osteoarthritis.
  • R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are each independently selected from: H and C 1 -C6 alkyl;
  • X is NR 7 and Y is CC(0)N(R 8 )R 9
  • X is CC(0)N(R 8 )R 9 and Y is NR 7
  • R 7 is -R 10 -R n -R 12 -R 13 ; wherein:
  • R is selected from: Ci-C 6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
  • R 11 is selected from: -C(0)NH- and Ci-C 6 alkylene; or R 11 is absent;
  • R 12 is Ci-C 6 alkylene; or R 12 is absent;
  • R 13 is selected from: Ci-C 6 alkyl, aryl, C 3 -C 7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C 6 alkoxy, Ci-C 6 alkyl, Ci-C 6 alkylamino, Ci-C 6 alkylsulfonyl, amino, C 3 -C 7 cycloalkyl, cyano, C 2 -C 8 dialkylamino, Ci-C 6 haloalkyl, halogen, and hydroxyl;
  • R 8 is -R 14 -R 15 -R 16 -R 17 ; wherein:
  • R 14 is selected from: C 1 -C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C 1 -C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C 1 -C6 alkoxycarbonyl, C 1 -C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said d- C 6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C 6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R 14 is absent;
  • R 15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C 6 alkyl; or R 15 is absent;
  • R 16 is C 1 -C6 alkylene; or R 16 is absent;
  • R 17 is selected from: H, C 1 -C6 alkoxy, C 1 -C6 alkyl, C 1 -C6 alkylamino, C 1 -C6 alkylcarboxamide, C 2 -C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo- Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C 11 bicycloalkyl, C 3 -C 7 cycloalkylamino, C 2 -C 8 dialkylamino, C 2 -C 8 dialkylsulfonamide, C 1 -C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C 1 -C6 alkylamino, amino, aryl, arylamino
  • R 9 is selected from H, Ci-C 6 alkyl, and C 3 -C 7 cycloalkyl; or
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C 6 -alkoxy, Ci-C 6 alkoxy, Ci-C 6 alkyl, aryl, carbo-Ci-C 6 - alkoxy, Ci-C 6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl;
  • aryl, Ci-C 6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C 3 -C 7 cycloalkyl, C 1 -C6 alkoxy, halogen, and hydroxyl.
  • some embodiments of the present invention include every combination of one or more embodiments pertaining to the chemical groups represented by the variables and generic chemical formulae as described herein or every combination of one or more compounds of Formula (la) together/in combination with every combination of the one or more known pharmaceuticl agents either specifically disclosed herein or specifically disclosed in any reference recited herein just as if each and every combination was individually and explicitly recited.
  • substituted indicates that at least one hydrogen atom of the chemical group is replaced by a non-hydrogen substituent or group, the non-hydrogen substituent or group can be monovalent or divalent. When the substituent or group is divalent, then it is understood that this group is further substituted with another substituent or group.
  • a chemical group herein when a chemical group herein is "substituted" it may have up to the full valance of substitution; for example, a methyl group can be substituted by 1, 2, or 3 substituents, a methylene group can be substituted by 1 or 2 substituents, a phenyl group can be substituted by 1, 2, 3, 4, or 5 substituents, a naphthyl group can be substituted by 1, 2, 3, 4, 5, 6, or 7 substituents, and the like.
  • substituted with one or more substituents refers to the substitution of a group with one substituent up to the total number of substituents physically allowed by the group. Further, when a group is substituted with more than one group they can be identical or they can be different.
  • Tautomeric forms can be in equilibrium or sterically locked into one form by appropriate substitution. It is understood that the various tautomeric forms are within the scope of the compounds described herein.
  • the present disclosure includes all isotopes of atoms occurring in the present compounds, salts and crystalline forms thereof.
  • Compounds described herein can also include all isotopes of atoms occurring in the intermediates and/or final compounds.
  • Isotopes include those atoms having the same atomic number but different mass numbers.
  • isotopes of hydrogen include 2 H (deuterium) and 3 H (tritium).
  • Isotopes of carbon include 13 C and 14 C.
  • R 1 is selected from: H and C 1 -C6 alkyl.
  • R 1 is H.
  • R 1 is C 1 -C6 alkyl.
  • R 1 is methyl
  • R 1 is isopropyl
  • R 2 is selected from: H and Ci-C 6 alkyl.
  • R 2 is H.
  • R 2 is Ci-C 6 alkyl.
  • R 2 is methyl
  • R 2 is isopropyl
  • R 3 is selected from: H and Ci-C 6 alkyl.
  • R 3 is H.
  • R 3 is C 1 -C6 alkyl.
  • R 3 is methyl
  • R 3 is isopropyl.
  • R 4 is selected from: H and C 1 -C6 alkyl.
  • R 4 is H.
  • R 4 is C 1 -C6 alkyl.
  • R 4 is methyl
  • R 4 is isopropyl.
  • R 5 is selected from: H and Ci-C 6 alkyl.
  • R 5 is H.
  • R 5 is Ci-C 6 alkyl. In some embodiments, R 5 is methyl.
  • R 5 is isopropyl
  • R 6 is selected from: H and Ci-C 6 alkyl.
  • R 6 is H.
  • R 6 is Ci-Ce alkyl.
  • R 6 is methyl
  • R 6 is isopropyl.
  • X is NR 7 ; wherein R 7 is -R 10 -R n -R 12 -R 13
  • X is CCONR 8 R 9 .
  • X is CC(0)NHR 8 .
  • Y is NR 7 ; wherein R 7 is -R 10 -R n -R 12 -R 13
  • Y is CCONR 8 R 9 .
  • Y is CC(0)NHR 8 .
  • R 7 is -R 10 -R n -R 12 -R 13 .
  • R 7 is selected from: aryl and heteroaryl; wherein said aryl and heteroaryl are each optionally substituted with one or two substituents selected from: cyano and halogen.
  • R 7 is selected from: aryl and heteroaryl; wherein said aryl and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, chloro, and cyano.
  • R 7 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 5- chloro-pyridin-2-yl, 5-cyano-pyrazin-2-yl, pyrazin-2-yl, 5-fluoro-pyridin-2-yl, 4-chloro-pyridin- 2-yl, 4-fluoro-pyridin-2-yl, 4-cyano-pyridin-2-yl, and 4-oxy-pyrazin-2-yl.
  • R 7 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 5- chloro-pyridin-2-yl, 5-cyano-pyrazin-2-yl, pyrazin-2-yl, 5-fluoro-pyridin-2-yl, 4-chloro-pyridin- 2-yl, 4-fluoro-pyridin-2-yl, 4-cyano-pyridin-2-yl, and 4-oxy-pyrazin-2-yl.
  • R 7 is selected from: 2,4-difluoro-phenyl, 5-bromo-pyridin-2-yl, 4-cyano-phenyl, pyridin-3-yl, pyridin-2-yl, 5-thiazol-2-yl-pyridin-2-yl, 5-trifluoromethyl- pyridin-2-yl, 5-o-tolyl-pyridin-2-yl, 5-dimethylamino-pyrazin-2-yl, 2,4-dichloro-phenyl, 5- isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-(4-methoxy-phenyl)-pyridin-2-yl, 2-fluoro-4- methanesulfonyl-phenyl, 2-fluoro-phenyl, 5-chloro-pyridin-2-yl, 5-bromo-pyridin-3-yl, tert- butyl, 2-methoxy-pyr
  • R 7 is selected from: 2,4-difluoro-phenyl, 5-bromo-pyridin-2-yl, 4-cyano-phenyl, pyridin-3-yl, pyridin-2-yl, 5-thiazol-2-yl-pyridin-2-yl, 5-trifluoromethyl- pyridin-2-yl, 5-o-tolyl-pyridin-2-yl, 5-dimethylamino-pyrazin-2-yl, 2,4-dichloro-phenyl, 5- isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-(4-methoxy-phenyl)-pyridin-2-yl, 2-fluoro-4- methanesulfonyl-phenyl, 2-fluoro-phenyl, 5-chloro-pyridin-2-yl, 5-bromo-pyridin-3-yl, tert- butyl, 2-methoxy-pyr
  • R 7 is 2,4-difluoro-phenyl. In some embodiments, R 7 is 5-bromo- pyridin-2-yl. In some embodiments, R 7 is 4-cyano-phenyl. In some embodiments, R 7 is pyridin-
  • R 7 is pyridin-2-yl. In some embodiments, R 7 is 5-thiazol-2-yl- pyridin-2-yl. In some embodiments, R 7 is 5-triiluoromethyl-pyridin-2-yl. In some embodiments, R 7 is 5-o-tolyl-pyridin-2-yl. In some embodiments, R 7 is 5-dimethylamino-pyrazin-2-yl. In some embodiments, R 7 is 2,4-dichloro-phenyl. In some embodiments, R 7 is 5-isopropyl-pyridin-2-yl. In some embodiments, R 7 is 5-methyl-pyridin-2-yl.
  • R 7 is 5-(4-methoxy- phenyl)-pyridin-2-yl. In some embodiments, R 7 is 2-iluoro-4-methanesulfonyl-phenyl. In some embodiments, R 7 is 2-fluoro-phenyl. In some embodiments, R 7 is 5-chloro-pyridin-2-yl. In some embodiments, R 7 is 5-bromo-pyridin-3-yl. In some embodiments, R 7 is teri-butyl. In some embodiments, R 7 is 2-methoxy-pyridin-4-yl. In some embodiments, R 7 is 2,2-dimethyl-propyl.
  • R 7 is tetrahydro-pyran-4-ylmethyl. In some embodiments, R 7 is phenyl. In some embodiments, R 7 is 4-triiluoromethyl-pyridin-2-yl. In some embodiments, R 7 is 6- chloro-pyrazin-2-yl. In some embodiments, R 7 is l-oxo-hexahydro- ⁇ 4 -thiopyran-4-yl. In some embodiments, R 7 is 5-morpholin-4-yl-pyridin-2-yl. In some embodiments, R 7 is 6-bromo- pyridin-3-yl. In some embodiments, R 7 is 5-methoxy-pyridin-2-yl.
  • R 7 is 5,6-diiluoro-pyridin-3-yl. In some embodiments, R 7 is 6-methoxy-pyridazin-3-yl. In some embodiments, R 7 is 2-chloro-pyridin-4-yl. In some embodiments, R 7 is 5-cyclopropyl-pyrazin-2- yl. In some embodiments, R 7 is l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 7 is l-benzyl-piperidin-4-yl. In some embodiments, R 7 is 6-cyano-pyrazin-2-yl. In some embodiments, R 7 is 2-hydroxy-2-methyl-propyl.
  • R 7 is 4-fluoro-phenyl. In some embodiments, R 7 is 5-ethyl-pyridin-2-yl. In some embodiments, R 7 is isopropyl. In some embodiments, R 7 is 5-phenyl-pyridin-2-yl. In some embodiments, R 7 is pyridin-4-yl. In some embodiments, R 7 is 2,5-difluoro-phenyl. In some embodiments, R 7 is 3-fluoro-phenyl. In some embodiments, R 7 is pyrimidin-4-yl. In some embodiments, R 7 is 2-(tetrahydro-pyran-4-yl)-ethyl.
  • R 7 is 3,5-difluoro-pyridin-2-yl. In some embodiments, R 7 is pyrazin-2-yl. In some embodiments, R 7 is tetrahydro-thiopyran-4-yl. In some embodiments, R 7 is 5-/?-tolyl- pyridin-2-yl. In some embodiments, R 7 is 4-methoxy-phenyl. In some embodiments, R 7 is 2- morpholin-4-yl-ethyl. In some embodiments, R 7 is 5-cyano-pyridin-2-yl. In some embodiments, R 7 is 5-cyano-pyrazin-2-yl.
  • R 7 is 6'-methyl-[3,3']bipyridinyl-6-yl. In some embodiments, R 7 is 6-chloro-pyridazin-3-yl. In some embodiments, R 7 is 5-fluoro-pyridin- 2-yl. In some embodiments, R 7 is 5-ethyl-pyrazin-2-yl. In some embodiments, R 7 is 6-methoxy- pyrazin-2-yl. In some embodiments, R 7 is 5-dimethylamino-pyridin-2-yl. In some embodiments, R 7 is l-(4-iluoro-phenyl)-l-methyl-ethyl.
  • R 7 is 5-pyrimidin-5-yl-pyridin- 2-yl. In some embodiments, R 7 is 4-methyl-pyridin-2-yl. In some embodiments, R 7 is 5- methoxy-pyrazin-2-yl. In some embodiments, R 7 is 5-propyl-pyridin-2-yl. In some
  • R 7 is 5-ra-tolyl-pyridin-2-yl. In some embodiments, R 7 is 5-hydroxy-pyrazin-2-yl. In some embodiments, R 7 is cyclopropyl-pyridin-2-yl. In some embodiments, R 7 is 2,6-difluoro- phenyl. In some embodiments, R 7 is 3-fluoro-pyridin-4-yl. In some embodiments, R 7 is 5- isopropyl-pyrazin-2-yl. In some embodiments, R 7 is 5-bromo-pyrazin-2-yl. In some embodiments,
  • R 7 is 5-cyclopentyl-pyridin-2-yl. In some embodiments, R 7 is o-tolyl. In some embodiments, R 7 is 4-fluoro-benzyl. In some embodiments, R 7 is 3-methyl-pyridin-2-yl. In some embodiments, R 7 is 6-methyl-4-triiluoromethyl-pyridin-2-yl. In some embodiments, R 7 is 6-dimethylamino-pyrazin-2-yl. In some embodiments, R 7 is l,l-dioxo-hexahydro- ⁇ 6 -thiopyran-
  • R 7 is 5-(4-iluoro-phenyl)-pyridin-2-yl. In some embodiments, R 7 is
  • R 7 is 6-ethyl-pyrazin-2-yl. In some embodiments, R 7 is 5-methylamino-pyrazin-2-yl. In some embodiments, R 7 is dichloro-phenyl. In some embodiments, R 7 is 5-methyl-pyrazin-2-yl. In some embodiments, R 7 is 3-fluoro- pyridin-2-yl. In some embodiments, R 7 is 5-cyclobutyl-pyrazin-2-yl. In some embodiments, R 7 is 5-ethoxy-pyrazin-2-yl. In some embodiments, R 7 is 5-triiluoromethyl-pyrazin-2-yl.
  • R 7 is 5-cyano-pyridin-3-yl. In some embodiments, R 7 is 5-cyclopropylmethyl- pyrazin-2-yl. In some embodiments, R 7 is 5-pentailuoroethyl-pyrazin-2-yl. In some
  • R 7 is 5-heptafluoropropyl-pyrazin-2-yl. In some embodiments, R 7 is 5-chloro-4- methyl-pyridin-2-yl. In some embodiments, R 7 is 5-chloro-4-triiluoromethyl-pyridin-2-yl. In some embodiments, R 7 is 4-bromo-pyridin-2-yl. In some embodiments, R 7 is 4-chloro-pyridin- 2-yl. In some embodiments, R 7 is 4-iluoro-pyridin-2-yl. In some embodiments, R 7 is 4-oxy- pyrazin-2-yl. In some embodiments, R 7 is 4-cyclopropyl-pyridin-2-yl.
  • R 7 is 4-cyano-pyridin-2-yl. In some embodiments, R 7 is 4-methanesulfonyl-pyridin-2-yl. In some embodiments, R 7 is 4-methoxy-pyridin-2-yl. In some embodiments, R 7 is piperidin-4-yl. In some embodiments, R 7 is tetrahydro-pyran-4-yl. In some embodiments, R 7 is 3-methyl-l,l- dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 7 is 5-chloro-3-iluoro-pyridin-2-yl.
  • R 7 is 3-iluoro-5-methoxy-pyridin-2-yl. In some embodiments, R 7 is 2- chloro-4-iluoro-phenyl. In some embodiments, R 7 is 6-iluoro-pyridin-3-yl. In some
  • R 7 is 6-cyano-pyridin-3-yl. In some embodiments, R 7 is 3-hydroxy-3-methyl- butyl. In some embodiments, R 7 is 4-iodo-pyridin-2-yl. In some embodiments, R 7 is 1-oxy- pyridin-3-yl. In some embodiments, R 7 is 4-teri-butylcarbamoyl-pyridin-2-yl. In some embodiments, R 7 is 4-hydroxy-pyridin-2-yl.
  • R 8 is -R 14 -R 15 -R 16 -R 17 .
  • R 8 is selected from: l-hydroxymethyl-2,2-dimethyl-propyl, 2- hydroxy- 1,1 -dimethyl -ethyl, 1 -hydroxymethyl -cyclopropyl, 2-hydroxy-indan-l-yl, 1- hydroxymethyl-cyclobutyl, tert-b tyl, 2-hydroxy-l -phenyl -ethyl, 2-hydroxy-l -hydroxymethyl - 1 -methyl -ethyl, teri-butylamino, 2,2,2-trifluoro- 1,1 -dimethyl -ethyl, 2-methyl-l- (phosphonooxy)propan-2-yl, 1-methyl-cyclobutyl, l-hydroxymethyl-2-methyl -propyl, cyano- dimethyl-methyl, 2,2-dimethyl-l-(methylcarbamoyl)-propyl, 3,3-dimethyl-l-
  • R 8 is selected from: H, 2-methyl-2-morpholin-4-yl -propyl, 1- hydroxymethyl-2,2-dimethyl -propyl, 2-(teri-butoxycarbonylamino)cyclohexyl, 1 -phenyl- cyclopropyl, 5-trifluoromethyl-pyridin-2-yl, 1 -methyl- 1-phenyl-ethyl, l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl, 1 -(methoxycarbonyl)cyclopropyl, tetrahydro-pyran-4-ylmethyl, 1 -(teri-butoxycarbonyl)piperidin-4-yl, 1 -(4-fluoro-phenyl)-cyclopropyl, 6-methyl-pyridin-3- ylmethyl, 2-hydroxy-l -phenyl-ethyl, l,3,3-trimethyl-bicyclo[2.2.1]hept
  • 6- morpholin-4-yl-pyridin-3-yl 1 -o-tolyl-cyclopropyl, l-(3,3,3-trilluoro-propyl)-piperidin-3-yl, 6-methanesulfonyl-4-methyl-pyridin-3-yl, 2-methyl-quinolin-4-yl, l-(3,3,3-trifluoro-propyl)- pyrrolidin-3-ylmethyl, benzooxazol-2-yl, 1 -methyl -piperidin-4-ylmethyl, 2-(2,6-dimethyl- morpholin-4-yl)-2-methyl-propyl, 1 -methyl -piperidin-2-ylmethyl, pyridin-4-ylmethyl, 4- hydroxymethyl-pyridin-2-yl, 5,7-dimethyl-pyrazolo[l,5-a]pyrimidin-2-yl, 6,6-dimethyl- bicyclo[3.1.1]hept-2-y
  • R 8 is selected from: ⁇ , 2-methyl-2-morpholin-4-yl -propyl, 1- hydroxymethyl-2,2-dimethyl -propyl, 2-(teri-butoxycarbonylamino)cyclohexyl, 1 -phenyl- cyclopropyl, 5-trifluoromethyl-pyridin-2-yl, 1 -methyl- 1-phenyl-ethyl, l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl, 1 -(methoxycarbonyl)cyclopropyl, tetrahydro-pyran-4-ylmethyl,
  • R 8 is 2-(teri-butoxycarbonylamino)cyclohexyl. In some embodiments, R 8 is 1- phenyl-cyclopropyl. In some embodiments, R 8 is 5-trifluoromethyl-pyridin-2-yl. In some embodiments, R 8 is 1 -methyl- 1-phenyl-ethyl. In some embodiments, R 8 is l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl. In some embodiments, R 8 is l-(methoxycarbonyl)cyclopropyl. In some embodiments, R 8 is tetrahydro-pyran-4-ylmethyl. In some embodiments, R 8 is
  • R 8 is l-(4-fluoro-phenyl)- cyclopropyl. In some embodiments, R 8 is 6-methyl-pyridin-3-ylmethyl. In some embodiments, R 8 is 2-hydroxy- 1 -phenyl-ethyl. In some embodiments, R 8 is l ,3,3-trimethyl-bicyclo[2.2.1]hept-
  • R 8 is 2-hydroxy- 1 , 1 -dimethyl -ethyl. In some embodiments, R 8 is 2- (5-hydroxy-lH-indol-3-yl)-ethyl. In some embodiments, R 8 is 1-hydroxymethyl-cyclopropyl. In some embodiments, R 8 is 3-chloro-5 -methyl -pyridin-2-yl. In some embodiments, R 8 is 6-fluoro- pyridin-3-yl. In some embodiments, R 8 is l-(3-iluoro-phenyl)-cyclobutyl. In some
  • R 8 is 2-methyl-pyridin-3-yl. In some embodiments, R 8 is 2-hydroxy-l -
  • R 8 is 2-(pyridin-3-yloxy)-propyl.
  • R 8 is carbamoyl-phenyl-methyl.
  • R 8 is 5-fluoro-2-methoxy- phenyl.
  • R 8 is 2-methoxy-ethyl.
  • R 8 is 2,3- dihydroxy-propyl.
  • R 8 is l-(teri-butoxycarbonyl)pyrrolidin-3-yl.
  • R 8 is 2-oxo-2-phenyl-ethyl.
  • R 8 is l-(3,3,3-trilluoro- propyl)-azetidin-3-yl. In some embodiments, R 8 is 2-hydroxy- l-pyridin-2-yl-ethyl. In some embodiments, R 8 is 3-hydroxy-pyridin-4-yl. In some embodiments, R 8 is 1 -methyl- l -pyridin-4- yl -ethyl. In some embodiments, R 8 is l-hydroxymethyl-2-3H-imidazol-4-yl-ethyl. In some embodiments, R 8 is 4-hydroxy-3-methoxy-benzyl.
  • R 8 is 5-fluoro-2-oxo- 2,3-dihydro-pyrimidin-4-yl. In some embodiments, R 8 is l-(4-lluoro-phenyl)-3-hydroxy-propyl. In some embodiments, R 8 is l-pyridin-4-yl-cyclopropyl. In some embodiments, R 8 is 2-hydroxy- l-pyridin-3-yl-ethyl. In some embodiments, R 8 is 1 ,1 -dimethyl - 2-(4-methyl-piperidin-l -yl)-ethyl. In some embodiments, R 8 is 6-cyano-pyridin-3-yl.
  • R 8 is 5-fluoro-pyridin-2-yl. In some embodiments, R 8 is 2,5-dimethyl-benzyl. In some embodiments, R 8 is l-isopropyl-piperidin-4-yl. In some embodiments, R 8 is 2-methoxy-l - methoxymethyl-ethyl. In some embodiments, R 8 is 2,3-dimethyl-benzyl. In some embodiments, R 8 is l-pyridin-2-yl-ethyl. In some embodiments, R 8 is 6-chloro-pyridin-3-ylmethyl. In some embodiments, R 8 is 3-methyl-pyridin-2-yl.
  • R 8 is 2-hydroxy-indan-l-yl. In some embodiments, R 8 is (15,25)-2-hydroxy-indan-l-yl. In some embodiments, R 8 is (15,2R)- 2-hydroxy-indan-l-yl. In some embodiments, R 8 is (lR,2R)-2-hydroxy-indan-l-yl. In some embodiments, R 8 is (lR,25)-2-hydroxy-indan-l -yl. In some embodiments, R 8 is 1- hydroxymethyl-cyclobutyl. In some embodiments, R 8 is 2-(4-chloro-phenyl)-l , l-dimethyl-ethyl.
  • R is 3-hydroxy-pyridin-2-ylmethyl. In some embodiments, R is 3- methyl-pyridin-4-yl. In some embodiments, R 8 is 5-teri-butyl-isoxazol-3-yl. In some embodiments, R 8 is l-(6-methoxy-pyridin-3-yl)-l-methyl-ethyl. In some embodiments, R 8 is lH-benzoimidazol-2-yl. In some embodiments, R 8 is tert-butyl. In some embodiments, R 8 is 4- phenyl-thiazol-2-yl. In some embodiments, R 8 is l-(2-fluoro-phenyl)-cyclobutyl.
  • R 8 is 2,4-dimethoxy-benzyl. In some embodiments, R 8 is 5-bromo-3-methyl- pyridin-2-yl. In some embodiments, R 8 is 4-benzyl-morpholin-2-ylmethyl. In some
  • R 8 is 6-trifluoromethyl-pyridin-3-ylmethyl. In some embodiments, R 8 is tetrahydro-furan-3-yl. In some embodiments, R 8 is pyridin-3-ylmethyl. In some embodiments, R 8 is pyrazin-2-yl. In some embodiments, R 8 is piperidin-4-yl. In some embodiments, R 8 is l-(6- hydroxy-pyridin-3-yl)-l-methyl-ethyl. In some embodiments, R 8 is 1 -methyl- l-pyridin-2-yl- ethyl. In some embodiments, R 8 is 1-hydroxymethyl-cyclopentyl.
  • R 8 is 1- aza-bicyclo[2.2.2]oct-3-yl. In some embodiments, R 8 is 2-hydroxy-cyclopentyl. In some embodiments, R 8 is 2-hydroxy- l-(hydroxymethyl)-propyl. In some embodiments, R 8 is ⁇ - ⁇ tert- butoxycarbonyl)piperidin-4-yl)methyl. In some embodiments, R 8 is 3,5-dimethoxy-phenyl. In some embodiments, R 8 is 6-fluoro-4H-benzo[l,3]dioxin-8-ylmethyl. In some embodiments, R 8 is 4,6-dimethyl-pyridin-2-yl.
  • R 8 is l,l-dimethyl-2-morpholin-4-yl-ethyl. In some embodiments, R 8 is 2-hydroxy-cyclohexylmethyl. In some embodiments, R 8 is l-(4- methoxy-phenyl)-cyclopropyl. In some embodiments, R 8 is l-ethyl-pyrrolidin-2-ylmethyl. In some embodiments, R 8 is indan-l-yl. In some embodiments, R 8 is pyrimidin-4-yl. In some embodiments, R 8 is 2-fluoro-4-methanesulfonyl-phenyl. In some embodiments, R 8 is 6-hydroxy- pyridin-2-yl.
  • R 8 is cyclobutyl. In some embodiments, R 8 is l-(3- methoxy-phenyl)-cyclopropyl. In some embodiments, R 8 is l-(3,3,3-trifluoro-propyl)- pyrrolidin-3-yl. In some embodiments, R 8 is 2-hydroxy-pyridin-3-yl. In some embodiments, R 8 is 4-diiluoromethoxy-benzyl. In some embodiments, R 8 is 1-piperidin-l-yl-cyclopentylmethyl.
  • R 8 is 3-hydroxy-3-methyl-butyl. In some embodiments, R 8 is l-(4-lluoro- phenyl)-cyclobutyl. In some embodiments, R 8 is 4-methoxy-benzyl. In some embodiments, R 8 is pyridin-2-yl. In some embodiments, R 8 is 2-hydroxy-2-phenyl-ethyl. In some embodiments, R 8 is 2-hydroxymethyl-2,3-dihydro-indol-l-yl. In some embodiments, R 8 is 3-hydroxy-pyridin-2- yl. In some embodiments, R 8 is 4-dimethylamino-tetrahydro-pyran-4-ylmethyl.
  • R 8 is 2-(4-fluoro-phenyl)-ethyl. In some embodiments, R 8 is l-(2-methoxy-ethyl)- piperidin-4-ylmethyl. In some embodiments, R 8 is 2-morpholin-4-yl-ethyl. In some
  • R 8 is l-(teri-butoxycarbonyl)-4-carboxypiperidin-4-yl. In some embodiments, R 8 is quinolin-3-yl. In some embodiments, R 8 is l-morpholin-4-ylmethyl-cyclopentyl. In some embodiments, R 8 is l,4-dimethyl-lH-pyrrol-2-ylmethyl. In some embodiments, R 8 is 2-hydroxy- 2-pyridin-2-yl-ethyl. In some embodiments, R 8 is pyridin-3-yl. In some embodiments, R 8 is 2- dimethylamino-benzyl. In some embodiments, R 8 is tetrahydro-thiopyran-4-yl.
  • R is 1-ra-tolyl-cyclopropyl. In some embodiments, R is l-(2-methoxy-ethyl)- piperidin-3-yl. In some embodiments, R 8 is 5-methoxy-pyridin-2-ylmethyl. In some
  • R 8 is 2-hydroxy-l-pyridin-4-yl-ethyl. In some embodiments, R 8 is 4-methyl- pyridin-2-yl. In some embodiments, R 8 is 4-carboxy-2-fluorophenyl. In some embodiments, R 8 is 6-methanesulfonyl-pyridin-3-yl. In some embodiments, R 8 is 1-o-tolyl-cyclobutyl. In some embodiments, R 8 is l ,l-dimethyl-2-pyrrolidin-l-yl-ethyl. In some embodiments, R 8 is 2,6- dimethoxy-pyridin-3-yl. In some embodiments, R 8 is pyridin-2-yl.
  • R 8 is 4-hydroxymethyl-tetrahydro-pyran-4-yl. In some embodiments, R 8 is 2-(lH-imidazol-4-yl)- ethyl. In some embodiments, R 8 is 3-fluoro-pyridin-4-yl. In some embodiments, R 8 is 1- carbamoyl-2-phenyl-ethyl. In some embodiments, R 8 is oxazol-4-ylmethyl. In some
  • R 8 is 6-methoxy-pyrimidin-4-yl. In some embodiments, R 8 is 1 ,1-dioxo- hexahydro- ⁇ 6 -thiopyran-4-yl. In some embodiments, R 8 is l-methoxy-l-oxo-3-phenylpropan- 2-yl. In some embodiments, R 8 is l-(2-methoxy-ethyl)-pyrrolidin-3-yl. In some embodiments, R 8 is l-(6-methyl-pyridin-2-yl)-ethyl. In some embodiments, R 8 is 2-hydroxy-l -(4-hydroxy- phenyl)-ethyl.
  • R 8 is 2-methoxy-pyridin-4-yl. In some embodiments, R 8 is l-pyridin-2-yl-cyclopropyl. In some embodiments, R 8 is l-(teri-butoxycarbonyl)piperidin-3-yl. In some embodiments, R 8 is 3-methyl-pyridin-2-ylmethyl. In some embodiments, R 8 is 3-fluoro- pyridin-2-yl. In some embodiments, R 8 is l-pyridin-4-yl-cyclobutyl. In some embodiments, R 8 is 2-carboxy-l -(pyridin-3-yl)ethyl.
  • R 8 is 2-hydroxy-l -methyl-ethyl. In some embodiments, R 8 is l-(methoxycarbonyl)cyclohexyl. In some embodiments, R 8 is 3- hydroxymethyl-pyridin-4-yl. In some embodiments, R 8 is 2-hydroxy-l -phenyl-ethyl. In some embodiments, R 8 is 3-dimethylamino-tetrahydro-thiophen-3-ylmethyl. In some embodiments, R 8 is tetrahydro-pyran-4-yl. In some embodiments, R 8 is 5-chloro-pyridin-2-yl. In some embodiments, R 8 is 1-carbamoyl-cyclobutyl. In some embodiments, R 8 is 5-fluoro-2-methyl- benzyl. In some embodiments, R 8 is 2-morpholin-4-yl-2-pyridin-3-yl-ethyl. In some embodiments, R 8 is 2-morpholin-4-yl-2-pyridin-3
  • R 8 is l-(3-methoxy-phenyl)-cyclobutyl. In some embodiments, R 8 is 5-methyl- pyridin-2-yl. In some embodiments, R 8 is l-(tetrahydro-furan-2-yl)methyl. In some
  • R 8 is 1-dimethylaminomethyl-cyclopentyl. In some embodiments, R 8 is 2-(4- lluoro-phenyl)-l -methyl-ethyl. In some embodiments, R 8 is benzothiazol-2-yl. In some embodiments, R 8 is l-(2-fluoro-phenyl)-cyclopropyl. In some embodiments, R 8 is l-(2- methoxy-ethyl)-piperidin-4-yl. In some embodiments, R 8 is 2-hydroxy-l -pyridin-4-yl-ethyl.
  • R 8 is l-(3,3,3-trilluoro-propyl)-azetidin-3-ylmethyl. In some embodiments, R 8 is 6-pyrrolidin-l-yl-pyridin-2-ylmethyl. In some embodiments, R 8 is 1 ,1-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 8 is 2,3-dimethoxy-benzyl. In some embodiments, R 8 is 3-cyano-5-methyl-pyridin-2-yl. In some embodiments, R 8 is 2,3-dihydro-benzofuran-3-yl. In some embodiments, R 8 is 1-hydroxymethyl-cyclohexyl.
  • R 8 is 2,5- dilluoro-benzyl. In some embodiments, R 8 is 4-dimethylamino-benzyl. In some embodiments, R 8 is 4-hydroxy-l , l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 8 is 4- trifluoromethyl-pyridin-2-yl. In some embodiments, R 8 is 5-methyl-thiazol-2-yl. In some embodiments, R 8 is 6-trifluoromethyl-pyridin-3-yl. In some embodiments, R 8 is 5-hydroxy-lH- pyrazol-3-yl.
  • R 8 is 2-thiomorpholin-4-yl-ethyl. In some embodiments, R 8 is benzo[l ,3]dioxol-5-ylmethyl. In some embodiments, R 8 is 2-amino-cyclohexyl. In some embodiments, R 8 is 3-dimethylamino-l-oxo-tetrahydro- ⁇ 4 -thiophen-3-ylmethyl. In some embodiments, R 8 is 4-methyl-morpholin-2-ylmethyl. In some embodiments, R 8 is l-(2-methoxy- phenyl)-cyclopropyl. In some embodiments, R 8 is 2-carboxy-l-(4-fluorophenyl)propan-2-yl.
  • R 8 is pyridin-2-ylmethyl. In some embodiments, R 8 is pyridazin-3-yl. In some embodiments, R 8 is 4-pyridin-2-yl-thiazol-2-yl. In some embodiments, R 8 is l-(3,3,3- trifluoro-propyl)-piperidin-4-ylmethyl. In some embodiments, R 8 is 6-chloro-2-methyl-pyridin-
  • R 8 is 6-hydroxy-pyridin-3-yl. In some embodiments, R 8 is 3- trifluoromethoxy-benzyl. In some embodiments, R 8 is l-morpholin-4-yl-cyclopentylmethyl. In some embodiments, R 8 is l-pyridin-2-yl-cyclobutylmethyl. In some embodiments, R 8 is 2- hydroxy- 1 -hydroxymethyl-l -methyl-ethyl. In some embodiments, R 8 is 5-hydroxymethyl- pyridin-2-yl. In some embodiments, R 8 is 5-fluoro-l-oxy-pyridin-2-yl. In some embodiments, R 8 is 6-methoxy-pyridin-2-yl.
  • R 8 is 1 -methyl- l-pyridin-3-yl-ethyl. In some embodiments, R 8 is 6-methyl-pyridin-3-yl. In some embodiments, R 8 is 2-hydroxy-l - hydroxymethyl-propyl. In some embodiments, R 8 is 2-chloro-pyridin-3-yl. In some
  • R 8 is 3-methyl-3H-imidazol-4-ylmethyl. In some embodiments, R 8 is 6-fluoro- pyridin-2-yl. In some embodiments, R 8 is 3-dimethylamino-benzyl. In some embodiments, R 8 is 6-morpholin-4-yl-pyridin-3-yl. In some embodiments, R 8 is 1-o-tolyl-cyclopropyl. In some embodiments, R 8 is l-(3,3,3-trifluoro-propyl)-piperidin-3-yl. In some embodiments, R 8 is 6- methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R 8 is 2-methyl-quinolin-4-yl. In some embodiments, R 8 is l-(3,3,3-trilluoro-propyl)-pyrrolidin-3-ylmethyl. In some embodiments,
  • R 8 is benzooxazol-2-yl. In some embodiments, R 8 is l-methyl-piperidin-4- ylmethyl. In some embodiments, R 8 is 2-(2,6-dimethyl-morpholin-4-yl)-2-methyl-propyl. In some embodiments, R 8 is l-methyl-piperidin-2-ylmethyl. In some embodiments, R 8 is pyridin-4- ylmethyl. In some embodiments, R 8 is 4-hydroxymethyl-pyridin-2-yl. In some embodiments, R 8 is 5,7-dimethyl-pyrazolo[l ,5-a]pyrimidin-2-yl.
  • R 8 is 6,6-dimethyl- bicyclo[3.1.1]hept-2-ylmethyl. In some embodiments, R 8 is l-(5-methyl-pyridin-2-yl)-ethyl. In some embodiments, R 8 is 2-iluoro-pyridin-3-yl. In some embodiments, R 8 is morpholin-4-yl. In some embodiments, R 8 is 2-hydroxy-2-pyridin-4-yl-ethyl. In some embodiments, R 8 is pyridin-
  • R 8 is 4-hydroxy-pyridin-2-yl. In some embodiments, R 8 is 3- methoxy-benzyl. In some embodiments, R 8 is l-oxy-pyridin-2-yl. In some embodiments, R 8 is 1 -ethyl -propyl. In some embodiments, R 8 is 6-carboxypyridin-2-yl. In some embodiments, R 8 is 1 , 2,2,6, 6-pentamethyl-piperidin-4-yl. In some embodiments, R 8 is 6-methoxy-pyridin-3-yl. In some embodiments, R is cyclopentyl. In some embodiments, R is morpholin-2-ylmethyl.
  • R 8 is l-(teri-butoxycarbonyl)azetidin-3-yl)methyl. In some embodiments, R 8 is 2-dimethylamino-2-pyridin-3-yl-ethyl. In some embodiments, R 8 is l-(4-methoxy-phenyl)- cyclobutyl. In some embodiments, R 8 is 3-hydroxy-benzyl. In some embodiments, R 8 is tetrahydro-furan-2-ylmethyl. In some embodiments, R 8 is 4-(teri-butoxycarbonyl)morpholin-2- ylmethyl. In some embodiments, R 8 is l-(3-fluoro-phenyl)-cyclopropyl.
  • R 8 is 2-o-tolyl-ethyl. In some embodiments, R 8 is 3-hydroxymethyl-l -isobutyl-pyrrolidin-3-yl. In some embodiments, R 8 is l-(2-methoxy-ethyl)-azetidin-3-yl. In some embodiments, R 8 is 6- morpholin-4-yl-pyridin-2-ylmethyl. In some embodiments, R 8 is l ,l-dioxo-tetrahydro- ⁇ 6 - thiophen-3-ylmethyl. In some embodiments, R 8 is 2-(4-iluoro-phenoxy)-ethyl.
  • R 8 is 2,6-dimethyl-pyrimidin-4-yl. In some embodiments, R 8 is 1-hydroxymethyl- 2-(3H-imidazol-4-yl)-ethyl. In some embodiments, R 8 is 4-methanesulfonyl-benzyl. In some embodiments, R 8 is l-pyridin-3-yl-cyclopropyl. In some embodiments, R 8 is 9-methyl-9-aza- bicyclo[3.3.1]non-l-yl. In some embodiments, R 8 is 2,6-dimethyl-pyridin-3-yl. In some embodiments, R 8 is 4-hydroxy-benzyl.
  • R 8 is 2-oxo-2-phenyl-ethyl). In some embodiments, R 8 is l-methyl-lH-pyrazol-3-ylmethyl. In some embodiments, R 8 is pyrimidin-2-yl. In some embodiments, R 8 is 5-methyl-pyrazin-2-yl. In some embodiments, R 8 is l-(2-methoxy-pyridin-3-yl)-l -methyl-ethyl. In some embodiments, R 8 is 6-methanesulfonyl-2- methyl-pyridin-3-yl. In some embodiments, R 8 is 2-hydroxy-benzyl. In some embodiments, R 8 is 6-bromo-2-methyl-pyridin-3-yl.
  • R 8 is 2-methoxy-pyridin-3-yl. In some embodiments, R 8 is l-(4-chloro-phenyl)-cyclobutyl. In some embodiments, R 8 is 2-(pyridine-2- sulfonyl)-ethyl. In some embodiments, R 8 is l-pyridin-2-yl-cyclopropylmethyl. In some embodiments, R 8 is l-methyl-l ,2,3,4-tetrahydro-quinolin-7-yl. In some embodiments, R 8 is benzyl. In some embodiments, R 8 is 3,5-dimethyl-pyrazin-2-yl. In some embodiments, R 8 is 1- (2-hydroxy-pyridin-3-yl)-l -methyl -ethyl. In some embodiments, R 8 is 1-
  • R 8 is l-(teri-butoxycarbonyl)pyrrolidin-3- ylmethyl. In some embodiments, R 8 is quinolin-4-ylmethyl. In some embodiments, R 8 is 2-(4- fluoro-phenyl)-l-(2-hydroxy-ethylcarbamoyl)-l -methyl-ethyl. In some embodiments, R 8 is 2- morpholin-4-yl-pyridin-3-yl. In some embodiments, R 8 is 6-methyl-pyridin-2-yl. In some embodiments, R 8 is 3-difluoromethoxy-benzyl.
  • R 8 is 4-hydroxy-l- methyl-piperidin-4-ylmethyl. In some embodiments, R 8 is l-(2,5-dimethylpyrrolidine-l- carbonyl)cyclopentyl. In some embodiments, R 8 is 2-methoxy-benzyl. In some embodiments, R 8 is 6-methyl-pyridin-2-ylmethyl. In some embodiments, R 8 is 3-chloro-pyridin-4-yl. In some embodiments, R 8 is 2-carboxypropan-2-yl. In some embodiments, R 8 is 6-chloro-pyridin-3-yl. In some embodiments, R 8 is 2-hydroxy-2-pyridin-3-yl -ethyl.
  • R 8 is l-p-tolyl- cyclopropyl. In some embodiments, R 8 is l-(3,3,3-trifluoro-propyl)-piperidin-4-yl. In some embodiments, R 8 is 4-methoxy-pyridin-2-yl. In some embodiments, R 8 is 3-azepan-l-yl-2,2- dimethyl-propyl. In some embodiments, R is l-(teri-butoxycarbonyl)azetidin-3-yl. In some embodiments, R 8 is 5-methyl-pyrazin-2-ylmethyl. In some embodiments, R 8 is 1-oxo- hexahydro- ⁇ 4 -thiopyran-4-yl.
  • R 8 is 2-(2-chloro-phenyl)-ethyl. In some embodiments, R 8 is 3-chloro-5-trifluoromethyl-pyridin-2-ylmethyl. In some embodiments, R 8 is 2-hydroxy-l-hydroxymethyl-ethyl. In some embodiments, R 8 is (l-methyl-pyrrolidin-2-yl)- pyridin-2-yl. In some embodiments, R 8 is 5-fluoro-2-hydroxy-phenyl. In some embodiments, R 8 is methyl. In some embodiments, R 8 is 4-(methoxycarbonyl)-l-methylpiperidin-4-yl. In some embodiments, R 8 is 4-hydroxymethyl-l-methyl-piperidin-4-yl.
  • R 8 is 2- (2-hydroxymethyl-pyrrolidin-l-yl)-ethyl. In some embodiments, R 8 is 1 -phenyl -cyclohexyl. In some embodiments, R 8 is 3-methyl-l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 8 is 1-cyano-cyclohexyl. In some embodiments, R 8 is l-(5-methyl- [l,2,4]oxadiazol-3-yl)-cyclohexyl. In some embodiments, R 8 is 2-cyanopropan-2-yl. In some embodiments, R 8 is 3-methyl-l-phenylureido.
  • R 8 is l-carbamoyl-2,2- dimethyl-propyl. In some embodiments, R 8 is teri-butylamino. In some embodiments, R 8 is 2,2,2-trifluoro- 1,1 -dimethyl-ethyl. In some embodiments, R 8 is 2,2-dimethyl-l- methylcarbamoyl -propyl. In some embodiments, R 8 is 1-cyclopropyl-ethyl. In some
  • R 8 is amino. In some embodiments, R 8 is N-teri-butylmethylsulfonamido. In some embodiments, R 8 is l,l-dimethyl-prop-2-ynyl. In some embodiments, R 8 is 2-methyl-l- (phosphonooxy)propan-2-yl. In some embodiments, R 8 is l-teri-butyl-3-methylureido. In some embodiments, R 8 is 4-cyano-tetrahydro-pyran-4-yl. In some embodiments, R 8 is 1 -methyl - cyclobutyl. In some embodiments, R 8 is l-hydroxymethyl-2-methyl-propyl.
  • R 8 is cyclobutylamino. In some embodiments, R 8 is 1-cyano-cyclopentyl. In some embodiments, R 8 is cyano-dimethyl-methyl. In some embodiments, R 8 is 2,2-dimethyl-l- (methylcarbamoyl)-propyl. In some embodiments, R 8 is phenylamino. In some embodiments, R 8 is 1-hydroxymethyl-propyl. In some embodiments, R 8 is l-methyl-l-(lH-tetrazol-5-yl)-ethyl. In some embodiments, R 8 is 3,3-dimethyl-l-(phosphonooxy)butan-2-yl).
  • R 8 is 2-hydroxy-l-tetrahydro-pyran-4-yl-ethyl. In some embodiments, R 8 is 1 ,2-dimethyl-propyl. In some embodiments, R 8 is l-pyridin-2-yl-cyclobutyl. In some embodiments, R 8 is 1- hydroxymethyl-2-phenyl-ethyl. In some embodiments, R 8 is 4-methylcarbamoyl-tetrahydro- pyran-4-yl. In some embodiments, R 8 is 1 -methyl- 1-methylcarbamoyl-ethyl. In some embodiments, R 8 is 2,2-dimethyl-l-morpholin-4-ylmethyl-propyl. In some embodiments, R 8 is
  • R 8 is 2-methoxy-2-oxo-l-(pyridin-
  • R 8 is methylcarbamoyl-pyridin-2-yl-methyl. In some embodiments, R 8 is 1-methylcarbamoyl-cyclopentyl. In some embodiments, R 8 is ⁇ - ⁇ tert- butylcarbamoyl)-2,2-dimethyl -propyl. In some embodiments, R 8 is 2,2-dimethyl-l-(pyridin-2- ylcarbamoyl)-propyl. In some embodiments, R 8 is l-(pyridin-2-ylcarbamoyl)-cyclobutyl. In some embodiments, R 8 is 1-methylcarbamoyl-cyclobutyl.
  • R 8 is 2- (methylamino)-2-oxo-l-phenylethyl. In some embodiments, R is pyrrolidin-l-yl. In some embodiments, R 8 is piperidin-l-yl. In some embodiments, R 8 is 2,6-dimethyl-piperidin-l-yl. In some embodiments, R 8 is l-cyclopropylcarbamoyl-2,2-dimethyl-propyl. In some embodiments, R 8 is 2,2-dimethyl-l-(2,2,2-trifluoro-ethylcarbamoyl)-propyl.
  • R 8 is 1- ethylcarbamoyl-2,2-dimethyl -propyl. In some embodiments, R 8 is 2-hydroxy-l-(tetrahydro- pyran-4-yl)-ethyl. In some embodiments, R 8 is N-cyclobutylmethylsulfonamido. In some embodiments, R 8 is N-phenylmethylsulfonamido. In some embodiments, R 8 is l-cyclopropyl-2- hydroxy-ethyl. In some embodiments, R 8 is 1 ,2,2-trimethyl-propyl.
  • R 8 is 2-oxo-l-(pyridin-2-yl)-2-(2,2,2-trifluoroethylamino)ethyl. In some embodiments, R 8 is 2,2- dimethyl- 1 -pyridin-2-yl -propyl. In some embodiments, R 8 is 1 -me thoxy-3, 3 -dimethyl- 1- oxobutan-2-yl. In some embodiments, R 8 is l-carboxy-2,2-dimethylpropyl. In some
  • R 8 is l-(hydroxy-methyl-carbamoyl)-2,2-dimethyl-propyl. In some embodiments, R 8 is l-dimethylcarbamoyl-2,2-dimethyl-propyl. In some embodiments, R 8 is l-(azetidine-l- carbonyl)-2,2-dimethyl-propyl. In some embodiments, R 8 is l-methoxycarbamoyl-2,2-dimethyl- propyl. In some embodiments, R 8 is l-(methoxy-methyl-carbamoyl)-2,2-dimethyl-propyl.
  • R 8 is l-teri-butoxycarbamoyl-2,2-dimethyl-propyl. In some embodiments, R 8 is 2,2-dimethyl-l-pyridin-2-yl -propyl. In some embodiments, R 8 is iluoromethyl. In some embodiments, R 8 is 2,2,2-trilluoroethylamino. In some embodiments, R 8 is (1,1-dioxo- tetrahydro- ⁇ 6 -thiophen-3-yl)amino. In some embodiments, R 8 is l-hydroxycarbamoyl-2,2- dimethyl-propyl. In some embodiments, R 8 is l-hydroxymethyl-2-methyl-butyl.
  • R 8 is l-(2-hydroxy-ethylcarbamoyl)-2,2-dimethyl-propyl. In some embodiments, R 8 is l,l-&/s-hydroxymethyl-propyl. In some embodiments, R 8 is l-(5-fluoro-pyridin-2-yl)-2,2- dimethyl-propyl. In some embodiments, R 8 is 4-hydroxymethyl-tetrahydro-2H-pyran-4-yl. In some embodiments, R 8 is l-(2-(teri-butoxycarbonylamino)-3-methylbutanoyloxy)-2- methylpropan-2-yl.
  • R 8 is l-(2-amino-3-methylbutanoyloxy)-3- methylbutan-2-yl. In some embodiments, R 8 is l-(2-amino-3-methylbutanoyloxy)-2- methylpropan-2-yl. In some embodiments, R 8 is 2-hydroxy-l-(tetrahydro-2H-pyran-4-yl)-ethyl. In some embodiments, R 8 is l-(4-carboxybutanoyloxy)-2-methylpropan-2-yl. In some embodiments, R 8 is l-(4-carboxybutanoyloxy)-3-methylbutan-2-yl.
  • R 8 is l-(4-carboxybutanoyloxy)-3,3-dimethylbutan-2-yl. In some embodiments, R 8 is l-(2-amino-3- methylbutanoyloxy)-3,3-dimethylbutan-2-yl. In some embodiments, R 8 is 2-(2-amino-3- methylbutanoyloxy)-l-(tetrahydro-2H-pyran-4-yl)ethyl. In some embodiments, R 8 is 3,3,3- trilluoro-l-hydroxymethyl-propyl. In some embodiments, R 8 is 3-fluoro-l-methoxy-3-methyl-l- oxobutan-2-yl.
  • R 8 is l-ethoxy-4,4,4-trilluoro-l-oxo-3- (trilluoromethyl)butan-2-yl. In some embodiments, R 8 is 2-lluoro-l-hydroxymethyl-2-methyl- propyl. In some embodiments, R 8 is l-(2-(tert-butoxycarbonylamino)-3-methylbutanoyloxy)- 3,3-dimethylbutan-2-yl. In some embodiments, R 8 is 4,4,4-trifluoro-l-methoxy-l-oxobutan-2-yl. In some embodiments, R is 2-fluoro- 1,1 -dimethyl-ethyl.
  • R is 3-fluoro- 2-(fluoromethyl)-l-methoxy-l-oxopropan-2-yl.
  • R 8 is 2-fluoro-l- fluoromethyl-l-hydroxymethyl-ethyl.
  • R 8 is 3-hydroxy-l-methoxy-2- methyl-l-oxopropan-2-yl.
  • R 8 is 2-carboxy-l-hydroxypropan-2-yl.
  • R 8 is 2,2,2-trifluoroethylamino.
  • R 8 is 1- fluoromethyl-2-methyl-propyl.
  • R 8 is l-fluoromethyl-2,2-dimethyl- propyl. In some embodiments, R 8 is 3-methyl-oxetan-3-yl. In some embodiments, R 8 is 1- lluoromethyl-cyclobutyl. In some embodiments, R 8 is l,l-& s-hydroxymethyl-2-methyl-propyl. In some embodiments, R 8 is 1-trifluoromethyl-cyclopropyl. In some embodiments, R 8 is 1- methyl-cyclopropyl. In some embodiments, R 8 is 1-trilluoromethyl-cyclobutyl.
  • R 9 is selected from H, C 1 -C6 alkyl, and C 3 -C 7 cycloalkyl.
  • R 9 is C 1 -C6 alkyl.
  • R 9 is C 3 -C 7 cycloalkyl.
  • R 9 is selected from H, methyl, tert-butyl, and cyclobutyl.
  • R 9 is H.
  • R 9 is methyl
  • R 9 is tert-butyl
  • R 9 is cyclobutyl
  • R 10 is selected from: Ci-C 6 alkylene, heteroarylene, and heterocyclylene.
  • R 10 is selected from: 1,1-dimethylethylene, 1,1- dimethylmethylene, ethylene, methylene, 1,4-piperidinylene, 2,5-pyrazinylene, and 2,4- pyridinylene.
  • R 10 is C 1 -C6 alkylene.
  • R 10 is selected from: 1,1-dimethylethylene, 1,1- dimethylmethylene, ethylene, and methylene.
  • R 10 is 1,1-dimethylethylene
  • R 10 is 1,1-dimethylmethylene.
  • R 10 is ethylene
  • R 10 is methylene
  • R 10 is heteroarylene
  • R 10 is selected from: 2,5-pyrazinylene, and 2,4-pyridinylene. In some embodiments, R 10 is heterocyclylene.
  • R 10 is 1,4-piperidinylene.
  • R is absent.
  • the Group R 11 is absent.
  • R 11 is selected from: -C(0)NH- and Ci-C 6 alkylene.
  • R 11 is selected from: -C(0)NH- and methylene.
  • R 11 is -C(0)NH-.
  • R 11 is Ci-C 6 alkylene.
  • R 11 is methylene
  • R 11 is absent.
  • R 12 is C 1 -C6 alkylene.
  • R 12 is methylene
  • R 12 is 1,1-dimethyl-methylene.
  • R 12 is absent.
  • R 13 is selected from: C 1 -C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C 6 alkoxy, Ci-C 6 alkyl, Q- C 6 alkylamino, Ci-C 6 alkylsulfonyl, amino, C 3 -C 7 cycloalkyl, cyano, C 2 -C 8 dialkylamino, Ci-C 6 haloalkyl, halogen, and hydroxyl.
  • R 13 is selected from: Ci-C 6 alkyl, aryl, C 3 -C 7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, bromo, chloro, iodo, methoxy, cyano, methyl, tert-butyl, isopropyl, hydroxyl, ethyl, heptafluoropropyl, cyclobutyl, trifluoromethyl, cyclopropyl, dimethylamino, methoxy, ethoxy, methylamino, propyl, amino, and methanesulfonyl.
  • R 13 is selected from: C 1 -C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C 1 -C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, bromo, chloro, methoxy, cyano, methyl, tert-butyl, isopropyl, hydroxyl, ethyl, heptafluoropropyl, cyclobutyl, trifluoromethyl, cyclopropyl, dimethylamino, methoxy, ethoxy, methylamino, propyl, amino, and methanesulfonyl.
  • R 13 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 2- fluoro-4-methanesulfonyl-phenyl, 2,6-difluoro-phenyl, 2,5-difluoro-phenyl, 4-methoxy-phenyl, 4-cyano-phenyl, 4-fluoro-phenyl, phenyl, 2-fluoro-phenyl, 3-fluoro-phenyl, o-tolyl, tert-butyl, isopropyl, 2,2-dimethylpropyl, hydroxyl, 2-hydroxy-2-methylpropyl, l-oxo-hexahydro- ⁇ 4 - thiopyran-4-yl, l,l-dioxo-hexahydro- ⁇ 6 -thiopyran-4-yl, tetrahydrothiopyran-4-yl, morpholin-4- yl,
  • R 13 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 2- fluoro-4-methanesulfonyl-phenyl, 2,6-difluoro-phenyl, 2,5-difluoro-phenyl, 4-methoxy-phenyl,
  • R 13 is 2,4-difluoro-phenyl. In some embodiments, R 13 is 2,4- dichloro-phenyl. In some embodiments, R 13 is 2-fluoro-4-methanesulfonyl-phenyl. In some embodiments, R 13 is 2,6-diiluoro-phenyl. In some embodiments, R 13 is 2,5-difluoro-phenyl. In some embodiments, R 13 is 4-methoxy-phenyl. In some embodiments, R 13 is 4-cyano-phenyl. In some embodiments, R 13 is 4-iluoro-phenyl. In some embodiments, R 13 is phenyl.
  • R 13 is 2-iluoro-phenyl. In some embodiments, R 13 is 3-iluoro-phenyl. In some embodiments, R 13 is o-tolyl. In some embodiments, R 13 is teri-butyl. In some embodiments, R 13 is isopropyl. In some embodiments, R 13 is 2,2-dimethylpropyl. In some embodiments, R 13 is hydroxyl. In some embodiments, R 13 is 2-hydroxy-2-methylpropyl. In some embodiments, R 13 is l-oxo-hexahydro- ⁇ 4 -thiopyran-4-yl.
  • R 13 is l,l-dioxo-hexahydro- ⁇ 6 - thiopyran-4-yl. In some embodiments, R 13 is tetrahydrothiopyran-4-yl. In some embodiments, R 13 is morpholin-4-yl. In some embodiments, R 13 is tetrahydro-pyran-4-yl. In some
  • R 13 is l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 13 is pyrazin-2-yl. In some embodiments, R 13 is 5-ethyl-pyrazin-2-yl. In some embodiments, R 13 is 5- hydroxy-pyrazin-2-yl. In some embodiments, R 13 is 5-isopropyl-pyrazin-2-yl. In some embodiments, R 13 is 5-heptafluoropropyl-pyrazin-2-yl. In some embodiments, R 13 is 5- cyclobutyl-pyrazin-2-yl. In some embodiments, R 13 is 5-methyl-pyrazin-2-yl.
  • R 13 is 6-ethyl-pyrazin-2-yl. In some embodiments, R 13 is 5-triiluoromethyl- pyrazin-2-yl. In some embodiments, R 13 is cyclopropyl. In some embodiments, R 13 is 5- cyclopropyl-pyrazin-2-yl. In some embodiments, R 13 is 6-chloro-pyrazin-2-yl. In some embodiments, R 13 is 5-dimethylamino-pyrazin-2-yl. In some embodiments, R 13 is 4-cyano- phenyl. In some embodiments, R 13 is 6-methoxy-pyridazin-3-yl.
  • R 13 is 6- chloro-pyridazin-3-yl. In some embodiments, R 13 is pyrimidin-5-yl. In some embodiments, R 13 is 6-dimethylamino-pyrazin-2-yl. In some embodiments, R 13 is 6-methoxy-pyrazin-2-yl. In some embodiments, R 13 is 2-pyrimidin-4-yl. In some embodiments, R 13 is 5-bromo-pyrazin-2-yl. In some embodiments, R 13 is 5-hydroxy-pyrazin-2-yl. In some embodiments, R 13 is 5-methoxy- pyrazin-2-yl. In some embodiments, R 13 is 5-ethoxypyrazin-2-yl.
  • R 13 is 5-methylamino-pyrazin-2-yl. In some embodiments, R 13 is 5-bromo-pyridin-2-yl. In some embodiments, R 13 is pyridin-3-yl. In some embodiments, R 13 is 5-trilluoromethyl-pyridin-2-yl. In some embodiments, R 13 is 5-isopropyl-pyridin-2-yl. In some embodiments, R 13 is 5- isopropyl-pyridin-2-yl. In some embodiments, R is 5-methyl-pyridin-2-yl. In some embodiments, R 13 is 5-ethyl-pyridin-2-yl. In some embodiments, R 13 is 5-methoxy-pyridin-2-yl.
  • R 13 is 4-trifluoromethyl-pyridin-2-yl. In some embodiments, R 13 is 5- cyano-pyridin-2-yl. In some embodiments, R 13 is 5-dimethylamino-pyridin-2-yl. In some embodiments, R 13 is 4-methyl-pyridin-2-yl. In some embodiments, R 13 is 5-chloro-4-methyl- pyridin-2-yl. In some embodiments, R 13 is 5-chloro-4-trifluoromethyl-pyridin-2-yl. In some embodiments, R 13 is 4-trifluoromethyl-pyridin-2-yl. In some embodiments, R 13 is 3-fluoro- pyridin-2-yl.
  • R 13 is 6-methyl-4-trifluoromethyl-pyridin-2-yl. In some embodiments, R 13 is 3-methyl-pyridin-2-yl. In some embodiments, R 13 is 5-propyl-pyridin-2-yl. In some embodiments, R 13 is 5-cyclopropyl-pyridin-2-yl. In some embodiments, R 13 is 5-fluoro- pyridin-2-yl. In some embodiments, R 13 is 3,5-difluoro-pyridin-2-yl. In some embodiments, R 13 is 6-bromo-pyridin-3-yl. In some embodiments, R 13 is 5-bromo-pyridin-3-yl.
  • R 13 is 5,6-difluoro-pyridin-3-yl. In some embodiments, R 13 is 6-chloro-pyridin-3- yl. In some embodiments, R 13 is 3-fluoro-pyridin-4-yl. In some embodiments, R 13 is 5-cyano- pyridin-3-yl. In some embodiments, R 13 is pyridin-4-yl. In some embodiments, R 13 is 2-chloro- pyridin-4-yl. In some embodiments, R 13 is 2-methoxy-pyridin-4-yl. In some embodiments, R 13 is 6-methyl-pyridin-3-yl. In some embodiments, R 13 is ra-tolyl.
  • R 13 is thiazol-2-yl. In some embodiments, R 13 is cyclopentyl. In some embodiments, R 13 is 4-amino- pyridin-2-yl. In some embodiments, R 13 is 4-methoxy-pyridin-2-yl. In some embodiments, R 13 is 4-choro-pyridin-2-yl. In some embodiments, R 13 is 4-fluoro-pyridin-2-yl. In some embodiments, R 13 is 4-cyclopropyl-pyridin-2-yl. In some embodiments, R 13 is 4-bromo-pyridin-2-yl. In some embodiments, R 13 is 4-methanesulfonyl-pyridin-2-yl.
  • R 13 is 4-cyano- pyridin-2-yl. In some embodiments, R 13 is hydroxymethyl. In some embodiments, R 13 is 4-oxy- pyrazin-2-yl. In some embodiments, R 13 is 3-methyl-l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 13 is 5-chloro-3-fluoro-pyridin-2-yl. In some embodiments, R 13 is 3- fluoro-5-methoxy-pyridin-2-yl. In some embodiments, R 13 is 2-chloro-4-fluoro-phenyl. In some embodiments, R 13 is 6-fluoro-pyridin-3-yl.
  • R 13 is 6-cyano-pyridin-3-yl. In some embodiments, R 13 is 4-iodo-pyridin-2-yl. In some embodiments, R 13 is l-oxy-pyridin-3- yl. In some embodiments, R 13 is 4-hydroxy-pyridin-2-yl.
  • R 14 is selected from: Ci-C 6 alkylene, C 3 -C 7 cycloalkenylene, C 3 - C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C 6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Q- C 6 alkoxycarbonyl, Ci-C 6 alkyl, C 3 -C 7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C 6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl.
  • R is selected from: Ci-C 6 alkylene and C 3 -C 7 cycloalkylene; wherein said Ci-C 6 alkylene is optionally substituted with one or more substituents selected from: Ci-C 6 alkyl, aryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl is optionally substituted with one substituent selected from: halogen, and hydroxyl.
  • R 14 is selected from: Ci-C 6 alkylene, C 3 -C 7 cycloalkenylene, C 3 -
  • substituents selected from: methyl, tert-butyl
  • R 14 is selected from: C 1 -C6 alkylene, C3-C7 cycloalkenylene, C 3 - C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C 1 -C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: methyl, tert-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4- fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, and cyclopropyl.
  • R 14 is selected from: Ci-C 6 alkylene and C 3 -C 7 cycloalkylene; wherein said Ci-C 6 alkylene is optionally substituted with one or more substituents selected from: tetrahydro-2H-pyranyl, hydroxyl, 2,2,2-trifluoroethyl, and fluoromethyl.
  • R 14 is selected from: methylene, ethylene, cyclopropylene, cyclobutylene, piperidinylene, pyridinylene, tetrahydropyranylene, thiazolylene, cyclohexylene, cyclopentylene, cyclopentenylene, dioxohexahydrothiopyranylene, pyrrolidinylene,
  • ethylene, methylene, piperidinylene, propylene, and pyrrolidinylene are each optionally substituted with one or more substituents selected from: methyl, tert-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4-fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, cyclopropyl, sec-butyl, 2,2,2-trifluoroethyl, 2-fluoropropan-2-yl, 1,1, 1,3,3, 3-hexafluoropropan- 2-yl, and flu
  • R 14 is selected from: methylene, ethylene, cyclopropylene, cyclobutylene, piperidinylene, pyridinylene, tetrahydropyranylene, thiazolylene, cyclohexylene, cyclopentylene, cyclopentenylene, dioxohexahydrothiopyranylene, pyrrolidinylene,
  • piperidinylene, propylene, and pyrrolidinylene are each optionally substituted with one or more substituents selected from: methyl, teri-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4-fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, and
  • R 14 is selected from: methylene, ethylene, 1 , 1-cyclopropylene, 1 ,1-dimethyl-methylene, 1 ,1-cyclobutylene, teri-butyl-methylene, 1 -methyl -4,4-piperidinylene, 4,4-tetrahydro-2H-pyranylene, methyl-methylene, 1 ,1-cyclohexylene, 1 ,2-cyclohexylene, 1 ,1- dimethyl-ethylene, 1-teri-butyl-ethylene, 1-ethyl-ethylene, 1-methyl-ethylene, l-(tetrahydro-2H- pyran-4-yl)-ethylene, isopropyl-methylene, 1 ,1-cyclopentylene, benzyl-methylene, 4,4- cyclopent- 1 -enylene, 1 , 1 -dioxo-hexahydro- 1 ⁇ 6 -4,4-thiopyranylene, 1
  • R 14 is selected from: methylene, ethylene, 1 , 1-cyclopropylene, 1 ,1-dimethyl-methylene, 1 ,1-cyclobutylene, teri-butyl-methylene, 1 -methyl -4,4-piperidinylene, 4,4-tetrahydro-2H-pyranylene, methyl-methylene, 1 ,1-cyclohexylene, 1 ,2-cyclohexylene, 1 ,1- dimethyl-ethylene, 1-teri-butyl-ethylene, 1-ethyl-ethylene, 1-methyl-ethylene, l-(tetrahydro-2H- pyran-4-yl)-ethylene, isopropyl-methylene, 1 ,1-cyclopentylene, benzyl-methylene, 4,4- cyclopent- 1 -enylene, 1 , 1 -dioxo-hexahydro- 1 ⁇ 6 -4,4-thiopyranylene, 1
  • R is selected from: 1,1-cyclopropylene, 1,1 -dimethyl - methylene, 1,1-cyclobutylene, teri-butyl-methylene, 1,1-dimethyl-ethylene, l-tert-b ty ⁇ - ethylene, l-(tetrahydro-2H-pyran-4-yl)-ethylene, isopropyl-methylene, 1-hydroxymethyl-l- methyl-ethylene, phenyl-methylene, 1-isopropyl-ethylene, l-(2,2,2-trifluoroethyl)-ethylene, and l,l-di(fluoromethyl)-ethylene.
  • R 14 is methylene. In some embodiments, R 14 is ethylene. In some embodiments, R 14 is 1,1-cyclopropylene. In some embodiments, R 14 is 1,1-dimethyl-methylene. In some embodiments, R 14 is 1,1-cyclobutylene. In some embodiments, R 14 is teri-butyl- methylene. In some embodiments, R 14 is l-methyl-4,4-piperidinylene. In some embodiments, R 14 is 4,4-tetrahydro-2H-pyranylene. In some embodiments, R 14 is methyl-methylene. In some embodiments, R 14 is 1,1-cyclohexylene. In some embodiments, R 14 is 1,2-cyclohexylene.
  • R 14 is 1,1-dimethyl-ethylene. In some embodiments, R 14 is 1-teri-butyl- ethylene. In some embodiments, R 14 is 1-ethyl-ethylene. In some embodiments, R 14 is 1-methyl- ethylene. In some embodiments, R 14 is l-(tetrahydro-2H-pyran-4-yl)-ethylene. In some embodiments, R 14 is isopropyl-methylene. In some embodiments, R 14 is 1,1-cyclopentylene. In some embodiments, R 14 is benzyl-methylene. In some embodiments, R 14 is 4,4-cyclopent-l- enylene.
  • R 14 is l,l-dioxo-hexahydro- ⁇ 6 -4,4-thiopyranylene. In some embodiments, R 14 is l-teri-butoxycarbonyl-4,4-piperidinylene. In some embodiments, R 14 is 1- (pyridin-4-yl)-ethylene. In some embodiments, R 14 is l-(pyridin-3-yl)-ethylene. In some embodiments, R 14 is l-(pyridin-2-yl)-ethylene. In some embodiments, R 14 is l-(4-fluoro- phenyl)-ethylene. In some embodiments, R 14 is 1-hydroxymethyl-l-methyl-ethylene.
  • R 14 is 1-carboxy-l -methyl -ethylene. In some embodiments, R 14 is 1- methoxymethyl -ethylene. In some embodiments, R 14 is 1-hydroxymethyl -ethylene. In some embodiments, R 14 is l-(l-hydroxyethyl)-ethylene. In some embodiments, R 14 is 1,1-dimethyl- ethylene. In some embodiments, R 14 is l-(tetrahydro-furan-3-yl)-ethylene. In some
  • R 14 is phenyl-methylene. In some embodiments, R 14 is l-(3H-imidazol-4- ylmethyl)-ethylene. In some embodiments, R 14 is l-(4-hydroxy-phenyl) -ethylene. In some embodiments, R 14 is benzyl-ethylene. In some embodiments, R 14 is (l-hydroxymethyl-2- methyl)-ethylene. In some embodiments, R 14 is 1-isopropyl-ethylene. In some embodiments, R 14 is pyridin-2-yl-methylene. In some embodiments, R 14 is 1,1-dimethyl-propylene. In some embodiments, R 14 is 2-hydroxy-propylene.
  • R 14 is (1-isobutyl-pyrrolidin- 3-yl)-methylene. In some embodiments, R 14 is 1,3-azetidinylene. In some embodiments, R 14 is 1,3-pyrrolidinylene. In some embodiments, R 14 is 1,3-piperidinylene. In some embodiments, R 14 is 1,4-piperidinylene. In some embodiments, R 14 is 2,4-thiazolylene. In some embodiments, R 14 is 3,4-pyridinylene. In some embodiments, R 14 is 2,4-pyridinylene. In some embodiments, R 14 is 2,5-pyridinylene. In some embodiments, R 14 is -S0 2 -.
  • R 14 is 2,5- pyridinylene. In some embodiments, R 14 is 1-cyclopropyl-ethylene. In some embodiments, R 14 is l-(seobutyl)-ethylene. In some embodiments, R is 1-hydroxymethyl-l-ethyl-ethylene. In some embodiments, R 14 is 1-isopropyl-ethylene. In some embodiments, R 14 is l-(2,2,2-trifluoroethyl)- ethylene. In some embodiments, R 14 is (2-lluoropropan-2-yl) -methylene. In some embodiments, R 14 is (1 ,1 ,1 , 3,3, 3-hexafluoropropan-2-yl)-methylene.
  • R 14 is l-(2- fluoropropan-2-yl)-ethylene. In some embodiments, R 14 is (2,2,2-trilluoroethyl)-methylene. In some embodiments, R 14 is l , l-di(lluoromethyl)-ethylene. In some embodiments, R 14 is
  • R 14 is
  • R 14 (hydroxymethyl)(methyl)methylene.
  • R 14 is 3,3-oxetanylene.
  • R 14 is 1-hydroxymethyl-l -isopropyl-ethylene.
  • R 14 is absent.
  • R 15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C 1 -C6 alkyl.
  • R 15 is selected from: -C(0)NH-, -C(O)-, Ci-C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C 6 alkyl.
  • R 15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with methyl.
  • R 15 is selected from: -C(0)NH-, -C(O)-, Ci-C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with methyl.
  • R 15 is selected from: pyrrolidinylene, piperidinylene, pyridinylene, azetidinylene, -C(0)NH-, -C(O)-, -C(0)0-, morpholinylene, methylene, ethylene, cyclopropylene, tetrahydropyranylene, cyclopentylene, tetrahydrothiophenylene,
  • R 15 is selected from: pyrrolidinylene, piperidinylene, pyridinylene, azetidinylene, -C(0)NH-, -C(O)-, morpholinylene, methylene, ethylene, cyclopropylene, tetrahydropyranylene, cyclopentylene, tetrahydrothiophenylene,
  • R 15 is selected from: 1 ,3 -pyrrolidinylene, 1 ,4-piperidinylene, 2,6- pyridinylene, 1 ,3-azetidinylene, -C(0)NH-, -C(O)-, -C(0)0-, 1 ,2-pyrrolidinylene, 2,4- morpholinylene, ethylene, methylene, 1 , 1 -cyclopentylene, 4,4-tetrahydro-2H-pyranylene, 3,3- tetrahydro-thiophenylene, 1 ,1 -cyclopropylene, l-methyl-4,4-piperidinylene, and 1-oxo- tetrahydro- 1 ⁇ 4 -3 ,3 -thiophenylene .
  • R is selected from: 1,3-pyrrolidinylene, 1 ,4-piperidinylene, 2,6- pyridinylene, 1,3-azetidinylene, -C(0)NH-, -C(O)-, 1,2-pyrrolidinylene, 2,4-morpholinylene, ethylene, methylene, 1,1-cyclopentylene, 4,4-tetrahydro-2H-pyranylene, 3,3-tetrahydro- thiophenylene, 1,1-cyclopropylene, l-methyl-4,4-piperidinylene, and l-oxo-tetrahydro- ⁇ 4 -3,3- thiophenylene.
  • R 15 is selected from: -C(0)NH- and -C(0)0-.
  • R 15 is 1,3-pyrrolidinylene. In some embodiments, R 15 is 1,4- piperidinylene. In some embodiments, R 15 is 2,6-pyridinylene. In some embodiments, R 15 is 1,3- azetidinylene. In some embodiments, R 15 is -C(0)NH-. In some embodiments, R 15 is -C(O)-. In some embodiments, R 15 is 1,2-pyrrolidinylene. In some embodiments, R 15 is 2,4- morpholinylene. In some embodiments, R 15 is ethylene. In some embodiments, R 15 is methylene. In some embodiments, R 15 is 1,1-cyclopentylene. In some embodiments, R 15 is 4,4-tetrahydro- 2H-pyranylene. In some embodiments, R 15 is 3,3-tetrahydro-thiophenylene. In some
  • R 15 is 1,1-cyclopropylene. In some embodiments, R 15 is 1 -methyl -4,4- piperidinylene. In some embodiments, R 15 is l-oxo-tetrahydro- ⁇ 4 -3,3-thiophenylene.
  • R 15 is absent.
  • R 16 is Ci-C 6 alkylene.
  • R 16 is selected from: ethylene, methylene, isopropyl-methylene, and propylene.
  • R 16 is selected from: methylene, isopropyl-methylene, and propylene.
  • R 16 is selected from: ethylene, and methylene.
  • R 16 is ethylene
  • R 16 is methylene
  • R 16 is absent.
  • R 17 is selected from: ⁇ , C 1 -C6 alkoxy, C 1 -C6 alkyl, C 1 -C6 alkylamino, C 1 -C6 alkylcarboxamide, C 2 -C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C 3 -C 7 cycloalkyl, C5-C 11 bicycloalkyl, C3-C7 cycloalkylaniino, C 2 -C 8 dialkylaniino, C 2 -C 8 dialkylsulionaniide, C 1 -C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C 6 alkylamino, aryl,
  • R 17 is selected from: H, Ci-C 6 alkyl, Ci-C 6 alkylamino, amino, aryl, carboxy, cyano, Ci-C 6 haloalkyl, heteroaryl, hydroxyl, and phosphonooxy; wherein said aryl is optionally substituted with one hydroxyl group.
  • R 17 is selected from: H, C 1 -C6 alkoxy, C 1 -C6 alkyl, C 1 -C6 alkylamino, C 1 -C6 alkylcarboxamide, C 2 -C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C 11 bicycloalkyl, C3-C7 cycloalkylamino, C 2 -C 8 dialkylamino, C 2 -C 8 dialkylsulfonamide, C 1 -C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C 1 -C6 alkylamino, amino, aryl,
  • R 17 is selected from: H, Ci-C 6 alkoxy, Ci-C 6 alkyl, Ci-C 6 alkylamino, Ci-C 6 alkylcarboxamide, C 2 -C 6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C 11 bicycloalkyl, C3-C7 cycloalkylamino, C 2 -C 8 dialkylamino, C 2 -C 8 dialkylsulfonamide, C 1 -C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C 1 -C6 alkylamino, aryl, arylamino, aryloxy,
  • R 17 is selected from: H, Ci-C 6 alkyl, Ci-C 6 alkylamino, amino, aryl, carboxy, cyano, C 3 -C 7 cycloalkyl, Ci-C 6 haloalkyl, heteroaryl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said aryl and C 3 -C 7 cycloalkyl are each optionally substituted with one or more substituents selected from: hydroxyl and trifluoromethyl.
  • R 17 is selected from: H, amino, 1-teri-butoxycarbonylamino, morpholin-4-yl, 4-methyl-piperidin-l-yl, piperidin-4-yl, l-teri-butoxycarbonyl-piperidin-3-yl, tetrahydro-thiopyran-4-yl, 1 -oxo-hexahydro- 1 ⁇ 4 -thiopyran-4-yl, tetrahydro-pyran-4-yl, pyrrolidin-l-yl, l-teri-butoxycarbonyl-azetidin-3-yl, 2,6-dimethyl-morpholin-4-yl, piperidin-1- yl, l-teri-butoxycarbonyl-piperidin-4-yl, l,l-dioxo-hexahydro- ⁇ 6 -thiopyran-4-yl, tetrahydro- furan-2-yl, 1
  • R 17 is selected from: H, amino, 1-teri-butoxycarbonylamino, morpholin-4-yl, 4-methyl-piperidin-l-yl, piperidin-4-yl, l-teri-butoxycarbonyl-piperidin-3-yl, tetrahydro-thiopyran-4-yl, 1 -oxo-hexahydro- 1 ⁇ 4 -thiopyran-4-yl, tetrahydro-pyran-4-yl, pyrrolidin-l-yl, l-teri-butoxycarbonyl-azetidin-3-yl, 2,6-dimethyl-morpholin-4-yl, piperidin-1- yl, l-teri-butoxycarbonyl-piperidin-4-yl, l,l-dioxo-hexahydro- ⁇ 6 -thiopyran-4-yl, tetrahydro- furan-2-yl, 1
  • R 17 is selected from: is selected from: amino, 2-hydroxy-indan- 1-yl, hydroxyl, carboxy, trifluoromethyl, methyl, tert-bvAyl, cyano, teri-butylamino, phosphonooxy, pyridin-2-yl, and fluoromethyl.
  • R 17 is ⁇ . In some embodiments, R 17 is amino. In some embodiments, R 17 is 1-teri-butoxycarbonylamino. In some embodiments, R 17 is morpholin-4-yl. In some embodiments, R is 4-methyl-piperidin-l-yl. In some embodiments, R is piperidin-4- yl. In some embodiments, R 17 is l-teri-butoxycarbonyl-piperidin-3-yl. In some embodiments, R 17 is tetrahydro-thiopyran-4-yl. In some embodiments, R 17 is l-oxo-hexahydro- ⁇ 4 -thiopyran- 4-yl.
  • R 17 is tetrahydro-pyran-4-yl. In some embodiments, R 17 is pyrrolidin-l-yl. In some embodiments, R 17 is l-teri-butoxycarbonyl-azetidin-3-yl. In some embodiments, R 17 is 2,6-dimethyl-morpholin-4-yl. In some embodiments, R 17 is piperidin-l-yl. In some embodiments, R 17 is l-teri-butoxycarbonyl-piperidin-4-yl. In some embodiments, R 17 is l,l-dioxo-hexahydro- ⁇ 6 -thiopyran-4-yl.
  • R 17 is tetrahydro-furan-2-yl. In some embodiments, R 17 is l-ethyl-pyrrolidin-2-yl. In some embodiments, R 17 is 1-methyl- pyrrolidin-2-yl. In some embodiments, R 17 is morpholin-2-yl. In some embodiments, R 17 is 1- methyl-piperidin-2-yl. In some embodiments, R 17 is 1 -methyl -piperidin-4-yl. In some embodiments, R 17 is 4-hydroxy-l-methyl-piperidin-4-yl. In some embodiments, R 17 is thiomorpholin-4-yl. In some embodiments, R 17 is tetrahydro-furan-3-yl.
  • R 17 is l-teri-butoxycarbonyl-pyrrolidin-4-yl. In some embodiments, R 17 is 1,2,2,6,6- pentamethyl-piperidin-4-yl. In some embodiments, R 17 is l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3- yl. In some embodiments, R 17 is 4-methyl-morpholin-2-yl. In some embodiments, R 17 is 4-tert- butoxycarbonyl -morpholin-2-yl. In some embodiments, R 17 is l-isopropyl-piperidin-4-yl.
  • R 17 is 4-hydroxy-l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 17 is 3-methyl-l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl. In some embodiments, R 17 is phenyl. In some embodiments, R 17 is 2-hydroxy-indan-l-yl. In some embodiments, R 17 is indan-l-yl. In some embodiments, R 17 is cyclopentyl. In some embodiments, R 17 is 2-hydroxy- cyclopentyl. In some embodiments, R 17 is cyclobutyl.
  • R 17 is 2-hydroxy- cyclohexyl. In some embodiments, R 17 is l,3,3-trimethyl-bicyclo[2.2.1]hept-2-yl. In some embodiments, R 17 is 6,6-dimethyl-bicyclo[3.1.1]hept-2-yl. In some embodiments, R 17 is 1-aza- bicyclo[2.2.2]oct-3-yl. In some embodiments, R 17 is 9-methyl-9-aza-bicyclo[3.3.1]non-l-yl. In some embodiments, R 17 is 3-azepan-l-yl. In some embodiments, R 17 is 2-iluoro-phenyl. In some embodiments, R 17 is 2-chloro-phenyl.
  • R 17 is 4-iluoro-phenyl. In some embodiments, R 17 is 4-chloro-phenyl. In some embodiments, R 17 is 3-iluoro-phenyl. In some embodiments, R 17 is 5-iluoro-2-methoxy-phenyl. In some embodiments, R 17 is 2-fluoro-4- methanesulfonyl-phenyl. In some embodiments, R 17 is 4-carboxy-2-iluoro-phenyl. In some embodiments, R 17 is 2,5-diiluoro-phenyl. In some embodiments, R 17 is ra-tolyl. In some embodiments, R 17 is o-tolyl.
  • R 17 is 2,5-dimethyl-phenyl. In some embodiments, R 17 is 2,3-dimethyl-phenyl. In some embodiments, R 17 is 4-hydroxy-3-methoxy- phenyl. In some embodiments, R 17 is 2,4-dimethoxy-phenyl. In some embodiments, R 17 is 2,3- dimethoxy-phenyl. In some embodiments, R 17 is 3,5-dimethoxy-phenyl. In some embodiments, R 17 is 4-methoxy-phenyl. In some embodiments, R 17 is 3-methoxy-phenyl. In some embodiments,
  • R 17 is 2-methoxy-phenyl. In some embodiments, R 17 is 3-hydroxy-phenyl. In some embodiments, R is 4-hydroxy-phenyl. In some embodiments, R is 2-hydroxy-phenyl. In some embodiments, R 17 is 5-fluoro-2-hydroxy-phenyl. In some embodiments, R 17 is 3- trifluoromethoxy-phenyl. In some embodiments, R 17 is 4-difluoromethoxy-phenyl. In some embodiments, R 17 is 3-difluoromethoxy-phenyl. In some embodiments, R 17 is 4-fluoro-phenoxy. In some embodiments, R 17 is 2-dimethylamino-phenyl.
  • R 17 is 4- dimethylamino-phenyl. In some embodiments, R 17 is 6-fluoro-4H-benzo[l ,3]dioxin-8-yl. In some embodiments, R 17 is benzo[l ,3]dioxol-5-yl. In some embodiments, R 17 is pyrimidin-2-yl. In some embodiments, R 17 is pyrimidin-4-yl. In some embodiments, R 17 is 2,6-dimethyl- pyrimidin-4-yl. In some embodiments, R 17 is pyridazin-3-yl. In some embodiments, R 17 is 5- methyl-pyrazin-2-yl.
  • R 17 is 6-methoxy-pyrimidin-4-yl. In some embodiments, R 17 is pyrazin-2-yl. In some embodiments, R 17 is 3,5-dimethyl-pyrazin-2-yl. In some embodiments, R 17 is 5-fluoro-2-oxo-2,3-dihydro-pyrimidin-4-yl. In some embodiments, R 17 is hydroxyl. In some embodiments, R 17 is methoxycarbonyl. In some embodiments, R 17 is ethoxycarbonyl. In some embodiments, R 17 is carboxy. In some embodiments, R 17 is 1- piperidin-l -yl. In some embodiments, R 17 is carboxamide. In some embodiments, R 17 is methoxy.
  • R 17 is trifluoromethyl. In some embodiments, R 17 is methyl. In some embodiments, R 17 is teri-butyl. In some embodiments, R 17 is diethylamino. In some embodiments, R 17 is dimethylamino. In some embodiments, R 17 is cyano. In some embodiments, R 17 is teri-butylamino. In some embodiments, R 17 is cyclopropyl. In some embodiments, R 17 is pyridin-3-yloxy. In some embodiments, R 17 is lH-tetrazol-5-yl. In some embodiments, R 17 is 5- methyl-[l ,2,4]oxadiazol-3-yl. In some embodiments, R 17 is phosphonooxy. In some embodiments, R 17 is methyl. In some embodiments, R 17 is teri-butyl. In some embodiments, R 17 is diethylamino. In some embodiments, R 17 is dimethylamino. In some embodiments, R 17
  • R 17 is cyclobutylamino. In some embodiments, R 17 is phenylamino. In some embodiments, R 17 is l-teri-butyl-3-methylureido. In some embodiments, R 17 is 3-methyl-l - phenylureido. In some embodiments, R 17 is N-teri-butylmethylsulfonamido. In some embodiments, R 17 is l-cyclobutyl-3-methylureido. In some embodiments, R 17 is
  • R 17 is 5-hydroxy-lH-indol-3-yl.
  • R 17 is lH-benzoimidazol-2-yl. In some embodiments, R 17 is 5,7-dimethyl- pyrazolo[l ,5-a]pyrimidin-2-yl. In some embodiments, R 17 is lH-benzoimidazol-2-yl. In some embodiments, R 17 is 2-(teri-butoxycarbonyl)- 3,4-dihydro-lH-isoquinoline-2-yl. In some embodiments, R 17 is quinolin-3-yl. In some embodiments, R 17 is quinolin-4-yl. In some embodiments, R 17 is 2-methyl-quinolin-4-yl. In some embodiments, R 17 is benzooxazol-2-yl.
  • R 17 is l-methyl-l ,2,3,4-tetrahydro-quinolin-7-yl. In some embodiments, R 17 is 2,3-dihydro-benzofuran-3-yl. In some embodiments, R 17 is benzothiazol-2-yl. In some embodiments, R 17 is l ,4-dimethyl-lH-pyrrol-2-yl. In some embodiments, R 17 is 3-methyl-3H- imidazol-4-yl. In some embodiments, R 17 is lH-imidazol-4-yl. In some embodiments, R 17 is 5- hydroxy-lH-pyrazol-3-yl.
  • R 17 is 1 -methyl- lH-pyrazol-3-yl. In some embodiments, R 17 is 4-pyridin-2-yl-thiazol-2-yl. In some embodiments, R 17 is 5-methyl-thiazol- 2-yl. In some embodiments, R is oxazol-4-yl. In some embodiments, R is 4-phenyl-thiazol-2- yl. In some embodiments, R 17 is 5-teri-butyl-isoxazol-3-yl. In some embodiments, R 17 is pyridin-2-yl. In some embodiments, R 17 is pyridin-3-yl. In some embodiments, R 17 is pyridin-4- yl.
  • R 17 is 3-hydroxy-pyridin-2-yl. In some embodiments, R 17 is 6- hydroxy-pyridin-3-yl. In some embodiments, R 17 is 3-hydroxy-pyridin-4-yl. In some embodiments, R 17 is 4-hydroxy-pyridin-2-yl. In some embodiments, R 17 is 6-hydroxy-pyridin-2- yl. In some embodiments, R 17 is 2-hydroxy-pyridin-3-yl. In some embodiments, R 17 is 2- methoxy-pyridin-3-yl. In some embodiments, R 17 is 5-methoxy-pyridin-2-yl. In some embodiments, R 17 is 4-methoxy-pyridin-2-yl.
  • R 17 is 2-methoxy-pyridin- 4-yl. In some embodiments, R 17 is 6-methoxy-pyridin-2-yl. In some embodiments, R 17 is 6- methoxy-pyridin-3-yl. In some embodiments, R 17 is 3-fluoro-pyridin-2-yl. In some embodiments,
  • R 17 is 2-fluoro-pyridin-3-yl. In some embodiments, R 17 is 6-fluoro-pyridin-2-yl. In some embodiments, R 17 is 5-fluoro-pyridin-2-yl. In some embodiments, R 17 is 6-fluoro- pyridin-3-yl. In some embodiments, R 17 is 3-fluoro-pyridin-4-yl. In some embodiments, R 17 is 3- methyl-pyridin-2-yl. In some embodiments, R 17 is 3-methyl-pyridin-4-yl. In some embodiments, R 17 is 6-methyl-pyridin-2-yl. In some embodiments, R 17 is 4-methyl-pyridin-2-yl.
  • R 17 is 6-methyl-pyridin-3-yl. In some embodiments, R 17 is 2-methyl-pyridin-3-yl. In some embodiments, R 17 is 5-triiluoromethyl-pyridin-2-yl. In some embodiments, R 17 is 6- trifluoromethyl-pyridin-3-yl. In some embodiments, R 17 is 4-triiluoromethyl-pyridin-2-yl. In some embodiments, R 17 is 3-chloro-5-triiluoromethyl-pyridin-2-yl. In some embodiments, R 17 is 4,6-dimethyl-pyridin-2-yl. In some embodiments, R 17 is 4,6-dimethyl-pyridin-2-yl.
  • R 17 is 3-chloro-5-methyl-pyridin-2-yl. In some embodiments, R 17 is 6-cyano- pyridin-3-yl. In some embodiments, R 17 is 3-cyano-5-methyl-pyridin-2-yl. In some embodiments,
  • R 17 is 3-cyano-5-methyl-pyridin-2-yl. In some embodiments, R 17 is 3-chloro-5- methyl-pyridin-2-yl. In some embodiments, R 17 is 2-chloro-pyridin-3-yl. In some embodiments, R 17 is 5-chloro-pyridin-2-yl. In some embodiments, R 17 is 6-chloro-2-methyl-pyridin-3-yl. In some embodiments, R 17 is 6-chloro-pyridin-3-yl. In some embodiments, R 17 is 3-chloro-pyridin-
  • R 17 is 6-bromo-2-methyl-pyridin-3-yl. In some embodiments, R 17 is
  • R 17 is 6-carboxypyridin-2-yl. In some embodiments, R 17 is 6-methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R 17 is 6- methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R 17 is 6-methanesulfonyl-2- methyl-pyridin-3-yl. In some embodiments, R 17 is 6-methanesulfonyl-pyridin-3-yl. In some embodiments, R 17 is 2,6-dimethoxy-pyridin-3-yl.
  • R 17 is 5-fluoro-l-oxy- pyridin-2-yl. In some embodiments, R 17 is l-oxy-pyridin-2-yl. In some embodiments, R 17 is 6- pyrrolidin-l-yl-pyridin-2-ylmethyl. In some embodiments, R 17 is 5-(l-methyl-pyrrolidin-2-yl)- pyridin-2-yl. In some embodiments, R 17 is 6-morpholin-4-yl-pyridin-2-yl. In some
  • R 17 is 6-morpholin-4-yl-pyridin-3-yl. In some embodiments, R 17 is ethynyl. In some embodiments, R is teri-butyl(methyl)amino. In some embodiments, R is 2,2,2- trifluoroethyl. In some embodiments, R 17 is N-cyclobutylmethylsulfonamido. In some embodiments, R 17 is N-phenylmethylsulfonamido. In some embodiments, R 17 is
  • R 17 is methoxy(methyl)amino. In some embodiments, R 17 is azetidin-l-yl. In some embodiments, R 17 is teri-butoxy. In some embodiments, R 17 is fluoromethyl. In some embodiments, R 17 is 2,2,2-trifluoroethylamino. In some embodiments, R 17 is (l,l-dioxo-tetrahydro- ⁇ 6 -thiophen-3-yl)amino.
  • R 15 is selected from: -C(0)NH-, -C(O)-, C1-C6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R 15 is absent; and
  • R 17 is selected from: H, Ci-C 6 alkoxy, Ci-C 6 alkyl, Ci-C 6 alkylamino, Ci-C 6 alkylcarboxamide, C 2 -C 6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo- Ci-C 6 -alkoxy, carboxamide, carboxy, cyano, C 3 -C 7 cycloalkyl, C 5 -Cn bicycloalkyl, C 3 -C 7 cycloalkylamino, C 2 -C 8 dialkylamino, C 2 -C 8 dialkylsulfonamide, Ci-C 6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C 6 alkylamino, aryl, arylamino, aryloxy, C 5 -C
  • cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C 6 alkoxy, Ci-C 6 alkoxycarbonyl, Ci-C 6 alkyl, Ci-C 6 alkylsulfonyl, amino, aryl, carboxy, cyano, C 3 -C 7 cycloalkyl, C 2 -C 8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl.
  • R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are each independently selected from: H and C C 6 alkyl.
  • R 1 and R 6 are each independently selected from: H, and C1-C6 alkyl; and R 2 , R 3 , R 4 , and R 5 are each H.
  • R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are each independently selected from: H, methyl, and isopropyl.
  • R 1 is selected from: H and methyl; R 2 , R 3 , R 4 , and R 5 are each H; and R 6 is selected from: H and is isopropyl.
  • R 1 is methyl; R 2 , R 3 , R 4 , and R 5 are each H; and R 6 is isopropyl. In some embodiments, R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are each H.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: carbo-Ci-C 6 -alkoxy, Ci-C 6 alkoxy, Ci-C 6 alkyl, aryl, carbo-Ci-C 6 -alkoxy, Ci-C 6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C 6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C 3 -C 7 cycloalkyl, Ci-C 6 alkoxy, halogen, and hydroxyl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-cyclohexylmethyl-piperazin-l-yl, hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl, 5,7- dihydro-pyrrolo[3,4-b]pyridin-6-yl, 4-methoxy-2,3-dihydro-indol- 1 -yl, 2-phenyl-pyrrolidin- 1 -yl, 2-pyridin-2-yl-thiomorpholin-4-yl, 2-hydroxymethyl-2,3-dihydro-indol- 1 -yl, 4-hydroxy- piperidin-1 -yl, hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl, 7-(methoxycarbonyl)-3,4-dihydro-lH- isoquinolin-2-yl, 7-methoxy-3,4-dihydro-lH- is
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-cyclohexylmethyl-piperazin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 5,7-dihydro-pyrrolo[3,4-b]pyridin-6-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-methoxy-2,3-dihydro-indol-l-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2- phenyl-pyrrolidin-l -yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2-pyridin-2-yl-thiomorpholin-4-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2-hydroxymethyl- 2,3-dihydro-indol-l -yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-hydroxy-piperidin-l-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form hexahydro-pyrrolo[l,2- a]pyrazin-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 7-(methoxycarbonyl)-3,4-dihydro-lH-isoquinolin-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 7- methoxy-3,4-dihydro-lH-isoquinolin-2-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form l ,4,6,7-tetrahydro-imidazo[4,5-c]pyridin-5- yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 5-fluoro-l,3-dihydro-isoindol-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-7,8-dihydro-5H- [l,6]naphthyridin-6-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-(teri-butoxycarbonyl)-2-(hydroxymethyl)piperazin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form l,3-dihydro-isoindol-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-trifluoromethyl-5,6-dihydro-8H-[l,2,4]triazolo[4,3- a]pyrazin-7-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-morpholin-4-yl-piperidin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3,4-dihydro-lH- isoquinolin-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-(3-methoxy-pyridin-2-yl)-piperazin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-piperidin-l- yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-(3-chloro-phenyl)-piperazin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 6-methoxy-3,4-dihydro-lH-isoquinolin- 2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form morpholin-4-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2-hydroxymethyl-pyrrolidin-l-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 1,3-dihydro- pyrrolo[3,4-c]pyridin-2-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-pyridin-4-yl-pyrrolidin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-(pyridin-2-yloxy)- piperidin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-pyridin-2-yl-pyrrolidin-l-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 7-methyl-3,4-dihydro-2H- [l,8]naphthyridin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-pyridin-3-yl-pyrrolidin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-pyrrolidin-l- yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 4-(4,6-dimethyl-pyrimidin-2-yl)-piperazin-l-yl.
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2-methyl-3,4-dihydro-2H- quinolin-l-yl. In some embodiments, R 8 and R 9 together with the nitrogen atom to which they are both bonded form 2-phenyl-morpholin-4-yl or pyrazin-2-yl.
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof is selected from compounds of Formula Ie and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
  • R 7 is -R 10 -R n -R 12 -R 13 ; wherein:
  • R 10 is selected from: Ci-C 6 alkylene, heteroarylene, and heterocyclylene; or R 10 is absent;
  • R 11 is selected from: -C(0)NH- and Ci-C 6 alkylene; or R 11 is absent;
  • R 12 is Ci-C 6 alkylene; or R 12 is absent;
  • R 13 is selected from: Ci-C 6 alkyl, aryl, C 3 -C 7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C 6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C 6 alkoxy, Ci-C 6 alkyl, Ci-C 6 alkylamino, Ci-C 6 alkylsulfonyl, amino, C 3 -C 7 cycloalkyl, cyano, C 2 -C 8 dialkylamino, Ci-C 6 haloalkyl, halogen, and hydroxyl;
  • R 8 is -R 14 -R 15 -R 16 -R 17 ; wherein:
  • R 14 is selected from: C1-C6 alkylene, C 3 -C 7 cycloalkenylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C 3 -C 7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R 14 is absent;
  • R 15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C 6 alkylene, C 3 -C 7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C 6 alkyl; or R 15 is absent;
  • R 16 is Ci-C 6 alkylene; or R 16 is absent;
  • R 17 is selected from: H, Ci-C 6 alkoxy, Ci-C 6 alkyl, Ci-C 6 alkylamino, Ci-C 6 alkylcarboxamide, C 2 -C 6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C 6 -alkoxy, carboxamide, carboxy, cyano, C 3 -C 7 cycloalkyl, C 5 -Cn bicycloalkyl, C 3 -C 7 cycloalkylamino, C 2 -C 8 dialkylamino, C 2 -C 8 dialkylsulfonamide, Ci-C 6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C 6 alkylamino, aryl, arylamino, aryloxy, C 5 -
  • R 9 is selected from H, Ci-C 6 alkyl, and C 3 -C 7 cycloalkyl; or
  • R 8 and R 9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: carbo-Ci-C6-alkoxy, C 1 -C6 alkoxy, C 1 -C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C 1 -C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C 1 -C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C 1 -C6 alkoxy, halogen, and hydroxyl.
  • the compound of Formula la is selected from the following compounds and pharmaceutically acceptable salts, solvates, hydrates and/or N-oxides thereof:
  • Compound 646 Phosphoric acid mono-(2- ⁇ [(laR,5aR)-2-(4-cyano-pyridin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ -2-methyl- propyl) ester;
  • Compound 667 ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid [2,2-dimethyl-l-((S)-methylcarbamoyl)-propyl]- amide;
  • Compound 700 ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -pyridin-2-yl-cyclobutyl)-amide;
  • Compound 703 Phosphoric acid mono-((5)-3,3-dimethyl-2- ⁇ [(laR,5aR)-2-(4-oxy- pyrazin-2-yl)-la,2,5,5a ⁇ etrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ - butyl) ester;
  • Compound 704 ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2,2-dimethyl-l -methylcarbamoyl-propyl)-amide;
  • Compound 820 (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa [a] pentalene-4-carboxylic acid (2-hydroxy- 1 -hydroxymethyl- 1 -methyl-ethyl) - amide;
  • Compound 821 ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-methyl-cyclobutyl)-amide;
  • Compound 904 ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid (2-fluoro- 1 , 1 -dimethyl -ethyl) -amide;
  • Compound 920 ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((15,25)-2-hydroxy-indan-l-yl)-amide;
  • Compound 921 ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((lS,2R)-2-hydroxy-indan-l-yl)-amide;
  • the compound of Formula la is selected from the following compounds and pharmaceutically acceptable salts, solvates, hydrates and/or N-oxides thereof:
  • the compound of Formula la is (laS,5aS)-2-(4-Oxy-pyrazin-2- yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l - hydroxymethyl-2,2-dimethyl-propyl)-amide or a pharmaceutically acceptable salt, solvate, and/or hydrate, thereof.
  • PXRD Figure 11 Peaks of about > 8.7% relative intensity at 8.5, 9.8, 10.7,
  • TGA Figure 12 Decrease in weight of about 0.24% out to about 150 °C
  • DMS Figure 13 The adsorption/desorption isotherm shows about 1.0% or
  • the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 2 ⁇ , at 8.5° ⁇ 0.2°, and 10.7° ⁇ 0.2°.
  • the anhydrous crystalline form has an X- ray powder diffraction pattern comprising peaks, in terms of 2 ⁇ , at 8.5° ⁇ 0.2°, 10.7° ⁇ 0.2°, and 16.9° ⁇ 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ⁇ 0.2°, 10.7° ⁇ 0.2°, 16.9° ⁇ 0.2°, 25.4° ⁇ 0.2°, and 11.1° ⁇ 0.2°.
  • the anhydrous crystalline form has an X- ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ⁇ 0.2°, 10.7° ⁇ 0.2°, 16.9° ⁇ 0.2°, 25.4° ⁇ 0.2°, 11.1° ⁇ 0.2°, 9.8° ⁇ 0.2°, and 17.4° ⁇ 0.2°.
  • the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ⁇ 0.2°, 10.7° ⁇ 0.2°, 16.9° ⁇ 0.2°, 25.4° ⁇ 0.2°, 11.1° ⁇ 0.2°, 9.8° ⁇ 0.2°, 17.4° ⁇ 0.2°, 22.1° ⁇ 0.2°, and 16.5° ⁇ 0.2°.
  • the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ⁇ 0.2°, 10.7° ⁇ 0.2°, 16.9° ⁇ 0.2°, 25.4° ⁇ 0.2°, 11.1° ⁇ 0.2°, 9.8° ⁇ 0.2°, 17.4° ⁇ 0.2°, 22. ⁇ ⁇ 0.2°, 16.5° ⁇ 0.2°, 14.5° ⁇ 0.2°, 11.8° ⁇ 0.2°, and 18.9° ⁇ 0.2°.
  • the anhydrous crystalline form has an X-ray powder diffraction pattern substantially as shown in Figure 11, wherein by "substantially” is meant that the reported peaks can vary by about ⁇ 0.2 °20
  • the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 159.6 °C and about 169.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 160.6 °C and about 168.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about
  • the anhydrous crystalline form has having a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 163.6 °C and about 165.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature at about 164.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram substantially as shown in Figure 12, wherein by “substantially” is meant that the reported DSC features can vary by about ⁇ 4 °C and that the reported DSC features can vary by about ⁇ 20 joules per gram.
  • the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.5% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.25% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile substantially as shown in Figure 12, wherein by “substantially” is meant that the reported TGA features can vary by about ⁇ 5 °C, and that that the reported TGA features can vary by about ⁇ 2% weight change. Also provided is an anhydrous crystalline form having:
  • thermogravimetric analysis profile showing about 0.5% weight loss below about 135 °C.
  • anhydrous crystalline form having:
  • thermogravimetric analysis profile showing about 0.25% weight loss below about 135 °C.
  • anhydrous crystalline form having:
  • thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
  • anhydrous crystalline form having:
  • thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
  • anhydrous crystalline form having:
  • thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
  • anhydrous crystalline form having: , 1) an X-ray powder diffraction pattern comprising peaks, in terms of 2 ⁇ , at 8.5° ⁇
  • thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
  • anhydrous crystalline form having:
  • the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof is (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethyl-propyl)-amide or a pharmaceutically acceptable salt, solvate, and/or hydrate thereof and the one or more known pharmaceutical agent is morphine.
  • the compounds of the Formula la may be prepared according to relevant published literature procedures that are used by one skilled in the art. Exemplary reagents and procedures for these reactions appear hereinafter in the working Examples. Protection and deprotection may be carried out by procedures generally known in the art (see, for example, Greene, T. W. and Wuts, P. G. M., Protecting Groups in Organic Synthesis, 3 rd Edition, 1999 [Wiley]).
  • the present invention embraces each diastereoisomer, each enantiomer and mixtures thereof of each compound and generic formulae disclosed herein just as if they were each individually disclosed with the specific stereochemical designation for each chiral carbon. Separation of the individual isomers (such as, by chiral HPLC, recrystallization of diastereoisomeric mixtures and the like) or selective synthesis (such as, by enantiomeric selective syntheses and the like) of the individual isomers is accomplished by application of various methods which are well known to practitioners in the art.
  • the combinations disclosed herein are useful in the treatment of osteoarthritis, and in the amelioration of symptoms thereof. In addition, the combinations disclosed herein are useful for the treatment of pain associated with these osteoarthritis.
  • CB 2 agonists Given the expression of CB 2 on a number of different types of immune cells and the attenuating effects that CB 2 agonists have been observed to have on the activities of these cells, CB 2 agonists are useful for the treatment and/or prophylaxis of other disorders wherein undesired immune cell activity and/or inflammation is observed.
  • Such exemplary disorders include osteoarthritis.
  • Severity of osteoarthritis can be assessed in various manners, using an index, scale or measure known in the art.
  • the attenuation of one or more symptoms or signs of osteoarthritis may be measured on the Western Ontario and McMaster Universities (WOMAC) Arthritis Index or one of its subscales (in other words, the pain, stiffness, or physical function subscales of the WOMAC Osteoarthritis Index).
  • WOMAC Western Ontario and McMaster Universities
  • WOMAC OA Index may be used, including, for example, Version 3.0 or Version 3.1. Any suitable scale may be used as well.
  • the WOMAC OA Index is available in Likert and Visual Analog scaled formats, either of which may be employed in the present methods.
  • WOMAC values can be considered as surrogate markers for the diagnosis, prognosis, monitoring or treatment osteoarthritis.
  • the WOMAC values represent a subjective surrogate marker.
  • the attenuation of one or more symptoms or signs may be measured on another suitable index, scale or measure, such the Australian/Canadian (AUSCAN) Osteoarthritis Hand Index or the Osteoarthritis Global Index (OGI).
  • AUSCAN 3.0 Index and User Guide are currently available from http://www.womac.org/contact/index.cfm, as are the WOMAC 3.1 Osteoarthritis Index and User Guide.
  • This measure which also may be designated as the ACR (American College of Rheumatology) 20 improvement, is a composite defined as both improvement of 20% in the number of tender and number of swollen joints, and a 20% improvement in three of the following five: patient global, physician global, patient pain, patient function assessment, and C-reactive protein (CRP).
  • ACR American College of Rheumatology
  • ACR 70 improvement is a composite defined as a composite defined as both improvement of 70% in the number of tender and number of swollen joints, and a 70% improvement in three of the following five: patient global, physician global, patient pain, patient function assessment, and C-reactive protein (CRP).
  • CRP C-reactive protein
  • Paulus et al. provides a definition of improvement based on a set of measures that discriminate between active second-line drug treatment and placebo. These include a 20% improvement in morning stiffness, erythrocyte sedimentation rate (ESR), joint tenderness score, and joint swelling score and improvement by at least 2 grades on a 5-grade scale (or from grade 2 to grade 1) for patient and physician global assessments of current disease severity.
  • ESR erythrocyte sedimentation rate
  • Current disease severity can be measured in a variety of ways, including patient or physician global assessments, patient or physician assessments of joint tenderness, joint swelling stiffness, pain, or physical function, cytokine levels, B-cell or T-cell subtype ratios, erythrocyte sedimentation rate (ESR), or C-reactive protein.
  • Suitable measures of attenuation of one or more symptoms or signs, of inhibiting the progression of osteoarthritis, or of reversing tissue or cellular damage include measuring current disease severity.
  • Other indexes, definitions, measures, or scales may also be used for measuring attenuation of one or more symptoms or signs, inhibition of progression, or reversal of tissue or cellular damage.
  • measures of physical function include (1) the pain felt by the subject when walking on a flat surface; (2) the pain felt by the subject when going up or down stairs; (3) the pain felt by the subject at night while in bed; (4) the pain felt by the subject that disturbs the sleep of the subject; (5) the pain felt by the subject while sitting or lying down; and/or (6) the pain felt by the subject while standing.
  • measures can be assessed: (1) the severity of the stiffness felt by the patient after the subject first woke up in the morning; (2) the severity of the stiffness felt by the subject after sitting or lying down later in the day; and/or (3) the severity of the stiffness felt by the subject while resting later in the day.
  • the following measures can be assessed: (1) the difficulty had by the subject when going down stairs; (2) the difficulty had by the human subject when going up stairs; (3) the difficulty had by the subject when getting up from a sitting position; (4) the difficulty had by the subject while standing; (5) the difficulty had by the subject when bending to the floor; (6) the difficulty had by the patient when walking on a flat surface; (7) the difficulty had by the human subject when getting in or out of a car or bus; (8) the difficulty had by the subject while going shopping; (9) the difficulty had by the patient when getting out of bed; (10) the difficulty had by the subject when putting on socks, or panty hose or stockings; (11) the difficulty had by the subject while lying in bed; (12) the difficulty had by the subject when getting in or out of the bathtub; (13) the difficulty had by the subject while sitting; (14) the difficulty had by the patient when getting on or off the toilet; (15) the difficulty had by the subject while doing heavy household chores; and/or (16) the difficulty had by the subject while doing light household chore
  • the severity of the pain can be assessed with self -reported measures as is known in the art.
  • pain is assessed at rest, with appropriate activity (e.g., ambulation, cough), at baseline (prior to administration of the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and at regular intervals thereafter.
  • appropriate activity e.g., ambulation, cough
  • baseline prior to administration of the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and at regular intervals thereafter.
  • Some of the most commonly used pain assessment instrucments include the visual analog scale (VAS), numeric rating scale (NRS), and categorical Likert scale.
  • the VAS is a written assessment that typically utilizes a unmarked 100-mm line with the left end marked as “no pain” and the right end marked as “worst pain imaginable.” Subjects put a mark on the line corresponding to their level of pain.
  • the NRS can be applied ineither written or verbal form and typically utilizes a rating from 0 (corresponding to "no pain") to 10 (corresponding to "worst pain imageinable”).
  • Likert scales are typically four- or five -item instruments (e.g., ratings of "none", “mild”, “moderate”, “severe”) that attempt to quantify pain.
  • the compounds described herein can be administrated in a wide variety of oral and parenteral dosage forms. It will be apparent to those skilled in the art that the following dosage forms may comprise, as the active component, either a compound described herein or a pharmaceutically acceptable salt or as a solvate or hydrate thereof. Moreover, various hydrates and solvates of the compounds described herein and their salts will find use as intermediates in the manufacture of pharmaceutical compositions. Typical procedures for making and identifying suitable hydrates and solvates, outside those mentioned herein, are well known to those in the art; see for example, pages 202-209 of K.J.
  • Polymorphism is the ability of a substance to exist as two or more crystalline phases that have different arrangements and/or conformations of the molecules in the crystal lattice.
  • Polymorphs show the same properties in the liquid or gaseous state but they behave differently in the solid state.
  • drugs can also exist as salts and other multicomponent crystalline phases.
  • solvates and hydrates may contain an API host and either solvent or water molecules, respectively, as guests.
  • the guest compound is a solid at room temperature, the resulting form is often called a cocrystal.
  • Salts, solvates, hydrates, and cocrystals may show polymorphism as well. Crystalline phases that share the same API host, but differ with respect to their guests, may be referred to as
  • Solvates contain molecules of the solvent of crystallization in a definite crystal lattice.
  • Solvates in which the solvent of crystallization is water, are termed hydrates. Because water is a constituent of the atmosphere, hydrates of drugs may be formed rather easily.
  • TLC Thin-layer chromatography
  • PK6F silica gel 60 A 1 mm plates (Whatman) and column chromatography was carried out on a silica gel column using Kieselgel 60, 0.063-0.200 mm (Merck). Evaporation was done under reduced pressure on a Biichi rotary evaporator.
  • LCMS spec HPLC-pumps: LC-10AD VP, Shimadzu Inc.; HPLC system controller: SCL-IOA VP, Shimadzu Inc; UV-Detector: SPD-10A VP, Shimadzu Inc; Autosampler: CTC HTS, PAL, Leap Scientific; Mass spectrometer: API 150EX with Turbo Ion Spray source, AB/MDS Sciex; Software: Analyst 1.2.
  • Example 1.1 Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 1).
  • Step A Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step B Preparation of (la/?,5a/?)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • the remaining aqueous solution was diluted to 150 mL with water and then acidified to pH 2 by addition of 6 M HC1 while stirring vigorously.
  • the precipitate was collected by filtration, rinsed with water, and then dried under reduced pressure to give the title compound as a tan solid (15.62 g).
  • Example 1.2 Preparation of (laR,5aR)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 2).
  • Step A Preparation of Potassium 2-Ethoxy-2-oxo-l-((lR,5/?)-2- oxobicyclo[3.1.0]hexan-3-ylidene)ethanolate.
  • Step B Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step C Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Example 1.3 Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 493).
  • Example 1.4 Preparation of (laR,5aR)-2-(5-Cyano-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 264).
  • Example 1.5 Preparation of (laR,5aR)-2-(5-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 309).
  • Step A Preparation of (laR,5aR)-2-(5-Fluoropyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step B Preparation of (la/?,5a/?)-2-(5-Fluoropyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step C Preparation of (laR,5aR)-2-(5-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide.
  • the cooling bath was replaced periodically, maintaining the temperature at -42 °C while stirring for 45 minutes. Still at -42 °C, 50 mL 0.5 M aqueous HQ was added. The volume was reduced to 20 mL by distillation under reduced pressure (50 °C water bath). The remaining solution was purified by preparative HPLC to give a white solid
  • Example 1.7 Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl-propyl)- amide (Compound 696).
  • Step A Preparation of (laS,5aS)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step B Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
  • Example 1.8 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide (Compound 699).
  • thermogravimetric analysis (TGA) thermogram for this solvate showed a loss of -5% weight occurring with a melting endotherm at 164°C.
  • thermogravimetric analysis (TGA) thermogram for the crystalline CH 2 C1 2 solvate obtained from recrystallization using CH 2 Cl 2 /hexane is shown in Figure 8; and the PXRD pattern for each of the crystalline CH 2 C1 2 solvates obtained from two the different methods (i.e., recrystallization using CH 2 Cl 2 /hexane; and non-solvated Compound 699 slurried in CH 2 C1 2 ) is shown as an overlay in Figure 9.
  • Example 1.9 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Pyridin-2-yl-cyclobutyl) -amide (Compound 700).
  • the title compound was prepared in a manner similar to that described in Method G, using (la5,5a5)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and l-(pyridin-2-yl)cyclobutanamine.
  • Example 1.10 Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Hydroxymethyl-cyclobutyl)-amide (Compound 698).
  • Example 1.12 Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l-tetrahydro-pyran-4-yl-ethyl)- amide (Mixture of C
  • Example 1.14 Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid [2,2-Dimethyl-l-((S)-methylcarbamoyl)-propyl]- amide (Compound 667).
  • Example 1.15 Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl-propyl)- amide (Compound 642).
  • Example 1.16 Preparation of Phosphoric Acid mono- ⁇ (S)-3,3-Dimethyl-2-[((la/?,5a/?)-2- pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl)- amino]-butyl ⁇ Ester (Compound 683 .
  • Example 1.17 Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 4).
  • Step A Preparation of (lS,5/?)-Bicyclo[3.1.0]hexan-2-one.
  • Step B Preparation of 2-Hydrazinylpyrazine.
  • Step C Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step D Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 4).
  • Example 1.20 Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid N-Oxide (Intermediate 6).
  • Example 1.22 Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)- amide (Compound 897).
  • Step A Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step B Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step C Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)- amide (Compound 897).
  • Example 1.23 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2,2,2- Trifluoro-l,l-dimethyl-ethyl)- amide (Compound 919).
  • Example 1.24 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((lS,2S)-2-Hydroxy-indan-l-yl)-amide (Compound 920).
  • Example 1.25 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((lS,2/?)-2-Hydroxy-indan-l-yl)-amide (Compound 921).
  • Example 1.27 Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (2,2,2-Trifluoro-l,l-dimethyl-ethyl)-amide (Compound 927).
  • Step A Preparation of l-(Trifluoromethyl)cyclobutanamine Hydrochloride.
  • Step B Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Trifluoromethyl-cyclobutyl)-amide (Compound 765).
  • the title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l-(trifluoromethyl)cyclobutanamine hydrochloride.
  • Example 1.30 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Trifluoromethyl-cyclopropyl)- amide (Compound 764).
  • Step A Preparation of l-(Trifluoromethyl)cyclopropanamine Hydrochloride.
  • Step B Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Trifluoromethyl-cyclopropyl)- amide (Compound 764).
  • the title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l-(trifluoromethyl)cyclopropanamine hydrochloride.
  • Example 1.32 Preparation of (laR,5aR)-Pentanedioic Acid mono-((S)-3-Methyl-2- ⁇ [(la/?,5a/?)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ -butyl) Ester (Compound 844) and its Sodium
  • Step A Preparation of 4-Bromo-2-hydrazinylpyridine.
  • Step B Preparation of (la/?,5a/?)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step C Preparation of (laR,5aR)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step D Preparation of (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step E Preparation of (la/?,5a/?)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l-hydroxymethyl-l- methyl-ethyl)-amide (Compound 820).
  • Example 1.35 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2-methyl- propyl)-amide (Compound 896).
  • Example 1.36 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide (Compound 767).
  • Method AAA Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide (Compound 767).
  • Step A Preparation of (/?)-N-((S)-2,2-Dimethyl-l-(pyridin-2-yl)propyl)-3,3,3- trifluoro-2-methoxy-2-phenylpropanamide and (l?)-N-((/?)-2,2-Dimethyl-l-(pyridin-2- yl)propyl)-3,3,3-trifluoro-2-methoxy-2-phenylpropanamide.
  • Step B Preparation of (S)-2,2-Dimethyl-l-(pyridin-2-yl)propan-l-amine and (R)-
  • the mixtures were diluted with water (25 mL), extracted with dichloromethane (3 x 25 mL), and the dichloromethane extracts discarded.
  • the aqueous solutions were basified with 2 M aqueous NaOH (25 mL) then extracted with dichloromethane (3 x 25 mL).
  • Example 1.37 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((/?)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide (Compound 766)
  • Step A Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
  • Step B Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
  • Step C Preparation of (S)-2-tert-Butoxycarbonylamino-3-methyl-butyric Acid (S)- 3,3-Dimethyl-2- ⁇ [(laS,5aS)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ -butyl Ester.
  • Step D Preparation of (laS,5aS)-(S)-2-Amino-3-methyl-butyric Acid (S)-3,3- Dimethyl-2- ⁇ [2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ -butyl Ester.
  • Example 1.40 Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((/?)-l,2-Dimethyl-propyl)-amide (Compound 828).
  • Example 1.41 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)-amide (Compound 904).
  • Example 1.42 Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2-Hydroxy-l-phenyl-ethyl)-amide (Compound 913).
  • Example 1.43 Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Fluoromethyl-2,2-dimethyl- propyl)-amide (Compound 918).
  • Example 1.45 Preparation of (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide (Compound 931).
  • Step A Preparation of 2-Hydrazinyl-4-iodopyridine.
  • Step B Preparation of (la/?,5a/?)-2-(4-Iodo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
  • Step C Preparation of (lafl,5afl)-2-(4-Iodo-pyridin-2-yl)- la,2,5,5a-tetrahydro- 1H-
  • Step D Preparation of (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step E Preparation of (la/?,5a/?)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide.
  • Example 1.46 Preparation of l-(2,4-Difluoro-phenyl)-3b,4,4a,5-tetrahydro-lH- cyclopropa[3,4]cyclopenta[l,2-c]pyrazole-3-carboxylic Acid (2-Hydroxy-l,l-dimethyl- ethyl)-amide (Compound 515).
  • the title compound was prepared in a manner similar to that described in Method G using 2-amino-2-methylpropane-l,3-diol and (laR,5aR)-2-(5-Chloropyridin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid.
  • the aforementioned acid was prepared in a similar method as described in Method A and B using (1R,5S)- bicyclo[3,l,0]hexan-2-one and 5-chloro-2-hydrazinylpyridine.
  • Example 1.48 Preparation of (laR,5aR)-2-(2,4-Dichloro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Hydroxymethyl-cyclopropyl)- amide (Compound 174).
  • Example 1.50 Preparation of (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide (Compound 644).
  • Example 1.51 Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2-methyl- propyl)-amide (Compound 690).
  • Example 1.52 Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-methylcarbamoyl- propyl)-amide (Compound 704).
  • (S)-2-Amino-N-methyl-2-phenylacetamide was prepared in a manner similar to that described in Method ⁇ and III using (5)-2-(teri-butoxycarbonylamino)-2-phenylacetic acid and methylamine.
  • the title compound was prepared in a manner similar to that described in Method G using (laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and (5)-2-amino-N-methyl-2-phenylacetamide.
  • Step A Preparation of Methyl 2-Aamino-3-fluoro-2-(fluoromethyl)propanoate.
  • the title compound was prepared as described in Synthesis 1994 vol. 7 pp. 701-702.
  • Step B Preparation of 2- ⁇ [(laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino ⁇ -3-fluoro-2- fluoromethyl-propionic Acid Methyl Ester.
  • Step C Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l-fluoromethyl-l- hydroxymethyl-ethyl)-amide.
  • Example 1.56 Preparation of (laS,5aS)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-3,3,3-Trifluoro-l-hydroxymethyl- propyl)-amide (Compound 891).
  • Step A Preparation of (laS,5aS)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
  • Step B Preparation of (laS,5aS)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.

Abstract

Provided are certain methods useful in the treatment of osteoarthritis comprising administering a compound of Formula (Ia) and pharmaceutical compositions thereof that modulate the activity of the cannabinoid CB2 receptor.

Description

CANNABINOID RECEPTOR MODULATORS
Cannabinoids are a group of extracellular signaling molecules that are found in both plants and animals. Signals from these molecules are mediated in animals by two G-protein coupled receptors, Cannnabinoid Receptor 1 (CB and Cannabinoid Receptor 2 (CB2). CBi is expressed most abundantly in the neurons of the CNS but is also present at lower concentrations in a variety of peripheral tissues and cells (Matsuda, L. A. et al. (1990) Nature 346:561-564). In contrast, CB2 is expressed predominantly, although not exclusively, in non-neural tissues, e.g. in hematopoietic cells, endothelial cells, osteoblasts, osteoclasts, the endocrine pancreas, and cancerous cell lines (Munro, S. et al. (1993) Nature 365:61-65; and as reviewed in Pacher, P. et al. (2006) Pharmacol. Rev. 58(3): 389-462). As such, CBi is believed to be primarily responsible for mediating the psychotropic effects of cannabinoids on the body, whereas CB2 is believed to be primarily responsible for most of their non-neural effects.
The texts of the references cited in this disclosure are herein incorporated by reference in their entireties. In the event that a definition of a term as incorporated by reference differs from the meaning defined herein, then the meaning provided herein is intended.
Provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents.
Also provided is a composition comprising a compound of Formula la or a
pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, one or more known pharmaceutical agents selected from osteoarthritis agents, and a pharmaceutically acceptable carrier.
Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents.
Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof, one or more known pharmaceutical agents selected from osteoarthritis agents, and a pharmaceutically acceptable carrier.
Also provided is a composition obtained by any of the methods described herein.
Also provided is a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
Also provided is a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, for use in combination with and one or more known pharmaceutical agents selected from osteoarthritis agents.
Also provided is a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
Also provided is a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents for use in combination with a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof.
Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises administering to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof.
Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises prescribing to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof.
Also provided is a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents; for treating osteoarthritis in an individual.
Also provided is the use of a compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and one or more known pharmaceutical agents selected from osteoarthritis agents in the manufacture of a medicament for treating osteoarthritis in an individual.
These and other aspects of the invention disclosed herein will be set forth in greater detail as the patent disclosure proceeds.
BRIEF DESCRIPTION OF THE DRAWINGS
Figure 1 shows the effect of Compound 493 in the monosodium iodoacetate (MIA) model of osteoarthritis in rats at 1 h post dosing. See Example 5.
Figure 2 shows a general synthesis of compounds described herein wherein X is CC(0)N(R8)R9 and Y is NR7. First, a 2-(but-3-enyl)oxirane derivative is cyclized by treatment with a base. The resulting bicyclic alcohol is oxidized to the ketone and reacted with a dialkyl oxalate derivative in the presence of a base. The pyrazole ring is then formed by reaction with a substituted hydrazine and the resulting ester is hydrolyzed and coupled with an amine to form compounds described herein.
Figure 3 shows a general synthesis of compounds described herein in which R7 is a 4- oxy-pyrazin-2-yl group.
Figure 4 shows a general synthesis of compounds described herein similar to the one shown in Figure 2 except the group R7 is introduced subsequent to the formation of a tri- substituted pyrazole.
Figure 5 shows a general synthesis of compounds described herein in which R7 is either a 5-substituted-pyridin-2-yl group or a 5-substituted-pyrazin-2-yl group.
Figure 6 shows a general synthesis of compounds described herein in which R7 is a 4- substituted-pyridin-2-yl group.
Figure 7 shows a general synthesis of compounds described herein wherein X is NR7 and Y is CC(0)N(R8)R9. First, a bicyclo[3.1.0]hexan-3-ol derivative is oxidized and the resulting ketone is reacted with a dialkyl oxalate derivative in the presence of a base. The pyrazole ring is then formed by reaction with a substituted hydrazine and the resulting ester is hydrolyzed and coupled with an amine to form compounds described herein.
Figure 8 shows a differential scanning calorimetry (DSC) thermogram for a sample containing a crystalline form of Compound 699 CH2C12 solvate and a thermogravimetric analysis (TGA) thermogram of a sample containing a crystalline form of Compound 699 CH2C12 solvate.
Figure 9 shows an overlay of a powder X-ray diffraction pattern (PXRD) for a sample containing a crystalline form of Compound 699 CH2C12 solvate obtained from recrystallization using CH2Cl2/hexane (Top Trace) and a powder X-ray diffraction pattern (PXRD) for a sample containing a crystalline form of Compound 699 CH2C12 solvate obtained by slurrying non- solvated Compound 699 in CH2C12 (Bottom Trace). The PXRD showed the crystalline solvate obtained from the CH2C12 slurry is substantially indistinguishable from the crystalline solvate resulting from recrystallized from CH2Cl2/hexane.
Figure 10 shows the effect of Compound 669 (1 mpk) and morphine (1 mpk) in relieving osteoarthritis pain. See Example 6.
Figure 11 shows a powder X-ray diffraction pattern (PXRD) for a sample containing an anhydrous crystalline form of Compound 699.
Figure 12 shows a differential scanning calorimetry (DSC) thermogram for a sample containing an anhydrous crystalline form of Compound 699 and a thermogravimetric analysis (TGA) thermogram of a sample containing an anhydrous crystalline form of Compound 699.
Figure 13 shows an adsorption and desorption isotherm, Dyanmic Moisture Sorption
(DMS), for a sample containing anhydrous crystalline form of Compound 699.
For clarity and consistency, the following definitions will be used throughout this patent document.
The term "analgesic agent" is intended to mean any biomolecule, drug or active agent that alleviates or prevents pain.
The term "co-analgesic agent" is intended to mean a drug that typically addresses indications other than pain relief, but possesses analgesic action for certain painful conditions.
The term "agonist" is intended to mean a moiety that interacts with and activates a G- protein-coupled receptor, for instance a cannabinoid receptor, and can thereby initiate a physiological or pharmacological response characteristic of that receptor. For example, an agonist may activate an intracellular response upon binding to a receptor, or enhance GTP binding to a membrane.
The term "antagonist" is intended to mean a moiety that competitively binds to the receptor at the same site as an agonist (for example, the endogenous ligand), but which does not activate the intracellular response initiated by the active form of the receptor and can thereby inhibit the intracellular responses by an agonist or partial agonist. An antagonist does not diminish the baseline intracellular response in the absence of an agonist or partial agonist.
The term "hydrate" as used herein means a compound described herein or a salt thereof, that further includes a stoichiometric or non-stoichiometric amount of water bound by non- covalent intermolecular forces.
The term "solvate" as used herein means a compound described herein or a salt, thereof, that further includes a stoichiometric or non-stoichiometric amount of a solvent bound by non- covalent intermolecular forces. In some embodiments, the solvents are volatile, non-toxic, and/or acceptable for administration to humans in trace amounts.
The term "in need of treatment" and the term "in need thereof when referring to treatment are used interchangeably to mean a judgment made by a caregiver (e.g. physician, nurse, nurse practitioner, etc. in the case of humans; veterinarian in the case of animals, including non-human mammals) that an individual or animal requires or will benefit from treatment. This judgment is made based on a variety of factors that are in the realm of a caregiver's expertise, but that includes the knowledge that the individual or animal is ill, or will become ill, as the result of a disease, condition or disorder that is treatable by the compounds described herein. Accordingly, the compounds described herein can be used in a protective or preventive manner; or compounds described herein can be used to alleviate, inhibit or ameliorate the disease, condition or disorder.
The term "individual" is intended to mean any animal, including mammals, such as mice, rats, other rodents, rabbits, dogs, cats, swine, cattle, sheep, horses, or primates, and in some embodiments, humans.
The term "inverse agonist" is intended to mean a moiety that binds to the endogenous form of the receptor or to the constitutively activated form of the receptor and which inhibits the baseline intracellular response initiated by the active form of the receptor below the normal base level of activity which is observed in the absence of an agonist or partial agonist, or decreases GTP binding to a membrane. In some embodiments, the baseline intracellular response is inhibited in the presence of the inverse agonist by at least 30%, such as by at least 50% and for example, by at least 75%, as compared with the baseline response in the absence of the inverse agonist.
The term "modulate or modulating" is intended to mean an increase or decrease in the amount, quality, response or effect of a particular activity, function or molecule.
The term "pharmaceutical composition" is intended to mean a composition comprising at least one active ingredient; including but not limited to, salts, solvates, and hydrates of compounds described herein, whereby the composition is amenable to investigation for a specified, efficacious outcome in a mammal (for example, without limitation, a human). Those of ordinary skill in the art will understand and appreciate the techniques appropriate for determining whether an active ingredient has a desired efficacious outcome based upon the needs of the artisan.
The term "therapeutically effective amount" is intended to mean the amount of active compound or pharmaceutical agent that elicits the biological or medicinal response in a tissue, system, animal, individual or human that is being sought by a researcher, veterinarian, medical doctor or other clinician or caregiver or by an individual, which includes one or more of the following:
(1) Preventing the disease, for example, preventing a disease, condition or disorder in an individual that may be predisposed to the disease, condition or disorder but does not yet experience or display the pathology or symptomatology of the disease;
(2) Inhibiting the disease, for example, inhibiting a disease, condition or disorder in an individual that is experiencing or displaying the pathology or symptomatology of the disease, condition or disorder (i.e., arresting further development of the pathology and/or
symptomatology); and
(3) Ameliorating the disease, for example, ameliorating a disease, condition or disorder in an individual that is experiencing or displaying the pathology or symptomatology of the disease, condition or disorder (i.e., reversing the pathology and/or symptomatology).
The term "Ci-C4 acyl" is intended to mean a radical comprising a Ci-C4 alkyl group attached to the carbon of a carbonyl group, wherein Ci-C4 alkyl has the same definition as found herein. Examples include, but are not limited to acetyl, propionyl, butyryl, isobutyryl, pivaloyl, and the like.
The term "amino" is intended to mean the group -NH2.
The term "aryl" is intended to mean a ring system containing 6 to 10 carbon atoms, that may contain a single ring or two fused rings, and wherein at least one ring is aromatic. Examples include phenyl, indanyl, and naphthyl.
The term "arylamino" is intended to mean a radical comprising an aryl group, attached to a nitrogen, wherein aryl has the same definition as found herein. Examples include, but are not limited to, phenylamino and naphthylamino.
The term "arylcarbonyl" is intended to mean a radical comprising an aryl group, attached to the carbon atom of a carbonyl group, wherein aryl has the same definition as found herein. Examples include, but are not limited to, benzoyl and naphthylcarbonyl.
The term "aryloxy" is intended to mean a radical comprising an aryl group, attached to an oxygen, wherein aryl has the same definition as found herein. Examples include, but are not limited to, phenoxy and naphthyloxy.
The term "Ci-C6 alkoxy" is intended to mean a radical comprising a Ci-C6 alkyl group attached directly to an oxygen atom, wherein C1-C6 alkyl has the same definition as found herein. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons.
Examples include, but are not limited to methoxy, ethoxy, «-propoxy, isopropoxy, «-butoxy, t- butoxy, isobutoxy, s-butoxy, and the like.
The term "C1-C6 alkoxycarbonyl" is intended to mean a radical comprising a single d- (, alkoxy group attached to the carbon of a carbonyl group, wherein C1-C6 alkoxy has the same definition as found herein. The alkoxycarbonyl group may be represented by the following:
Figure imgf000008_0001
The term "Ci-C6 alkyl" is intended to mean a straight or branched carbon radical containing 1 to 6 carbons. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 isopropyl, n-butyl, s-butyl, isobutyl, i-butyl, pentyl, isopentyl, i-pentyl, neopentyl, 1-methylbutyl [i.e. , -CH(CH3)CH2CH2CH3], 2-methylbutyl [i.e. , -CH2CH(CH3)CH2CH3] , ra-hexyl, and the like.
The term "C1-C4 alkyl " is intended to mean a straight or branched carbon radical containing 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons. Examples of an alkyl group include, but are not limited to, methyl, ethyl, w-propyl, isopropyl, n-butyl, s-butyl, isobutyl, i-butyl, and the like.
The term "C1-C6 alkylamino" is intended to mean a radical comprising one C1-C6 alkyl group attached to an NH group, wherein C1-C6 alkyl has the same meaning as described herein. Some examples include, but are not limited to, methylamino, ethylamino, «-propylamino, isopropylamino, «-butylamino, s-butylamino, isobutylamino, i-butylamino, and the like. Some embodiments are "Ci-C2 alkylamino."
The term "C1-C6 alkylcarboxamide" is intended to mean a single C1-C6 alkyl group attached to either the carbon or the nitrogen of an amide group, wherein C1-C6 alkyl has the same definition as found herein. The C1-C6 alkylcarboxamido group may be represented by the following: alkyl
Figure imgf000009_0001
Examples include, but are not limited to, N-methylcarboxamide, N-ethylcarboxamide, N-n- propylcarboxamide, N-isopropylcarboxamide, N-«-butylcarboxamide, N-s-butylcarboxamide, N- isobutylcarboxamide, N-i-butylcarboxamide, and the like.
The term "C1-C6 alkylene" is intended to mean a straight or branched, saturated aliphatic, divalent radical having 1 to 6 carbon atoms. Some embodiments contain 1 to 5 carbons. Some embodiments contain 1 to 4 carbons. Some embodiments contain 1 to 3 carbons. Some embodiments contain 1 or 2 carbons. Examples include, but are not limited to, methylene, ethylene, ^-propylene, isopropylene, «-butylene, s-butylene, isobutylene, i-butylene, pentylene, isopentylene, i-pentylene, neopentylene, 1-methylbutylene [i.e., -CH(CH3)CH2CH2CH3] , 2- methylbutylene [i.e. , -CH2CH(CH3)CH2CH3] , «-hexylene, and the like.
The term "Ci-C6 alkylsulfonyl" is intended to mean a radical comprising a Ci-C6 alkyl group attached to the sulfur of a sulfonyl group, wherein the Ci-C6 alkyl radical has the same definition as described herein. Examples include, but are not limited to, methylsulfonyl, ethylsulfonyl, «-propylsulfonyl, isopropylsulfonyl, «-butylsulfonyl, s-butylsulfonyl, isobutylsulfonyl, i-butylsulfonyl, and the like.
The term "C5-Cn bicycloalkyl" is intended to mean a radical comprising two fused or bridged, saturated rings containing 5 to 11 ring carbon atoms. Examples of a bicycloalkyl group include, but are not limited to, bicyclo[3.1.1]heptyl, bicyclo[2.2.1]heptyl, and the like. The term "C3-C7 cycloalkenylene" is intended to mean is intended to mean a mono unsaturated ring di-radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropenediyl, cyclobutenediyl, cyclopentenediyl, cyclohexenediyl, cycloheptenediyl, and the like.
The term "C3-C7 cycloalkyl" is intended to mean a saturated ring radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, and the like.
The term "C3-C7 cycloalkylamino" is intended to mean a radical comprising a C3-C7 cycloalkyl attached the nitrogen of an amino group, wherein C3-C7 cycloalkyl has the same definition as found herein. Examples include, but are not limited to, cyclopropylamino, cyclobutylamino, cyclopentylamino, cyclohexylamino, and the like.
The term "C3-C7 cycloalkylene" is intended to mean a saturated ring di-radical containing 3 to 7 carbons. Some embodiments contain 3 to 6 carbons. Some embodiments contain 3 to 5 carbons. Some embodiments contain 5 to 7 carbons. Some embodiments contain 3 to 4 carbons. Examples include cyclopropanediyl, cyclobutanediyl, cyclopentanediyl, cyclohexanediyl, cycloheptanediyl, and the like. In some embodiments C3-C7 cycloalkylene is selected from: 1,1 -cyclopropanediyl, 1,1 -cyclobutanediyl, 1,1 -cyclopentanediyl, 1,1- cyclohexanediyl, 1,1 -cycloheptanediyl, and the like. In some embodiments C3-C7 cycloalkylene is selected from: 1 ,2-cyclopropanediyl, 1 ,2-cyclobutanediyl, 1 ,2-cyclopentanediyl, 1 ,2- cyclohexanediyl, 1 ,2-cycloheptanediyl, and the like.
The term "carbo-Ci-C6-alkoxy" is intended to mean a Ci-C6 alkyl ester of a carboxylic acid, wherein C1-C6 alkyl has the same definition as found herein. Examples include, but are not limited to, carbomethoxy [-C(0)OCH3], carboethoxy, carbo-«-propoxy, carboisopropoxy, carbo-«-butoxy, carbo-s-butoxy, carbo-isobutoxy, carbo-i-butoxy, carbo-«-pentoxy, carbo- isopentoxy, carbo-i-pentoxy, carbo-neopentoxy, carbo-«-hexyloxy, and the like.
The term "carboxamide" is intended to mean the group -CONH2.
The term "carboxy" is intended to mean the group -C02H; also referred to as a carboxylic acid group.
The term "cyano" is intended to mean the group -CN.
The term "C2-C8 dialkylamino" is intended to mean a radical comprising an amino group substituted with two of the same or different C1-C4 alkyl groups, wherein Ci-C alkyl has the same definition as found herein. Some examples include, but are not limited to,
dimethylamino, methylethylamino, diethylamino, methylpropylamino, methylisopropylamino, ethylpropylamino, ethylisopropylamino, dipropylamino, propylisopropylamino, and the like. Some embodiments are C2-C4 dialkylamino. The term "C2-C8 dialkylsulfonamide" is intended to mean is intended to mean one of the following groups shown below:
Figure imgf000011_0001
wherein C1-C4 alkyl has the same definition as found herein.
The term "Ci-C6 haloalkoxy" is intended to mean a radical comprising a Ci-C6 haloalkyl group directly attached to an oxygen atom, wherein Ci-C6 haloalkyl has the same definition as found herein. Examples include, but are not limited to, difluoromethoxy, trifluoromethoxy, 2,2,2-trifluoroethoxy, pentafluoroethoxy, and the like.
The term "Ci-C6 haloalkyl" is intended to mean a radical comprising a Ci-C6 alkyl group substituted with one or more halogens, wherein Ci-C6 alkyl has the same definition as found herein. The Ci-C6 haloalkyl may be fully substituted in which case it can be represented by the formula CnL2n+i> wherein L is a halogen and "n" is 1, 2, 3, 4, 5 or 6. When more than one halogen is present then they may be the same or different and selected from: fluorine, chlorine, bromine, and iodine. In some embodiments, haloalkyl contains 1 to 5 carbons. In some embodiments, haloalkyl contains 1 to 4 carbons. In some embodiments, haloalkyl contains 1 to 3 carbons. In some embodiments, haloalkyl contains 1 or 2 carbons. Examples of haloalkyl groups include, but are not limited to, fluoromethyl, difluoromethyl, trifluoromethyl,
chlorodifluoromethyl, 2,2,2-trifluoroethyl, pentafluoroethyl, and the like.
The term "halogen" is intended to mean to a fluoro, chloro, bromo or iodo group.
The term "heteroaryl" is intended to mean a ring system containing 5 to 14 ring atoms, that may contain a single ring, two fused rings or three fused rings, and wherein at least one ring is aromatic and at least one ring atom is a heteroatom selected from, for example: O, S and N, wherein N is optionally substituted with H, Q-C4 acyl, Q-C4 alkyl, or oxide (i.e., together with an aromatic ring nitrogen form an N-oxide). Some embodiments contain 5 to 6 ring atoms for example, furanyl, thienyl, pyrrolyl, imidazolyl, oxazolyl, thiazolyl, isoxazolyl, pyrazolyl, isothiazolyl, oxadiazolyl, triazolyl, tetrazolyl, thiadiazolyl, pyridinyl, pyrazinyl, pyrimidinyl, pyridazinyl, triazinyl, and the like. Some embodiments contain 8 to 14 ring atoms for example, quinolizinyl, quinolinyl, isoquinolinyl, cinnolinyl, phthalazinyl, quinazolinyl, quinoxalinyl, triazinyl, indolyl, isoindolyl, indazolyl, indolizinyl, purinyl, naphthyridinyl, pteridinyl, carbazolyl, acridinyl. phenazinyl, phenothiazinyl, phenoxazinyl, benzoxazolyl, benzothiazolyl, lH-benzimidazolyl, imidazopyridinyl, benzothienyl, benzofuranyl, isobenzofuran, 2,3- dihydrobenzofuranyl, 4H-benzo[l ,3]dioxinyl, 3,4-dihydro-lH-isoquinolinyl, 1 ,4,6,7-tetrahydro- imidazo[4,5-c]pyridinyl, 7,8-dihydro-5H-[l ,6]naphthyridinyl, 5,6-dihydro-8H- [l ,2,4]triazolo[4,3-a]pyrazinyl, benzo[l ,3]dioxolyl, pyrazolo[l ,5-a]pyrimidinyl, 1 ,2,3,4- tetrahydroquinolinyl, and the like. The term "heteroarylene" is intended to mean is intended to mean an aromatic ring di- radical containing 5 to 14 ring atoms that may be a single ring, two fused rings or three fused rings, wherein at least one aromatic ring atom is a heteroatom selected from, for example: O, S, and N, wherein N is optionally substituted with H, C1-C4 acyl, Ci-C alkyl, or oxide (i.e., together with an aromatic ring nitrogen form an N-oxide). Some embodiments contain 5 to 6 ring atoms for example, furandiyl, thiophenediyl, pyrrolediyl, imidazolediyl, oxazolediyl, thiazolediyl, isoxazolediyl, pyrazolediyl, isothiazolediyl, oxadiazolediyl, triazolediyl, thiadiazolediyl, pyridinediyl, pyrazinediyl, pyrimidinediyl, pyridazinediyl, triazinediyl, and the like. Some embodiments contain 8 to 14 ring atoms for example, quinolizinediyl, quinolinediyl, isoquinolinediyl, cinnolinediyl, phthalazinediyl, quinazolinediyl, quinoxalinediyl, triazinediyl, indolediyl, isoindolediyl, indazolediyl, indolizinediyl, purinediyl, naphthyridinediyl, pteridinediyl, carbazolediyl, acridinediyl. phenazinediyl, phenothiazinediyl, phenoxazinediyl, benzoxazolediyl, benzothiazolediyl, lH-benzimidazolediyl, imidazopyridinediyl,
benzothienediyl, benzofurandiyl, isobenzofurandiyl, and the like.
The term "heteroaryloxy" is intended to mean a radical comprising a heteroaryl group, attached to an oxygen, wherein heteroaryl has the same definition as found herein.
The term "heterobicyclyl" is intended to mean a radical comprising two fused or bridged, non- aromatic rings containing 5 to 11 ring atoms wherein one, two, three or four ring atoms are heteroatoms selected from, for example: O, S, and Ν, wherein Ν is substituted with Η, Ci-C acyl or Ci-C alkyl, and S is optionally substituted with one or two oxygens. Examples of a heterobicyclyl group include, but are not limited to, octahydropyrrolo[l,2-a]pyrazinyl, 1-aza- bicyclo[2.2.2]octyl, 9-aza-bicyclo[3.3.1]nonyl, and the like.
The term "heterocyclyl" is intended to mean a non-aromatic ring radical containing 3 to 8 ring atoms, wherein one, two or three ring atoms are heteroatoms selected from, for example: O, S, and Ν, wherein Ν is substituted with Η, Ci-C4 acyl or Ci-C4 alkyl, and S is optionally substituted with one or two oxygens. Examples of a heterocyclyl group include, but are not limited to, aziridinyl, azetidinyl, piperidinyl, morpholinyl, piperazinyl, pyrrolidinyl, [1,3]- dioxolanyl, thiomorpholinyl, [l,4]oxazepanyl, 1,1-dioxothiomorpholinyl, azepanyl, tetrahydrofuranyl, tetrahydropyranyl, tetrahydrothiopyranyl, l-oxo-hexahydro-^4-thiopyranyl, l,l-dioxo-hexahydro-^6-thiopyranyl, and the like.
The term "heterocyclylene" is intended to mean a non-aromatic ring di-radical containing 3 to 8 ring atoms, wherein one, two or three ring atoms are heteroatoms selected from, for example: O, S, and Ν, wherein Ν is substituted with Η, Ci-C acyl or Ci-C alkyl, and S is optionally substituted with one or two oxygens. Examples of a heterocyclylene group include, but are not limited to, aziridinediyl, azetidinediyl, piperidinediyl, morpholinediyl, piperazinediyl, pyrrolidinediyl, [l,3]-dioxolanediyl, thiomorpholinediyl, [l,4]oxazepanediyl, 1,1-dioxothiomorpholinediyl, azepanediyl, tetrahydrofurandiyl, and the like. The term "hydroxyl" is intended to mean the group -OH.
The term "phosphonooxy" is intended to mean the group -OP(0)(OH)2.
The term "ureyl" is intended to mean the group -NH2C(0)NH2.
Administration of the compounds and pharmaceutically acceptable salts, solvates, hydrates, and/or N-oxides thereof described herein as the sole active pharmaceutical agent (i.e. , mono-therapy) is described in PCT/US2010/002360, filed 8/27/2010, which is incorporated herein by reference in its entirety.
Provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in combination with and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in combination with and one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is the use of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known
pharmaceutical agents selected from analgesic agents and osteoarthritis agents in the manufacture of a medicament for treating osteoarthritis in an individual. Also provided is the use of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis in the manufacture of a medicament for treating osteoarthritis in an individual.
Provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier. Also provided is a composition comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents, and a pharmaceutically acceptable carrier.
Provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents, and a pharmaceutically acceptable carrier.
Also provided is a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N- oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents. Also provided is a composition obtained by a method for preparing a composition comprising the step of admixing a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are admixed with a pharmaceutically acceptable carrier.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof and the one or more known pharmaceutical agents are each admixed with a different pharmaceutically acceptable carrier.
The pharmaceutical carrier generally is compatible with the other ingredients in the composition and should be tolerated by the individual recipient. Other physiologically active ingredients can be incorporated into the pharmaceutical composition if desired, and if such ingredients are compatible with the other ingredients in the composition. Conventional excipients, such as binding agents, fillers, acceptable wetting agents, tabletting lubricants, and disintegrants can be used in tablets and capsules for oral administration.
Compositions for oral administration can be in the form of solutions, emulsions, aqueous or oily suspensions, and syrups. Alternatively, the compositions for oral administration can be in the form of dry powder that can be reconstituted with water or another suitable liquid vehicle before use. Additional additives such as suspending or emulsifying agents, non-aqueous vehicles (including edible oils), preservatives, and flavorings and colorants can be added.
Compositions for parenteral administration can be prepared by dissolving the compounds in a suitable liquid vehicle and filter sterilizing the solution before filling and sealing an appropriate vial or ampoule. These are just a few examples of the many appropriate methods well known in the art for preparing compositions for oral or parenteral administration.
Provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein for use in a method for the treatment of treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. Also provided is a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in combination with a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein. Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents, for use in combination with a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein. Provided is one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises administering to said individual one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein. Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises administering to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein.
Provided is one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises prescribing to said individual one or more known pharmaceutical agents selected from analgesic agents, antidiabetic agents, osteoarthritis agents, and anticancer agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein. Also provided is one or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises prescribing to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein.
Provided is a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents; for treating osteoarthritis in an individual. Also provided is a pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from osteoarthritis agents; for treating osteoarthritis in an individual.
In some embodiments, the pharmaceutical product comprises a pharmaceutical composition.
In some embodiments, the pharmaceutical product comprises a formulation.
In some embodiments, the pharmaceutical product comprises a dosage form.
In some embodiments, the pharmaceutical product comprises a combined preparation. In some embodiments, the pharmaceutical product comprises a twin pack. In some embodiments, the pharmaceutical product comprises a kit.
In some embodiments, the kit comprises a first package comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein or a pharmaceutical composition thereof, and a second package comprising one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents or a pharmaceutical composition thereof. In some embodiments, the kit comprises a first package comprising a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein or a pharmaceutical composition thereof, and a second package comprising one or more known pharmaceutical agents selected from osteoarthritis agents.
Provided is a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
Provided is a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual, a therapeutically effective amount of a compound of Formula la or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
In some embodiments, the individual is a human.
In some embodiments, the one or more known pharmaceutical agents are administered to the individual simultaneously, separately, or sequentially.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are administered simultaneously.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein and the one or more known pharmaceutical agents are administered separately.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents are administered sequentially.
In some embodiments, the amount of the compound of Formula la, or a
pharmaceutically acceptable salt, solvate, hydrate, and/orN-oxide thereof described herein alone and the amount of the one or more known pharmaceutical agents alone are therapeutically ineffective. In some embodiments, the combination of a compound of Formula la, or a
pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof described herein and the one or more known pharmaceutical agents results in a supra additive or synergistic effect. A synergistic effect means that the effect, as demonstrated, e.g., by one of the measures described herein, observed with the combination therapy is greater than that seen by adding the effect of each compound together. One advantage of using a synergistic combination therapy is that less of each compound is required to achieve a significant effect and so fewer side effects can result from treatment. In some cases, side effects are not seen at the lower doses used. Also, in some cases, the side effect profile of one drug can mitigate or average out the side effect profile of the other drug. For example, one of the drugs may result in increased blood pressure and the other drug results in lowered blood pressure so that the combination therapy does not effect blood pressure. Another potential advantage of combination therapy is that, since less compound is required, the cost of therapy can be reduced.
In some embodiments, the osteoarthritis is associated with a joint, hip, knee, back, neck, and/or lower back of the individual.
In some embodiments, the treatment slows the progression of osteoarthritis.
In some embodiments, the treatment reverses the progression of osteoarthritis.
In some embodiments, the treatment alleviates one or more of the signs and symptoms of osteoarthritis.
In some embodiments, the sign or symptom is chosen from joint stiffness, pain, swelling, and difficulty in physical function.
In some embodiments, the sign or symptom is pain.
In some embodiments, the pain is measured as pain intensity.
In some embodiments, the sign or symptom is joint stiffness.
In some embodiments, the sign or symptom is difficulty in physical function.
In some embodiments, the method further comprises assessing disease severity.
In some embodiments, the treatment results in attenuation of a total score of the individual on at least one index selected from Western Ontario and McMaster Universities (WOMAC) Arthritis Index, Australian/Canadian (AUSCAN) Osteoarthritis Hand Index, and the Osteoarthritis Global (OGI) Index.
In some embodiments, a reduction of signs and symptoms is shown by American College of Rheumatology Criteria ACR20 response or American College of Rheumatology Criteria ACR70 response.
In some embodiments, disease severity is measured by patient or physician global assessments, patient or physician assessments of joint tenderness, joint swelling stiffness, pain, or physical function, cytokine levels, B-cell or T-cell subtype ratios, erythrocyte sedimentation rate (ESR), or C-reactive protein level. Suitable pharmaceutical agents that can be used in combination with the compounds described herein include analgesic agents and osteoarthritis agents.
In some embodiments, the analgesic agent is chosen from non-opioid drugs, opioid drugs, and co-analgesic medications.
In some embodiments, the non opioid drug is chosen from non steroidal antiinflammatory agents, choline magnesium trisalicylate, sulfasalazine, olsalazin, phenacetin, tenoxicam, phenylbutazone, oxyphenthartazone, tapentadol, celecoxib, etoricoxib, lumiracoxib, rofecoxib, parecoxib, and ziconotide.
In some embodiments, the non steroidal anti-inflammatory agent is chosen from acemetacin, acetaminophen, aminoprofen, aspirin, benoxaprofen, bucloxic acid, carprofen, choline magnesium salicylate, choline salicylate, clidanac, diclofenac, diflunisal, diflurisal, etodolac, fenoprofen, fenoprofen calcium, fentiazac, flosulide, flubufen, flufenamic acid, flufenisal, flurbiprofen, fluprofen, ibuprofen, indoprofen, indomethacin, isoxicam, ketoprofen, ketorolac tromethamine, lornoxicam, magnesium salicylate, meclofenamic acid, meclofenamate sodium, mefenamic acid, meloxicam, muroprofen, nabumetone, naproxen, nepafenac, niflumic acid, nimesulide, oxaprozin, oxpinac, piroprofen, piroxicam, pramoprofen, remifenzone, salsalate, salicylsalicylic acid, sodium salicylate, sudoxicam, sulindac, suprofen, tiaprofenic acid, tiopinac, tolfenamic acid, tolmetin, trioxaprofen, zidometacin, and zomepirac.
In some embodiments, the opioid drug is chosen from alfentanil, allylprodine, alphaprodine, anileridine, apomorphine, benzylmorphine, bezitramide, buprenorphine, butorphanol, clonitazene, codeine, desomorphine, dextromor amide, dextropropoxyphene, dezocine, diampromide, diamorphone, dihydrocodeine, dihydrocodeinone enol acetate, dihydromorphine, dilaudid, dimenoxadol, dimepheptanol, dimethylthiambutene, dioxaphetyl butyrate, dipipanone, eptazocine, ethoheptazine, ethylmethylthiambutene, ethylmorphine, etonitazene, fentanyl, heroin, hydrocodeine, hydrocodone, hydromorphone, hydroxypethidine, isomethadone, ketobemidone, levallorphan, levorphanol, levophenacylmorphan, lofentanil, meperidine, meptazinol, metazocine, methadone, metopon, 6-monoacetylmorphine, morphine, morphine-6-glucuronide, myrophine, nalbuphine, narceine, nicomorphine, norlevorphanol, normethadone, nalorphine, normorphine, norpipanone, noscapine, opium, oxycodone, oxymorphone, papavereturn, papverine, pentazocine, pethidine, phenadoxone, phenomorphan, phenazocine, phenoperidine, piminodine, piritramide, proheptazine, promedol, properidine, propiram, propoxyphene, sufentanil, tilidine, and tramadol.
In some embodiments, the at least one analgesic agent comprises an NSAID and an opiod drug.
In some embodiments, the at least one analgesic agent is chosen from vicodin
(acetaminophen and hydrocodone), percocet (oxycodone and acetaminophen), norco (hydrocodone bitartrate and acetaminophen), lorcet (acetaminophen and hydrocodone), darvocet (acetaminophen and propoxyphene), and percodan (aspirin and oxycodone).
In some embodiments, the at least one analgesic agent is at least one co-analgesic medication chosen from antidepressants, anti-anxiety medications, migraine medications, and gabapentin.
In some embodiments, the migraine medication is chosen from alpiropride,
dihydroergotamine, dolasetron, ergocornine, ergocorninine, ergocryptine, ergot, ergotamine, flumedroxone acetate, fonazine, lisuride, lomerizine, methysergide oxetorone, and pizotyline.
In some embodiments, the antidepressant is chosen from escitalopram, binedaline, caroxazone, citalopram, (S)-citalopram, dimethazan, fencamine, indalpine, indeloxazine hydrocholoride, nefopam, nomifensine, oxitriptan, oxypertine, paroxetine, sertraline, thiazesim, trazodone, benmoxine, iproclozide, iproniazid, isocarboxazid, nialamide, octamoxin, phenelzine, cotinine, rolicyprine, rolipram, maprotiline, metralindole, mianserin, mirtazepine, adinazolam, amitriptyline, amitriptylinoxide, amoxapine, butriptyline, clomipramine, demexiptiline, desipramine, dibenzepin, dimetacrine, dothiepin, doxepin, fluacizine, imipramine, imipramine N-oxide, iprindole, lofepramine, melitracen, metapramine, nortriptyline, noxiptilin, opipramol, pizotyline, propizepine, protriptyline, quinupramine, tianeptine, trimipramine, adrafinil, benactyzine, bupropion, butacetin, dioxadrol, duloxetine, etoperidone, febarbamate, femoxetine, fenpentadiol, fluoxetine, fluvoxamine, hematoporphyrin, hypericin, le vophace toper ane, medifoxamine, milnacipran, minaprine, moclobemide, nefazodone, oxaflozane, piberaline, prolintane, pyrisuccideanol, ritanserin, roxindole, rubidium chloride, sulpiride, tandospirone, thozalinone, tofenacin, toloxatone, tranylcypromine, L-tryptophan, venlafaxine, viloxazine, and zimeldine.
In some embodiments, the anti-anxiety medication is chosen from alprazolam, chlordiazepoxide, clonazepam, clorazepate, diazepam, halazepam, lorazepam, oxazepam, and prazepam, buspirone, and barbituates.
In some embodiments, the or more known pharmaceutical agents is chosen from osteoarthritis agents.
In some embodiments, the osteoarthritis agent is chosen from localized injections, topical patches, creams and gels, glucosamine, chondroitin sulfate, and vitamins.
In some embodiments, the localized injection is chosen from a corticosteroid injection and an injection of hyaluronan.
In some embodiments, the topical patches, creams and gels are chosen from civamide patch, diclofenac patch, topical strontium chloride hexahydrate, diclofenac sodium topical solution, capsaicin cream and methylsalicylate cream.
In some embodiments, the osteoarthritis agent is chosen from valdecoxib, meloxicam, etodolac, naproxen sodium, diacerhein, tetracycline, antimalarial therapies, Gen-S, JNJ- 39439335, JNJ-42160443 (a monoclonal antibody against nerve growth factor (NGF)), JNS013 (combination of tramadol and acetaminophen), ABT-102 (N-[5-teri-butyl-2,3-dihydro-lH- inden-l(R)-yl]-N-(lH-indazol-4-yl)urea), SARI 14137, MEDI-578, LY545694 (iGluR5 antagonist), BEMA buprenorphine (CA Index Name: 6, 14-ethenomorphinan-7-methanol, 17- (cyclopropylmethyl)-a-( 1 , 1 -dimethylethyl)-4,5 -epoxy- 18 , 19-dihydro-3-hydroxy-6-methoxy-a- methyl-, (aS,5a,7a)- hydrochloride), GRC 15300, ΡΗ-797804 (CA Index Name: benzamide, 3- [3-bromo-4-[(2,4-difluorophenyl)methoxy]-6-methyl-2-oxo-l(2H)-pyridinyl]-N,4-dimethyl-), ADX71943, ELI-216 (combination of oxycodone and naltrexone), NT-11624 (CA Index Name: lH-pyrrolo[l ,2-a]imidazole-2,5(3H,6H)-dione, dihydro-), diractin, XEN 402 (a voltage-gated Na(V) 1.7 sodium channel blocker), CRB 0022 (a monoclonal antibody against nerve growth factor (NGF)), apitoxin, and etoricoxib.
The osteoarthritis agent ABT-102 is N-[5-teri-butyl-2,3-dihydro-lH-inden-l(R)-yl]-N- (lH-indazol-4-yl)urea, and the chemical structure is:
Figure imgf000021_0001
The osteoarthritis agent BEMA buprenorphine has the CA Index Name: 6, 14- ethenomorphinan-7-methanol, 17-(cyclopropylmethyl)-a-(l ,l-dimethylethyl)-4,5-epoxy-18,19- dihydro-3-hydroxy-6-methoxy-a-methyl-, (aS,5a,7a)- hydrochloride, and the chemical structure is:
Figure imgf000021_0002
The osteoarthritis agent PH-797804 has the CA Index Name: benzamide, 3-[3-bromo-4- [(2,4-difluorophenyl)methoxy]-6-methyl-2-oxo-l(2H)-pyridinyl]-N,4-dimethyl-), and the chemical structure is:
Figure imgf000021_0003
The osteoarthritis agent NT-11624 has the CA Index Name: lH-pyrrolo[l ,2- a]imidazole-2,5(3H,6H)-dione, dihydro-), and the chemical structure is:
Figure imgf000022_0001
Other pharmaceutical agents are well known, or will be readily apparent in light of the instant disclosure, to one of ordinary skill in the art.
It is understood that the scope of combination-therapy of the compound of Formula la or a pharmaceutically acceptable salt, solvate, and hydrate thereof described herein with other pharmaceutical agents is not limited to those listed herein but includes in principle any combination with any pharmaceutical agent or pharmaceutical composition useful for the treatment of diseases, conditions or disorders that are linked to osteoarthritis.
Provided are certain compounds as shown in Formula la and pharmaceutically acceptable salts, solvates, hydrates, and/or N-oxides thereof:
Figure imgf000022_0002
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9
X is CC(0)N(R8)R9 and Y is NR7
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said d- C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo- Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6- alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl;
wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl.
It is appreciated that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the invention, which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable subcombination. All combinations of the embodiments pertaining to the chemical groups represented by the variables {e.g. , R1, R2, R3, R4, R5, R6, R7, R8, R9, R10, R11, R12, R13, R14, R15, R16, R17, X, and Y) contained within the generic chemical formulae described herein, for example, la and Ie, etc. , are specifically embraced by the present invention just as if each and every combination was individually explicitly recited, to the extent that such combinations embrace compounds that result in stable compounds {i.e. , compounds that can be isolated, characterized and tested for biological activity). In addition, all subcombinations of the chemical groups listed in the embodiments describing such variables, as well as all subcombinations of uses and medical indications described herein, are also specifically embraced by the present invention just as if each and every subcombination of chemical groups and subcombination of uses and medical indications was individually and explicitly recited, to the extent that such combinations embrace compounds that result in stable compounds (i.e. , compounds that can be isolated, characterized and tested for biological activity). In addition, all subcombinations of the chemical groups listed in the embodiments describing such variables, as well as all subcombinations of uses and medical indications described herein, are also specifically embraced by the present invention just as if each and every subcombination of chemical groups and subcombination of uses and medical indications was individually and explicitly recited herein. In addition, some embodiments include every combination of the one or more known pharmaceuticl agents either specifically disclosed herein or specifically disclosed in any reference recited herein just as if each and every combination was individually and explicitly recited. Still further, some embodiments of the present invention include every combination of one or more embodiments pertaining to the chemical groups represented by the variables and generic chemical formulae as described herein or every combination of one or more compounds of Formula (la) together/in combination with every combination of the one or more known pharmaceuticl agents either specifically disclosed herein or specifically disclosed in any reference recited herein just as if each and every combination was individually and explicitly recited.
As used herein, "substituted" indicates that at least one hydrogen atom of the chemical group is replaced by a non-hydrogen substituent or group, the non-hydrogen substituent or group can be monovalent or divalent. When the substituent or group is divalent, then it is understood that this group is further substituted with another substituent or group. When a chemical group herein is "substituted" it may have up to the full valance of substitution; for example, a methyl group can be substituted by 1, 2, or 3 substituents, a methylene group can be substituted by 1 or 2 substituents, a phenyl group can be substituted by 1, 2, 3, 4, or 5 substituents, a naphthyl group can be substituted by 1, 2, 3, 4, 5, 6, or 7 substituents, and the like. Likewise, "substituted with one or more substituents" refers to the substitution of a group with one substituent up to the total number of substituents physically allowed by the group. Further, when a group is substituted with more than one group they can be identical or they can be different.
Compounds described herein can also include tautomeric forms, such as keto-enol tautomers and the like. Tautomeric forms can be in equilibrium or sterically locked into one form by appropriate substitution. It is understood that the various tautomeric forms are within the scope of the compounds described herein.
The present disclosure includes all isotopes of atoms occurring in the present compounds, salts and crystalline forms thereof. Compounds described herein can also include all isotopes of atoms occurring in the intermediates and/or final compounds. Isotopes include those atoms having the same atomic number but different mass numbers. By way of general example, and without limitation, isotopes of hydrogen include 2H (deuterium) and 3H (tritium). Isotopes of carbon include 13C and 14C.
It is understood and appreciated that compounds of Formula la and formulae related thereto may have one or more chiral centers and therefore can exist as enantiomers and/or diastereoisomers. The invention is understood to extend to and embrace all such enantiomers, diastereoisomers and mixtures thereof, including but not limited to racemates. It is understood that compounds of Formula la and formulae used throughout this disclosure are intended to represent all individual enantiomers and mixtures thereof, unless stated or shown otherwise. The Group R1:
In some embodiments, R1 is selected from: H and C1-C6 alkyl.
In some embodiments, R1 is H.
In some embodiments, R1 is C1-C6 alkyl.
In some embodiments, R1 is methyl.
In some embodiments, R1 is isopropyl.
The Group R2:
In some embodiments, R2 is selected from: H and Ci-C6 alkyl.
In some embodiments, R2 is H.
In some embodiments, R2 is Ci-C6 alkyl.
In some embodiments, R2 is methyl.
In some embodiments, R2 is isopropyl.
The Group R3:
In some embodiments, R3 is selected from: H and Ci-C6 alkyl.
In some embodiments, R3 is H.
In some embodiments, R3 is C1-C6 alkyl.
In some embodiments, R3 is methyl.
In some embodiments, R3 is isopropyl.
The Group R4:
In some embodiments, R4 is selected from: H and C1-C6 alkyl.
In some embodiments, R4 is H.
In some embodiments, R4 is C1-C6 alkyl.
In some embodiments, R4 is methyl.
In some embodiments, R4 is isopropyl.
The Group R5:
In some embodiments, R5 is selected from: H and Ci-C6 alkyl.
In some embodiments, R5 is H.
In some embodiments, R5 is Ci-C6 alkyl. In some embodiments, R5 is methyl.
In some embodiments, R5 is isopropyl.
The Group R6:
In some embodiments, R6 is selected from: H and Ci-C6 alkyl.
In some embodiments, R6 is H.
In some embodiments, R6 is Ci-Ce alkyl.
In some embodiments, R6 is methyl.
In some embodiments, R6 is isopropyl.
The Group X:
In some embodiments, X is NR7; wherein R7 is -R10-Rn-R12-R13
In some embodiments, X is CCONR8R9.
In some embodiments, X is CC(0)NHR8.
The Group Y:
In some embodiments, Y is NR7; wherein R7 is -R10-Rn-R12-R13
In some embodiments, Y is CCONR8R9.
In some embodiments, Y is CC(0)NHR8.
The Group R7:
In some embodi ■ments, R 7' i■s -R 10 -R11 -R12 -R13 , or an N-oxi■de thereof.
In some embodiments, R7 is -R10-Rn-R12-R13.
In some embodiments, R7 is selected from: aryl and heteroaryl; wherein said aryl and heteroaryl are each optionally substituted with one or two substituents selected from: cyano and halogen.
In some embodiments, R7 is selected from: aryl and heteroaryl; wherein said aryl and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, chloro, and cyano.
In some embodiments, R7 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 5- chloro-pyridin-2-yl, 5-cyano-pyrazin-2-yl, pyrazin-2-yl, 5-fluoro-pyridin-2-yl, 4-chloro-pyridin- 2-yl, 4-fluoro-pyridin-2-yl, 4-cyano-pyridin-2-yl, and 4-oxy-pyrazin-2-yl.
In some embodiments, R7 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 5- chloro-pyridin-2-yl, 5-cyano-pyrazin-2-yl, pyrazin-2-yl, 5-fluoro-pyridin-2-yl, 4-chloro-pyridin- 2-yl, 4-fluoro-pyridin-2-yl, 4-cyano-pyridin-2-yl, and 4-oxy-pyrazin-2-yl.
In some embodiments, R7 is selected from: 2,4-difluoro-phenyl, 5-bromo-pyridin-2-yl, 4-cyano-phenyl, pyridin-3-yl, pyridin-2-yl, 5-thiazol-2-yl-pyridin-2-yl, 5-trifluoromethyl- pyridin-2-yl, 5-o-tolyl-pyridin-2-yl, 5-dimethylamino-pyrazin-2-yl, 2,4-dichloro-phenyl, 5- isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-(4-methoxy-phenyl)-pyridin-2-yl, 2-fluoro-4- methanesulfonyl-phenyl, 2-fluoro-phenyl, 5-chloro-pyridin-2-yl, 5-bromo-pyridin-3-yl, tert- butyl, 2-methoxy-pyridin-4-yl, 2,2-dimethyl-propyl, tetrahydro-pyran-4-ylmethyl, phenyl, 4- trifluoromethyl-pyridin-2-yl, 6-chloro-pyrazin-2-yl, 1-oxo-hexahydro-l 4-thiopyran-4-yl, 5- morpholin-4-yl-pyridin-2-yl, 6-bromo-pyridin-3-yl, 5-methoxy-pyridin-2-yl, 5,6-difluoro- pyridin-3-yl, 6-methoxy-pyridazin-3-yl, 2-chloro-pyridin-4-yl, 5-cyclopropyl-pyrazin-2-yl, 1,1- dioxo-tetrahydro-^6-thiophen-3-yl, 1 -benzyl-piperidin-4-yl, 6-cyano-pyrazin-2-yl, 2-hydroxy- 2-methyl-propyl, 4-lluoro-phenyl, 5-ethyl-pyridin-2-yl, isopropyl, 5-phenyl-pyridin-2-yl, pyridin-4-yl, 2,5-difluoro-phenyl, 3-fluoro-phenyl, pyrimidin-4-yl, 2-(tetrahydro-pyran-4-yl)- ethyl, 3,5-dilluoro-pyridin-2-yl, pyrazin-2-yl, tetrahydro-thiopyran-4-yl, 5-/?-tolyl-pyridin-2-yl,
4- methoxy-phenyl, 2-morpholin-4-yl-ethyl, 5-cyano-pyridin-2-yl, 5-cyano-pyrazin-2-yl, 6'- methyl-[3,3']bipyridinyl-6-yl, 6-chloro-pyridazin-3-yl, 5-lluoro-pyridin-2-yl, 5-ethyl-pyrazin-2- yl, 6-methoxy-pyrazin-2-yl, 5-dimethylamino-pyridin-2-yl, l-(4-fluoro-phenyl)-l -methyl -ethyl,
5- pyrimidin-5-yl-pyridin-2-yl, 4-methyl-pyridin-2-yl, 5-methoxy-pyrazin-2-yl, 5-propyl- pyridin-2-yl, 6-chloro-pyridin-3-yl, 5-ra-tolyl-pyridin-2-yl, 5-hydroxy-pyrazin-2-yl, cyclopropyl-pyridin-2-yl, 2,6-difluoro-phenyl, 3-fluoro-pyridin-4-yl, 5-isopropyl-pyrazin-2-yl, 5-bromo-pyrazin-2-yl, 5-cyclopentyl-pyridin-2-yl, o-tolyl, 4-lluoro-benzyl, 3-methyl-pyridin-2- yl, 6-methyl-4-trifluoromethyl-pyridin-2-yl, 6-dimethylamino-pyrazin-2-yl, 1,1-dioxo- hexahydro-^6-thiopyran-4-yl, 5-(4-fluoro-phenyl)-pyridin-2-yl, 5-cyclopropyl-pyridin-2-yl, 6- ethyl-pyrazin-2-yl, 5-methylamino-pyrazin-2-yl, 5-methyl-pyrazin-2-yl, 3-fluoro-pyridin-2-yl, 5-cyclobutyl-pyrazin-2-yl, 5-ethoxy-pyrazin-2-yl, 5-trilluoromethyl-pyrazin-2-yl, 5-cyano- pyridin-3-yl, 5-cyclopropylmethyl-pyrazin-2-yl, 5-pentalluoroethyl-pyrazin-2-yl, 5- heptafluoropropyl-pyrazin-2-yl, 5-chloro-4-methyl-pyridin-2-yl, 5-chloro-4-trifluoromethyl- pyridin-2-yl, 4-bromo-pyridin-2-yl, 4-chloro-pyridin-2-yl, 4-fluoro-pyridin-2-yl, 4-oxy-pyrazin- 2-yl, 4-cyclopropyl-pyridin-2-yl, 4-cyano-pyridin-2-yl, 4-methanesulfonyl-pyridin-2-yl, 4- methoxy-pyridin-2-yl, piperidin-4-yl, tetrahydro-pyran-4-yl, 3-methyl-l,l-dioxo-tetrahydro-^6- thiophen-3-yl, 5-chloro-3-fluoro-pyridin-2-yl, 3-fluoro-5-methoxy-pyridin-2-yl, 2-chloro-4- fluoro-phenyl, 6-fluoro-pyridin-3-yl, 6-cyano-pyridin-3-yl, 3-hydroxy-3-methyl-butyl, 4-iodo- pyridin-2-yl, l-oxy-pyridin-3-yl, 4-teri-butylcarbamoyl-pyridin-2-yl, and 4-hydroxy-pyridin-2- yi-
In some embodiments, R7 is selected from: 2,4-difluoro-phenyl, 5-bromo-pyridin-2-yl, 4-cyano-phenyl, pyridin-3-yl, pyridin-2-yl, 5-thiazol-2-yl-pyridin-2-yl, 5-trifluoromethyl- pyridin-2-yl, 5-o-tolyl-pyridin-2-yl, 5-dimethylamino-pyrazin-2-yl, 2,4-dichloro-phenyl, 5- isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-(4-methoxy-phenyl)-pyridin-2-yl, 2-fluoro-4- methanesulfonyl-phenyl, 2-fluoro-phenyl, 5-chloro-pyridin-2-yl, 5-bromo-pyridin-3-yl, tert- butyl, 2-methoxy-pyridin-4-yl, 2,2-dimethyl-propyl, tetrahydro-pyran-4-ylmethyl, phenyl, 4- trifluoromethyl-pyridin-2-yl, 6-chloro-pyrazin-2-yl, l-oxo-hexahydro-^4-thiopyran-4-yl, 5- morpholin-4-yl-pyridin-2-yl, 6-bromo-pyridin-3-yl, 5-methoxy-pyridin-2-yl, 5,6-difluoro- pyridin-3-yl, 6-methoxy-pyridazin-3-yl, 2-chloro-pyridin-4-yl, 5-cyclopropyl-pyrazin-2-yl, 1,1- dioxo-tetrahydro-^6-thiophen-3-yl, 1 -benzyl-piperidin-4-yl, 6-cyano-pyrazin-2-yl, 2-hydroxy- 2-methyl-propyl, 4-fluoro-phenyl, 5-ethyl-pyridin-2-yl, isopropyl, 5-phenyl-pyridin-2-yl, pyridin-4-yl, 2,5-difluoro-phenyl, 3-fluoro-phenyl, pyrimidin-4-yl, 2-(tetrahydro-pyran-4-yl)- ethyl, 3,5-difluoro-pyridin-2-yl, pyrazin-2-yl, tetrahydro-thiopyran-4-yl, 5-/?-tolyl-pyridin-2-yl,
4- methoxy-phenyl, 2-morpholin-4-yl-ethyl, 5-cyano-pyridin-2-yl, 5-cyano-pyrazin-2-yl, 6'- methyl-[3,3']bipyridinyl-6-yl, 6-chloro-pyridazin-3-yl, 5-fluoro-pyridin-2-yl, 5-ethyl-pyrazin-2- yl, 6-methoxy-pyrazin-2-yl, 5-dimethylamino-pyridin-2-yl, 1 -(4-fluoro-phenyl)- 1 -methyl -ethyl,
5- pyrimidin-5-yl-pyridin-2-yl, 4-methyl-pyridin-2-yl, 5-methoxy-pyrazin-2-yl, 5-propyl- pyridin-2-yl, 6-chloro-pyridin-3-yl, 5-ra-tolyl-pyridin-2-yl, 5-hydroxy-pyrazin-2-yl, cyclopropyl-pyridin-2-yl, 2,6-difluoro-phenyl, 3-fluoro-pyridin-4-yl, 5-isopropyl-pyrazin-2-yl, 5-bromo-pyrazin-2-yl, 5-cyclopentyl-pyridin-2-yl, o-tolyl, 4-lluoro-benzyl, 3-methyl-pyridin-2- yl, 6-methyl-4-trifluoromethyl-pyridin-2-yl, 6-dimethylamino-pyrazin-2-yl, 1,1-dioxo- hexahydro-^6-thiopyran-4-yl, 5-(4-fluoro-phenyl)-pyridin-2-yl, 5-cyclopropyl-pyridin-2-yl, 6- ethyl-pyrazin-2-yl, 5-methylamino-pyrazin-2-yl, 5-methyl-pyrazin-2-yl, 3-lluoro-pyridin-2-yl, 5-cyclobutyl-pyrazin-2-yl, 5-ethoxy-pyrazin-2-yl, 5-trilluoromethyl-pyrazin-2-yl, 5-cyano- pyridin-3-yl, 5-cyclopropylmethyl-pyrazin-2-yl, 5-pentalluoroethyl-pyrazin-2-yl, 5- heptafluoropropyl-pyrazin-2-yl, 5-chloro-4-methyl-pyridin-2-yl, 5-chloro-4-trilluoromethyl- pyridin-2-yl, 4-bromo-pyridin-2-yl, 4-chloro-pyridin-2-yl, 4-fluoro-pyridin-2-yl, 4-oxy-pyrazin-
2- yl, 4-cyclopropyl-pyridin-2-yl, 4-cyano-pyridin-2-yl, 4-methanesulfonyl-pyridin-2-yl, 4- methoxy-pyridin-2-yl, and piperidin-4-yl.
In some embodiments, R7 is 2,4-difluoro-phenyl. In some embodiments, R7 is 5-bromo- pyridin-2-yl. In some embodiments, R7 is 4-cyano-phenyl. In some embodiments, R7 is pyridin-
3- yl. In some embodiments, R7 is pyridin-2-yl. In some embodiments, R7 is 5-thiazol-2-yl- pyridin-2-yl. In some embodiments, R7 is 5-triiluoromethyl-pyridin-2-yl. In some embodiments, R7 is 5-o-tolyl-pyridin-2-yl. In some embodiments, R7 is 5-dimethylamino-pyrazin-2-yl. In some embodiments, R7 is 2,4-dichloro-phenyl. In some embodiments, R7 is 5-isopropyl-pyridin-2-yl. In some embodiments, R7 is 5-methyl-pyridin-2-yl. In some embodiments, R7 is 5-(4-methoxy- phenyl)-pyridin-2-yl. In some embodiments, R7 is 2-iluoro-4-methanesulfonyl-phenyl. In some embodiments, R7 is 2-fluoro-phenyl. In some embodiments, R7 is 5-chloro-pyridin-2-yl. In some embodiments, R7 is 5-bromo-pyridin-3-yl. In some embodiments, R7 is teri-butyl. In some embodiments, R7 is 2-methoxy-pyridin-4-yl. In some embodiments, R7 is 2,2-dimethyl-propyl. In some embodiments, R7 is tetrahydro-pyran-4-ylmethyl. In some embodiments, R7 is phenyl. In some embodiments, R7 is 4-triiluoromethyl-pyridin-2-yl. In some embodiments, R7 is 6- chloro-pyrazin-2-yl. In some embodiments, R7 is l-oxo-hexahydro-^4-thiopyran-4-yl. In some embodiments, R7 is 5-morpholin-4-yl-pyridin-2-yl. In some embodiments, R7 is 6-bromo- pyridin-3-yl. In some embodiments, R7 is 5-methoxy-pyridin-2-yl. In some embodiments, R7 is 5,6-diiluoro-pyridin-3-yl. In some embodiments, R7 is 6-methoxy-pyridazin-3-yl. In some embodiments, R7 is 2-chloro-pyridin-4-yl. In some embodiments, R7 is 5-cyclopropyl-pyrazin-2- yl. In some embodiments, R7 is l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R7 is l-benzyl-piperidin-4-yl. In some embodiments, R7 is 6-cyano-pyrazin-2-yl. In some embodiments, R7 is 2-hydroxy-2-methyl-propyl. In some embodiments, R7 is 4-fluoro-phenyl. In some embodiments, R7 is 5-ethyl-pyridin-2-yl. In some embodiments, R7 is isopropyl. In some embodiments, R7 is 5-phenyl-pyridin-2-yl. In some embodiments, R7 is pyridin-4-yl. In some embodiments, R7 is 2,5-difluoro-phenyl. In some embodiments, R7 is 3-fluoro-phenyl. In some embodiments, R7 is pyrimidin-4-yl. In some embodiments, R7 is 2-(tetrahydro-pyran-4-yl)-ethyl. In some embodiments, R7 is 3,5-difluoro-pyridin-2-yl. In some embodiments, R7 is pyrazin-2-yl. In some embodiments, R7 is tetrahydro-thiopyran-4-yl. In some embodiments, R7 is 5-/?-tolyl- pyridin-2-yl. In some embodiments, R7 is 4-methoxy-phenyl. In some embodiments, R7 is 2- morpholin-4-yl-ethyl. In some embodiments, R7 is 5-cyano-pyridin-2-yl. In some embodiments, R7 is 5-cyano-pyrazin-2-yl. In some embodiments, R7 is 6'-methyl-[3,3']bipyridinyl-6-yl. In some embodiments, R7 is 6-chloro-pyridazin-3-yl. In some embodiments, R7 is 5-fluoro-pyridin- 2-yl. In some embodiments, R7 is 5-ethyl-pyrazin-2-yl. In some embodiments, R7 is 6-methoxy- pyrazin-2-yl. In some embodiments, R7 is 5-dimethylamino-pyridin-2-yl. In some embodiments, R7 is l-(4-iluoro-phenyl)-l-methyl-ethyl. In some embodiments, R7 is 5-pyrimidin-5-yl-pyridin- 2-yl. In some embodiments, R7 is 4-methyl-pyridin-2-yl. In some embodiments, R7 is 5- methoxy-pyrazin-2-yl. In some embodiments, R7 is 5-propyl-pyridin-2-yl. In some
embodiments, R7 is 5-ra-tolyl-pyridin-2-yl. In some embodiments, R7 is 5-hydroxy-pyrazin-2-yl. In some embodiments, R7 is cyclopropyl-pyridin-2-yl. In some embodiments, R7 is 2,6-difluoro- phenyl. In some embodiments, R7 is 3-fluoro-pyridin-4-yl. In some embodiments, R7 is 5- isopropyl-pyrazin-2-yl. In some embodiments, R7 is 5-bromo-pyrazin-2-yl. In some
embodiments, R7 is 5-cyclopentyl-pyridin-2-yl. In some embodiments, R7 is o-tolyl. In some embodiments, R7 is 4-fluoro-benzyl. In some embodiments, R7 is 3-methyl-pyridin-2-yl. In some embodiments, R7 is 6-methyl-4-triiluoromethyl-pyridin-2-yl. In some embodiments, R7 is 6-dimethylamino-pyrazin-2-yl. In some embodiments, R7 is l,l-dioxo-hexahydro-^6-thiopyran-
4- yl. In some embodiments, R7 is 5-(4-iluoro-phenyl)-pyridin-2-yl. In some embodiments, R7 is
5- cyclopropyl-pyridin-2-yl. In some embodiments, R7 is 6-ethyl-pyrazin-2-yl. In some embodiments, R7 is 5-methylamino-pyrazin-2-yl. In some embodiments, R7 is dichloro-phenyl. In some embodiments, R7 is 5-methyl-pyrazin-2-yl. In some embodiments, R7 is 3-fluoro- pyridin-2-yl. In some embodiments, R7 is 5-cyclobutyl-pyrazin-2-yl. In some embodiments, R7 is 5-ethoxy-pyrazin-2-yl. In some embodiments, R7 is 5-triiluoromethyl-pyrazin-2-yl. In some embodiments, R7 is 5-cyano-pyridin-3-yl. In some embodiments, R7 is 5-cyclopropylmethyl- pyrazin-2-yl. In some embodiments, R7 is 5-pentailuoroethyl-pyrazin-2-yl. In some
embodiments, R7 is 5-heptafluoropropyl-pyrazin-2-yl. In some embodiments, R7 is 5-chloro-4- methyl-pyridin-2-yl. In some embodiments, R7 is 5-chloro-4-triiluoromethyl-pyridin-2-yl. In some embodiments, R7 is 4-bromo-pyridin-2-yl. In some embodiments, R7 is 4-chloro-pyridin- 2-yl. In some embodiments, R7 is 4-iluoro-pyridin-2-yl. In some embodiments, R7 is 4-oxy- pyrazin-2-yl. In some embodiments, R7 is 4-cyclopropyl-pyridin-2-yl. In some embodiments, R7 is 4-cyano-pyridin-2-yl. In some embodiments, R7 is 4-methanesulfonyl-pyridin-2-yl. In some embodiments, R7 is 4-methoxy-pyridin-2-yl. In some embodiments, R7 is piperidin-4-yl. In some embodiments, R7 is tetrahydro-pyran-4-yl. In some embodiments, R7 is 3-methyl-l,l- dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R7 is 5-chloro-3-iluoro-pyridin-2-yl. In some embodiments, R7 is 3-iluoro-5-methoxy-pyridin-2-yl. In some embodiments, R7 is 2- chloro-4-iluoro-phenyl. In some embodiments, R7 is 6-iluoro-pyridin-3-yl. In some
embodiments, R7 is 6-cyano-pyridin-3-yl. In some embodiments, R7 is 3-hydroxy-3-methyl- butyl. In some embodiments, R7 is 4-iodo-pyridin-2-yl. In some embodiments, R7 is 1-oxy- pyridin-3-yl. In some embodiments, R7 is 4-teri-butylcarbamoyl-pyridin-2-yl. In some embodiments, R7 is 4-hydroxy-pyridin-2-yl.
The Group R8:
In some embodiments, R8 is -R14-R15-R16-R17.
In some embodiments, R8 is selected from: l-hydroxymethyl-2,2-dimethyl-propyl, 2- hydroxy- 1,1 -dimethyl -ethyl, 1 -hydroxymethyl -cyclopropyl, 2-hydroxy-indan-l-yl, 1- hydroxymethyl-cyclobutyl, tert-b tyl, 2-hydroxy-l -phenyl -ethyl, 2-hydroxy-l -hydroxymethyl - 1 -methyl -ethyl, teri-butylamino, 2,2,2-trifluoro- 1,1 -dimethyl -ethyl, 2-methyl-l- (phosphonooxy)propan-2-yl, 1-methyl-cyclobutyl, l-hydroxymethyl-2-methyl -propyl, cyano- dimethyl-methyl, 2,2-dimethyl-l-(methylcarbamoyl)-propyl, 3,3-dimethyl-l-
(phosphonooxy)butan-2-yl, 2-hydroxy-l -tetrahydro-pyran-4-yl-ethyl, 1 ,2-dimethyl-propyl, 1- pyridin-2-yl-cyclobutyl, 2-(methylamino)-2-oxo-l-phenylethyl, 2,2-dimethyl-l-pyridin-2-yl- propyl, 1 -methoxy-3 ,3 -dimethyl- 1 -oxobutan-2-yl, 1 -(2-amino-3-methylbutanoyloxy)-3 - methylbutan-2-yl, l-(4-carboxybutanoyloxy)-3-methylbutan-2-yl, 3,3,3-trifluoro-l- hydroxymethyl-propyl, 2-fluoro- 1 , 1 -dimethyl -ethyl, 2-fluoro- 1 -fluoromethyl- 1 -hydroxymethyl- ethyl, l-fluoromethyl-2,2-dimethyl-propyl, 1-fluoromethyl-cyclobutyl, 1-trifluoromethyl- cyclopropyl, and 1-trifluoromethyl-cyclobutyl.
In some embodiments, R8 is selected from: H, 2-methyl-2-morpholin-4-yl -propyl, 1- hydroxymethyl-2,2-dimethyl -propyl, 2-(teri-butoxycarbonylamino)cyclohexyl, 1 -phenyl- cyclopropyl, 5-trifluoromethyl-pyridin-2-yl, 1 -methyl- 1-phenyl-ethyl, l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl, 1 -(methoxycarbonyl)cyclopropyl, tetrahydro-pyran-4-ylmethyl, 1 -(teri-butoxycarbonyl)piperidin-4-yl, 1 -(4-fluoro-phenyl)-cyclopropyl, 6-methyl-pyridin-3- ylmethyl, 2-hydroxy-l -phenyl-ethyl, l,3,3-trimethyl-bicyclo[2.2.1]hept-2-yl, 2-hydroxy-l,l- dimethyl-ethyl, 2-(5-hydroxy-lH-indol-3-yl)-ethyl, 1 -hydroxymethyl -cyclopropyl, 3-chloro-5- methyl-pyridin-2-yl, 6-fluoro-pyridin-3-yl, l-(3-fluoro-phenyl)-cyclobutyl, 2-methyl-pyridin-3- yl, 2-hydroxy-l -(tetrahydro-furan-3-yl)-ethyl, 2-(pyridin-3-yloxy)-propyl, carbamoyl -phenyl - methyl, 5-fluoro-2-methoxy-phenyl, 2-methoxy-ethyl, 2,3-dihydroxy-propyl, \-{tert- butoxycarbonyl)pyrrolidin-3-yl, 2-oxo-2-phenyl-ethyl, l-(3,3,3-trifluoro-propyl)-azetidin-3-yl,
2- hydroxy-l-pyridin-2-yl -ethyl, 3-hydroxy-pyridin-4-yl, 1 -methyl- 1 -pyridin-4-yl -ethyl, 1- hydroxymethyl-2-3H-imidazol-4-yl-ethyl, 4-hydroxy-3-methoxy-benzyl, 5-fluoro-2-oxo-2,3- dihydro-pyrimidin-4-yl, l-(4-fluoro-phenyl)-3-hydroxy-propyl, l-pyridin-4-yl-cyclopropyl, 2- hydroxy- l-pyridin-3-yl -ethyl, l,l-dimethyl-2-(4-methyl-piperidin-l-yl)-ethyl, 6-cyano-pyridin-
3- yl, 5-fluoro-pyridin-2-yl, 2,5-dimethyl-benzyl, 1 -isopropyl-piperidin-4-yl, 2-methoxy-l- methoxymethyl -ethyl, 2,3-dimethyl-benzyl, l-pyridin-2-yl -ethyl, 6-chloro-pyridin-3-ylmethyl, 3-methyl-pyridin-2-yl, 2-hydroxy-indan-l-yl, 1-hydroxymethyl-cyclobutyl, 2-(4-chloro-phenyl)- 1,1 -dimethyl -ethyl, 3-hydroxy-pyridin-2-ylmethyl, 3-methyl-pyridin-4-yl, 5-teri-butyl-isoxazol- 3-yl, l-(6-methoxy-pyridin-3-yl)-l -methyl-ethyl, lH-benzoimidazol-2-yl, tert-b tyl, 4-phenyl- thiazol-2-yl, l-(2-lluoro-phenyl)-cyclobutyl, 2,4-dimethoxy-benzyl, 5-bromo-3-methyl-pyridin-
2- yl, 4-benzyl-morpholin-2-ylmethyl, 6-trilluoromethyl-pyridin-3-ylmethyl, tetrahydro-furan-3- yl, pyridin-3-ylmethyl, pyrazin-2-yl, piperidin-4-yl, l-(6-hydroxy-pyridin-3-yl)-l-methyl-ethyl, 1 -methyl- 1 -pyridin-2-yl-ethyl, 1-hydroxymethyl-cyclopentyl, l-aza-bicyclo[2.2.2]oct-3-yl, 2- hydroxy-cyclopentyl, 2-hydroxy-l-(hydroxymethyl)-propyl, l-(teri-butoxycarbonyl)piperidin-4- yl)methyl, 3,5-dimethoxy-phenyl, 6-fluoro-4H-benzo[l,3]dioxin-8-ylmethyl, 4,6-dimethyl- pyridin-2-yl, l,l-dimethyl-2-morpholin-4-yl-ethyl, 2-hydroxy-cyclohexylmethyl, l-(4-methoxy- phenyl)-cyclopropyl, l-ethyl-pyrrolidin-2-ylmethyl, indan-l-yl, pyrimidin-4-yl, 2-fluoro-4- methanesulfonyl-phenyl, 6-hydroxy-pyridin-2-yl, cyclobutyl, l-(3-methoxy-phenyl)- cyclopropyl, l-(3,3,3-trilluoro-propyl)-pyrrolidin-3-yl, 2-hydroxy-pyridin-3-yl, 4- dilluoromethoxy-benzyl, 1-piperidin-l-yl-cyclopentylmethyl, 3-hydroxy-3-methyl-butyl, l-(4- fluoro-phenyl)-cyclobutyl, 4-methoxy-benzyl, pyridin-2-yl, 2-hydroxy-2-phenyl-ethyl, 2- hydroxymethyl-2,3-dihydro-indol-l-yl, 3-hydroxy-pyridin-2-yl, 4-dimethylamino-tetrahydro- pyran-4-ylmethyl, 2-(4-lluoro-phenyl)-ethyl, l-(2-methoxy-ethyl)-piperidin-4-ylmethyl, 2- morpholin-4-yl-ethyl, l-(teri-butoxycarbonyl)-4-carboxypiperidin-4-yl, quinolin-3-yl, 1- morpholin-4-ylmethyl-cyclopentyl, 1 ,4-dimethyl-lH-pyrrol-2-ylmethyl, 2-hydroxy-2-pyridin-2- yl -ethyl, pyridin-3-yl, 2-dimethylamino-benzyl, tetrahydro-thiopyran-4-yl, 1-ra-tolyl- cyclopropyl, l-(2-methoxy-ethyl)-piperidin-3-yl, 5-methoxy-pyridin-2-ylmethyl, 2-hydroxy-l- pyridin-4-yl-ethyl, 4-methyl-pyridin-2-yl, 4-carboxy-2-fluorophenyl, 6-methanesulfonyl- pyridin-3-yl, 1-o-tolyl -cyclobutyl, l,l-dimethyl-2-pyrrolidin-l-yl-ethyl, 2,6-dimethoxy-pyridin-
3- yl, pyridin-2-yl, 4-hydroxymethyl-tetrahydro-pyran-4-yl, 2-(lH-imidazol-4-yl)-ethyl, 3- fluoro-pyridin-4-yl, 1 -carbamoyl-2-phenyl-ethyl, oxazol-4-ylmethyl, 6-methoxy-pyrimidin-4-yl, 1 , 1 -dioxo-hexahydro- 1 λ6-thiopyran-4-yl, 1 -methoxy- 1 -oxo-3-phenylpropan-2-yl, 1 -(2-methoxy- ethyl)-pyrrolidin-3-yl, l-(6-methyl-pyridin-2-yl)-ethyl, 2-hydroxy-l-(4-hydroxy-phenyl)-ethyl, 2-methoxy-pyridin-4-yl, l-pyridin-2-yl-cyclopropyl, l-(teri-butoxycarbonyl)piperidin-3-yl, 3- methyl-pyridin-2-ylmethyl, 3-lluoro-pyridin-2-yl, 1 -pyridin-4-yl-cyclobutyl, 2-carboxy-l- (pyridin-3-yl)ethyl, 2-hydroxy-l -methyl-ethyl, l-(methoxycarbonyl)cyclohexyl, 3- hydroxymethyl-pyridin-4-yl, 2-hydroxy- 1 -phenyl -ethyl, 3-dimethylamino-tetrahydro-thiophen- 3-ylmethyl, tetrahydro-pyran-4-yl, 5-chloro-pyridin-2-yl, 1 -carbamoyl -cyclobutyl, 5-iluoro-2- methyl-benzyl, 2-morpholin-4-yl-2-pyridin-3-yl-ethyl, l-(3-methoxy-phenyl)-cyclobutyl, 5- methyl-pyridin-2-yl, l-(tetrahydro-furan-2-yl)methyl, 1-dimethylaminomethyl-cyclopentyl, 2- (4-fluoro-phenyl)-l -methyl-ethyl, benzothiazol-2-yl, l-(2-fluoro-phenyl)-cyclopropyl, l-(2- methoxy-ethyl)-piperidin-4-yl, 2-hydroxy- l-pyridin-4-yl-ethyl, l-(3,3,3-triiluoro-propyl)- azetidin-3-ylmethyl, 6-pyrrolidin- 1 -yl-pyridin-2-ylmethyl, 1 , 1 -dioxo-tetrahydro- 1 λ6-ώίορ1ΐ6η-3 - yl, 2,3-dimethoxy-benzyl, 3-cyano-5-methyl-pyridin-2-yl, 2,3-dihydro-benzofuran-3-yl, 1- hydroxymethyl-cyclohexyl, 2,5-difluoro-benzyl, 4-dimethylamino-benzyl, 4-hydroxy-l,l-dioxo- tetrahydro-^6-thiophen-3-yl, 4-trilluoromethyl-pyridin-2-yl, 5-methyl-thiazol-2-yl, 6- trilluoromethyl-pyridin-3-yl, 5-hydroxy-lH-pyrazol-3-yl, 2-thiomorpholin-4-yl-ethyl, benzo[l,3]dioxol-5-ylmethyl, 2-amino-cyclohexyl, 3-dimethylamino-l-oxo-tetrahydro-^4- thiophen-3-ylmethyl, 4-methyl-morpholin-2-ylmethyl, l-(2-methoxy-phenyl)-cyclopropyl, 2- carboxy-l-(4-lluorophenyl)propan-2-yl, pyridin-2-ylmethyl, pyridazin-3-yl, 4-pyridin-2-yl- thiazol-2-yl, l-(3,3,3-trilluoro-propyl)-piperidin-4-ylmethyl, 6-chloro-2-methyl-pyridin-3-yl, 6- hydroxy-pyridin-3-yl, 3-triiluoromethoxy-benzyl, l-morpholin-4-yl-cyclopentylmethyl, 1- pyridin-2-yl-cyclobutylmethyl, indan- 1 -ylamide, 2-hydroxy- 1 -hydroxymethyl- 1 -methyl -ethyl,
5- hydroxymethyl-pyridin-2-yl, 5-fluoro-l-oxy-pyridin-2-yl, 6-methoxy-pyridin-2-yl, 1-methyl- l-pyridin-3-yl -ethyl, 6-methyl-pyridin-3-yl, 2-hydroxy- 1-hydroxymethyl-propyl, 2-chloro- pyridin-3-yl, 3-methyl-3H-imidazol-4-ylmethyl, 6-fluoro-pyridin-2-yl, 3-dimethylamino-benzyl,
6- morpholin-4-yl-pyridin-3-yl, 1 -o-tolyl-cyclopropyl, l-(3,3,3-trilluoro-propyl)-piperidin-3-yl, 6-methanesulfonyl-4-methyl-pyridin-3-yl, 2-methyl-quinolin-4-yl, l-(3,3,3-trifluoro-propyl)- pyrrolidin-3-ylmethyl, benzooxazol-2-yl, 1 -methyl -piperidin-4-ylmethyl, 2-(2,6-dimethyl- morpholin-4-yl)-2-methyl-propyl, 1 -methyl -piperidin-2-ylmethyl, pyridin-4-ylmethyl, 4- hydroxymethyl-pyridin-2-yl, 5,7-dimethyl-pyrazolo[l,5-a]pyrimidin-2-yl, 6,6-dimethyl- bicyclo[3.1.1]hept-2-ylmethyl, l-(5-methyl-pyridin-2-yl)-ethyl, 2-lluoro-pyridin-3-yl, morpholin-4-yl, 2-hydroxy-2-pyridin-4-yl-ethyl, pyridin-4-yl, 4-hydroxy-pyridin-2-yl, 3- methoxy-benzyl, 1 -oxy-pyridin-2-yl, 1-ethyl-propyl, 6-carboxypyridin-2-yl, 1,2,2,6,6- pentamethyl-piperidin-4-yl, 6-methoxy-pyridin-3-yl, cyclopentyl, morpholin-2-ylmethyl, 1- (teri-butoxycarbonyl)azetidin-3-yl)methyl, 2-dimethylamino-2-pyridin-3-yl-ethyl, l-(4- methoxy-phenyl)-cyclobutyl, 3-hydroxy-benzyl, tetrahydro-furan-2-ylmethyl, 4-(tert- butoxycarbonyl)morpholin-2-ylmethyl, l-(3-lluoro-phenyl)-cyclopropyl, 2-o-tolyl-ethyl, 3- hydroxymethyl-l-isobutyl-pyrrolidin-3-yl, l-(2-methoxy-ethyl)-azetidin-3-yl, 6-morpholin-4-yl- pyridin-2-ylmethyl, 1 , 1 -dioxo-tetrahydro- 1 λ6-11ιίορ1ΐ6η-3 -ylmethyl, 2-(4-fluoro-phenoxy)-ethyl, 2,6-dimethyl-pyrimidin-4-yl, 1 -hydroxymethyl -2-(3H-imidazol-4-yl)-ethyl, 4-methanesulfonyl- benzyl, l-pyridin-3-yl-cyclopropyl, 9-methyl-9-aza-bicyclo[3.3.1]non-l-yl, 2,6-dimethyl- pyridin-3-yl, 4-hydroxy-benzyl, 2-oxo-2 -phenyl -ethyl), 1 -methyl- lH-pyrazol-3-ylmethyl, pyrimidin-2-yl, 5-methyl-pyrazin-2-yl, l-(2-methoxy-pyridin-3-yl)-l -methyl-ethyl, 6- methanesulfonyl-2-methyl-pyridin-3-yl, 2-hydroxy-benzyl, 6-bromo-2-methyl-pyridin-3-yl, 2- methoxy-pyridin-3-yl, 1 -(4-chloro-phenyl)-cyclobutyl, 2-(pyridine-2-sulfonyl)-ethyl, 1 -pyridin- 2-yl-cyclopropylmethyl, 1 -methyl- 1, 2,3, 4-tetrahydro-quinolin-7-yl, benzyl, 3,5-dimethyl- pyrazin-2-yl, l-(2-hydroxy-pyridin-3-yl)-l-methyl-ethyl, l-(ethoxycarbonyl)cyclobutyl, \- tert- butoxycarbonyl)pyrrolidin-3-ylmethyl, quinolin-4-ylmethyl, 2-(4-fluoro-phenyl)-l-(2-hydroxy- ethylcarbamoyl)-l -methyl-ethyl, 2-morpholin-4-yl-pyridin-3-yl, 6-methyl-pyridin-2-yl, 3- diiluoromethoxy-benzyl, 4-hydroxy- 1 -methyl-piperidin-4-ylmethyl, 1 -(2,5-dimethylpyrrolidine- l-carbonyl)cyclopentyl, 2-methoxy-benzyl, 6-methyl-pyridin-2-ylmethyl, 3-chloro-pyridin-4-yl, 2-carboxypropan-2-yl, 6-chloro-pyridin-3-yl, 2-hydroxy-2-pyridin-3-yl -ethyl, \-p-to\y\- cyclopropyl, l-(3,3,3-triiluoro-propyl)-piperidin-4-yl, 4-methoxy-pyridin-2-yl, 3-azepan-l-yl- 2,2-dimethyl-propyl, l-(teri-butoxycarbonyl)azetidin-3-yl, 5-methyl-pyrazin-2-ylmethyl, 1-oxo- hexahydro-^4-thiopyran-4-yl, 2-(2-chloro-phenyl)-ethyl, 3-chloro-5-trifluoromethyl-pyridin-2- ylmethyl, 2-hydroxy- 1 -hydroxymethyl-ethyl, (l-methyl-pyrrolidin-2-yl)-pyridin-2-yl, 5-iluoro- 2-hydroxy-phenyl, methyl, 4-(methoxycarbonyl)-l-methylpiperidin-4-yl, 4-hydroxymethyl-l- methyl-piperidin-4-yl, 2-(2-hydroxymethyl-pyrrolidin-l-yl)-ethyl, 1-phenyl-cyclohexyl, 3- methyl- 1 , 1 -dioxo-tetrahydro- 1 λ6-ΰιίορ1ΐ6η-3 -yl, 1 -cyano-cyclohexyl, 1 -(5-methyl- [l,2,4]oxadiazol-3-yl)-cyclohexyl, 2-cyanopropan-2-yl, 3-methyl-l-phenylureido, 1-carbamoyl- 2,2-dimethyl -propyl, teri-butylamino, 2,2,2-trifluoro- 1,1 -dimethyl-ethyl, 2,2-dimethyl- 1- methylcarbamoyl -propyl, 1-cyclopropyl-ethyl, amino, N-teri-butylmethylsulfonamido, 1,1- dimethyl-prop-2-ynyl, 2-methyl-l-(phosphonooxy)propan-2-yl, l-teri-butyl-3-methylureido, 4- cyano-tetrahydro-pyran-4-yl, 1 -methyl-cyclobutyl, 1 -hydroxymethyl-2-methyl -propyl, cyclobutylamino, 1-cyano-cyclopentyl, cyano-dimethyl-methyl, 2,2-dimethyl-l- (methylcarbamoyl)-propyl, phenylamino, 1-hydroxymethyl-propyl, l-methyl-l-(lH-tetrazol-5- yl)-ethyl, 3,3-dimethyl- 1 -(phosphonooxy)butan-2-yl), 2-hydroxy- 1 -tetrahydro-pyran-4-yl -ethyl, 1 ,2-dimethyl -propyl, l-pyridin-2-yl-cyclobutyl, l-hydroxymethyl-2-phenyl-ethyl, 4- methylcarbamoyl-tetrahydro-pyran-4-yl, 1 -methyl- 1 -methylcarbamoyl -ethyl, 2,2-dimethyl- 1 - morpholin-4-ylmethyl-propyl, l-methylcarbamoyl-cyclopent-3-enyl, 2-methoxy-2-oxo-l- (pyridin-2-yl)ethyl, methylcarbamoyl-pyridin-2-yl-methyl, 1 -methylcarbamoyl -cyclopentyl, 1- (teri-butylcarbamoyl)-2,2-dimethyl-propyl, 2,2-dimethyl- l-(pyridin-2-ylcarbamoyl)-propyl, 1- (pyridin-2-ylcarbamoyl)-cyclobutyl, 1-methylcarbamoyl-cyclobutyl, 2-(methylamino)-2-oxo-l- phenylethyl, pyrrolidin-l-yl, piperidin-l-yl, 2,6-dimethyl-piperidin-l-yl, 1- cyclopropylcarbamoyl-2,2-dimethyl-propyl, 2,2-dimethyl-l-(2,2,2-triiluoro-ethylcarbamoyl)- propyl, 1-ethylcarbamoyl -2,2-dimethyl -propyl, 2-hydroxy- l-(tetrahydro-pyran-4-yl)-ethyl, N- cyclobutylmethylsulfonamido, N-phenylmethylsulfonamido, 1 -cyclopropyl-2-hydroxy-ethyl,
1 ,2,2-trimethyl-propyl, 2-oxo-l -(pyridin-2-yl)-2-(2,2,2-trifluoroethylamino)ethyl, 2,2-dimethyl- l-pyridin-2-yl -propyl, l-methoxy-3,3-dimethyl-l-oxobutan-2-yl, l-carboxy-2,2-dimethylpropyl, 1 -(hydroxy-methyl-carbamoyl)-2,2-dimethyl -propyl, 1 -dimethylcarbamoyl-2,2-dimethyl -propyl, 1 -(azetidine- 1 -carbonyl)-2,2-dimethyl -propyl, 1 -methoxycarbamoyl-2,2-dimethyl-propyl, 1 - (methoxy-methyl-carbamoyl)-2,2-dimethyl-propyl, l-teri-butoxycarbamoyl-2,2-dimethyl- propyl, 2,2-dimethyl-l-pyridin-2-yl-propyl, (l , l-dioxo-tetrahydro-^6-thiophen-3-yl)amino, 1- hydroxycarbamoyl-2,2-dimethyl-propyl, l-hydroxymethyl-2-methyl -butyl, l-(2-hydroxy- ethylcarbamoyl)-2,2-dimethyl-propyl, 1 , 1 -& s-hydroxymethyl-propyl, 1 -(5 -fluoro-pyridin-2-yl)- 2,2-dimethyl -propyl, 4-hydroxymethyl-tetrahydro-2H-pyran-4-yl, 1 -(2-(tert- butoxycarbonylamino)-3-methylbutanoyloxy)-2-methylpropan-2-yl, l-(2-amino-3- methylbutanoyloxy)-3-methylbutan-2-yl, l-(2-amino-3-methylbutanoyloxy)-2-methylpropan-2- yl, 2-hydroxy-l-(tetrahydro-2H-pyran-4-yl)-ethyl, l -(4-carboxybutanoyloxy)-2-methylpropan- 2-yl, 1 -(4-carboxybutanoyloxy) -3 -methylbutan-2-yl, 1 -(4-carboxybutanoyloxy) -3,3- dimethylbutan-2-yl, 1 -(2-amino-3-methylbutanoyloxy)-3,3-dimethylbutan-2-yl, 2-(2-amino-3- methylbutanoyloxy)-l -(tetrahydro-2H-pyran-4-yl)ethyl, 3,3,3-trifluoro-l -hydroxymethyl- propyl, 3-fluoro- 1 -methoxy-3-methyl- 1 -oxobutan-2-yl, 1 -ethoxy-4,4,4-trifluoro- 1 -oxo-3 - (trifluoromethyl)butan-2-yl, 2-lluoro-l -hydroxymethyl-2-methyl -propyl, l -(2-(tert- butoxycarbonylamino)-3-methylbutanoyloxy)-3,3-dimethylbutan-2-yl, 4,4,4-trifluoro-l - methoxy- 1 -oxobutan-2-yl, 2-lluoro- 1 , 1 -dimethyl-ethyl, 3-fluoro-2-(iluoromethyl)- 1 -methoxy- 1 - oxopropan-2-yl, 2-fluoro- 1 -fluoromethyl- 1 -hydroxymethyl-ethyl, 3-hydroxy- 1 -methoxy-2- methyl-l-oxopropan-2-yl, 2-carboxy-l-hydroxypropan-2-yl, 2,2,2-trifluoroethylamino, 1- fluoromethyl-2-methyl-propyl, 1 -fluoromethyl -2,2-dimethyl-propyl, 3-methyl-oxetan-3-yl, 1 - fluoromethyl-cyclobutyl, 1 , 1 -&/s-hydroxymethyl-2-methyl-propyl, 1 -trifluoromethyl- cyclopropyl, 1-methyl-cyclopropyl, and 1-triiluoromethyl-cyclobutyl.
In some embodiments, R8 is selected from: Η, 2-methyl-2-morpholin-4-yl -propyl, 1- hydroxymethyl-2,2-dimethyl -propyl, 2-(teri-butoxycarbonylamino)cyclohexyl, 1 -phenyl- cyclopropyl, 5-trifluoromethyl-pyridin-2-yl, 1 -methyl- 1-phenyl-ethyl, l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl, 1 -(methoxycarbonyl)cyclopropyl, tetrahydro-pyran-4-ylmethyl,
1 -(teri-butoxycarbonyl)piperidin-4-yl, 1 -(4-fluoro-phenyl)-cyclopropyl, 6-methyl-pyridin-3- ylmethyl, 2-hydroxy- 1 -phenyl-ethyl, l ,3,3-trimethyl-bicyclo[2.2.1]hept-2-yl, 2-hydroxy-l , l- dimethyl-ethyl, 2-(5-hydroxy-lH-indol-3-yl)-ethyl, 1-hydroxymethyl -cyclopropyl, 3-chloro-5- methyl-pyridin-2-yl, 6-fluoro-pyridin-3-yl, l -(3-fluoro-phenyl)-cyclobutyl, 2-methyl-pyridin-3- yl, 2-hydroxy- l-(tetrahydro-furan-3-yl)-ethyl, 2-(pyridin-3-yloxy)-propyl, carbamoyl -phenyl - methyl, 5-fluoro-2-methoxy-phenyl, 2-methoxy-ethyl, 2,3-dihydroxy-propyl, \ - tert- butoxycarbonyl)pyrrolidin-3-yl, 2-oxo-2-phenyl-ethyl, l-(3,3,3-trifluoro-propyl)-azetidin-3-yl, 2-hydroxy- 1 -pyridin-2-yl -ethyl, 3-hydroxy-pyridin-4-yl, 1 -methyl- 1 -pyridin-4-yl -ethyl, 1- hydroxymethyl-2-3H-imidazol-4-yl-ethyl, 4-hydroxy-3-methoxy-benzyl, 5-fluoro-2-oxo-2,3- dihydro-pyrimidin-4-yl, l -(4-fluoro-phenyl)-3-hydroxy-propyl, l-pyridin-4-yl-cyclopropyl, 2- hydroxy-l -pyridin-3-yl -ethyl, l , l-dimethyl-2-(4-methyl-piperidin-l-yl)-ethyl, 6-cyano-pyridin- 3-yl, 5-fluoro-pyridin-2-yl, 2,5-dimethyl-benzyl, 1 -isopropyl-piperidin-4-yl, 2-methoxy-l- methoxymethyl -ethyl, 2,3-dimethyl-benzyl, l-pyridin-2-yl -ethyl, 6-chloro-pyridin-3-ylmethyl, 3-methyl-pyridin-2-yl, 2-hydroxy-indan-l-yl, 1-hydroxymethyl-cyclobutyl, 2-(4-chloro-phenyl)- 1 , 1 -dimethyl -ethyl, 3-hydroxy-pyridin-2-ylmethyl, 3-methyl-pyridin-4-yl, 5-teri-butyl-isoxazol- 3-yl, l-(6-methoxy-pyridin-3-yl)-l -methyl-ethyl, lH-benzoimidazol-2-yl, tert-b tyl, 4-phenyl- thiazol-2-yl, l-(2-lluoro-phenyl)-cyclobutyl, 2,4-dimethoxy-benzyl, 5-bromo-3-methyl-pyridin-
2- yl, 4-benzyl-morpholin-2-ylmethyl, 6-trilluoromethyl-pyridin-3-ylmethyl, tetrahydro-furan-3- yl, pyridin-3-ylmethyl, pyrazin-2-yl, piperidin-4-yl, l-(6-hydroxy-pyridin-3-yl)-l-methyl-ethyl, 1 -methyl- 1 -pyridin-2-yl-ethyl, 1-hydroxymethyl-cyclopentyl, l-aza-bicyclo[2.2.2]oct-3-yl, 2- hydroxy-cyclopentyl, 2-hydroxy-l-(hydroxymethyl)-propyl, l-(teri-butoxycarbonyl)piperidin-4- yl)methyl, 3,5-dimethoxy-phenyl, 6-fluoro-4H-benzo[l,3]dioxin-8-ylmethyl, 4,6-dimethyl- pyridin-2-yl, l,l-dimethyl-2-morpholin-4-yl-ethyl, 2-hydroxy-cyclohexylmethyl, l-(4-methoxy- phenyl)-cyclopropyl, l-ethyl-pyrrolidin-2-ylmethyl, indan-l-yl, pyrimidin-4-yl, 2-fluoro-4- methanesulfonyl-phenyl, 6-hydroxy-pyridin-2-yl, cyclobutyl, l-(3-methoxy-phenyl)- cyclopropyl, l-(3,3,3-trilluoro-propyl)-pyrrolidin-3-yl, 2-hydroxy-pyridin-3-yl, 4- dilluoromethoxy-benzyl, 1-piperidin-l-yl-cyclopentylmethyl, 3-hydroxy-3-methyl-butyl, l-(4- fluoro-phenyl)-cyclobutyl, 4-methoxy-benzyl, pyridin-2-yl, 2-hydroxy-2-phenyl-ethyl, 2- hydroxymethyl-2,3-dihydro-indol-l-yl, 3-hydroxy-pyridin-2-yl, 4-dimethylamino-tetrahydro- pyran-4-ylmethyl, 2-(4-lluoro-phenyl)-ethyl, l-(2-methoxy-ethyl)-piperidin-4-ylmethyl, 2- morpholin-4-yl-ethyl, l-(teri-butoxycarbonyl)-4-carboxypiperidin-4-yl, quinolin-3-yl, 1- morpholin-4-ylmethyl-cyclopentyl, 1 ,4-dimethyl-lH-pyrrol-2-ylmethyl, 2-hydroxy-2-pyridin-2- yl -ethyl, pyridin-3-yl, 2-dimethylamino-benzyl, tetrahydro-thiopyran-4-yl, 1-ra-tolyl- cyclopropyl, l-(2-methoxy-ethyl)-piperidin-3-yl, 5-methoxy-pyridin-2-ylmethyl, 2-hydroxy-l- pyridin-4-yl-ethyl, 4-methyl-pyridin-2-yl, 4-carboxy-2-fluorophenyl, 6-methanesulfonyl- pyridin-3-yl, 1-o-tolyl -cyclobutyl, l,l-dimethyl-2-pyrrolidin-l-yl-ethyl, 2,6-dimethoxy-pyridin-
3- yl, pyridin-2-yl, 4-hydroxymethyl-tetrahydro-pyran-4-yl, 2-(lH-imidazol-4-yl)-ethyl, 3- fluoro-pyridin-4-yl, 1 -carbamoyl-2-phenyl-ethyl, oxazol-4-ylmethyl, 6-methoxy-pyrimidin-4-yl, 1 , 1 -dioxo-hexahydro- 1 λ6-thiopyran-4-yl, 1 -methoxy- 1 -oxo-3-phenylpropan-2-yl, 1 -(2-methoxy- ethyl)-pyrrolidin-3-yl, l-(6-methyl-pyridin-2-yl)-ethyl, 2-hydroxy-l-(4-hydroxy-phenyl)-ethyl, 2-methoxy-pyridin-4-yl, l-pyridin-2-yl-cyclopropyl, l-(teri-butoxycarbonyl)piperidin-3-yl, 3- methyl-pyridin-2-ylmethyl, 3-lluoro-pyridin-2-yl, 1 -pyridin-4-yl-cyclobutyl, 2-carboxy-l- (pyridin-3-yl)ethyl, 2-hydroxy-l -methyl-ethyl, l-(methoxycarbonyl)cyclohexyl, 3- hydroxymethyl-pyridin-4-yl, 2-hydroxy- 1 -phenyl -ethyl, 3-dimethylamino-tetrahydro-thiophen- 3-ylmethyl, tetrahydro-pyran-4-yl, 5-chloro-pyridin-2-yl, 1 -carbamoyl -cyclobutyl, 5-lluoro-2- methyl-benzyl, 2-morpholin-4-yl-2-pyridin-3-yl-ethyl, l-(3-methoxy-phenyl)-cyclobutyl, 5- methyl-pyridin-2-yl, l-(tetrahydro-furan-2-yl)methyl, 1-dimethylaminomethyl-cyclopentyl, 2- (4-lluoro-phenyl)-l-methyl-ethyl, benzothiazol-2-yl, l-(2-fluoro-phenyl)-cyclopropyl, l-(2- methoxy-ethyl)-piperidin-4-yl, 2-hydroxy-l-pyridin-4-yl-ethyl, l-(3,3,3-trifluoro-propyl)- azetidin-3-ylmethyl, 6-pyrrolidin- 1 -yl-pyridin-2-ylmethyl, 1 , 1 -dioxo-tetrahydro- 1 λ6-ώίορ1ΐ6η-3 - yl, 2,3-dimethoxy-benzyl, 3-cyano-5-methyl-pyridin-2-yl, 2,3-dihydro-benzofuran-3-yl, 1- hydroxymethyl-cyclohexyl, 2,5-difluoro-benzyl, 4-dimethylamino-benzyl, 4-hydroxy-l,l-dioxo- tetrahydro-^6-thiophen-3-yl, 4-triiluoromethyl-pyridin-2-yl, 5-methyl-thiazol-2-yl, 6- triiluoromethyl-pyridin-3-yl, 5-hydroxy-lH-pyrazol-3-yl, 2-thiomorpholin-4-yl-ethyl, benzo[l,3]dioxol-5-ylmethyl, 2-amino-cyclohexyl, 3-dimethylamino-l-oxo-tetrahydro-^4- thiophen-3-ylmethyl, 4-methyl-morpholin-2-ylmethyl, l-(2-methoxy-phenyl)-cyclopropyl, 2- carboxy-l-(4-fluorophenyl)propan-2-yl, pyridin-2-ylmethyl, pyridazin-3-yl, 4-pyridin-2-yl- thiazol-2-yl, l-(3,3,3-trifluoro-propyl)-piperidin-4-ylmethyl, 6-chloro-2-methyl-pyridin-3-yl, 6- hydroxy-pyridin-3-yl, 3-triiluoromethoxy-benzyl, l-morpholin-4-yl-cyclopentylmethyl, 1- pyridin-2-yl-cyclobutylmethyl, 2-hydroxy-l-hydroxymethyl-l -methyl -ethyl, 5-hydroxymethyl- pyridin-2-yl, 5-lluoro-l-oxy-pyridin-2-yl, 6-methoxy-pyridin-2-yl, 1 -methyl- l-pyridin-3-yl- ethyl, 6-methyl-pyridin-3-yl, 2-hydroxy-l-hydroxymethyl-propyl, 2-chloro-pyridin-3-yl, 3- methyl-3H-imidazol-4-ylmethyl, 6-fluoro-pyridin-2-yl, 3-dimethylamino-benzyl, 6-morpholin- 4-yl-pyridin-3-yl, 1-o-tolyl-cyclopropyl, l-(3,3,3-trilluoro-propyl)-piperidin-3-yl, 6- methanesulfonyl-4-methyl-pyridin-3-yl, 2-methyl-quinolin-4-yl, l-(3,3,3-trifluoro-propyl)- pyrrolidin-3-ylmethyl, benzooxazol-2-yl, 1 -methyl -piperidin-4-ylmethyl, 2-(2,6-dimethyl- morpholin-4-yl)-2-methyl-propyl, 1 -methyl -piperidin-2-ylmethyl, pyridin-4-ylmethyl, 4- hydroxymethyl-pyridin-2-yl, 5,7-dimethyl-pyrazolo[l,5-a]pyrimidin-2-yl, 6,6-dimethyl- bicyclo[3.1.1]hept-2-ylmethyl, l-(5-methyl-pyridin-2-yl)-ethyl, 2-lluoro-pyridin-3-yl, morpholin-4-yl, 2-hydroxy-2-pyridin-4-yl-ethyl, pyridin-4-yl, 4-hydroxy-pyridin-2-yl, 3- methoxy-benzyl, 1 -oxy-pyridin-2-yl, 1-ethyl-propyl, 6-carboxypyridin-2-yl, 1,2,2,6,6- pentamethyl-piperidin-4-yl, 6-methoxy-pyridin-3-yl, cyclopentyl, morpholin-2-ylmethyl, 1- (teri-butoxycarbonyl)azetidin-3-yl)methyl, 2-dimethylamino-2-pyridin-3-yl-ethyl, l-(4- methoxy-phenyl)-cyclobutyl, 3-hydroxy-benzyl, tetrahydro-furan-2-ylmethyl, 4-(tert- butoxycarbonyl)morpholin-2-ylmethyl, l-(3-lluoro-phenyl)-cyclopropyl, 2-o-tolyl-ethyl, 3- hydroxymethyl-l-isobutyl-pyrrolidin-3-yl, l-(2-methoxy-ethyl)-azetidin-3-yl, 6-morpholin-4-yl- pyridin-2-ylmethyl, 1 , 1 -dioxo-tetrahydro- 1 λ6-ΰι1ορ1ΐ6η-3 -ylmethyl, 2-(4-fluoro-phenoxy)-ethyl, 2,6-dimethyl-pyrimidin-4-yl, l-hydroxymethyl-2-(3H-imidazol-4-yl)-ethyl, 4-methanesulfonyl- benzyl, l-pyridin-3-yl-cyclopropyl, 9-methyl-9-aza-bicyclo[3.3.1]non-l-yl, 2,6-dimethyl- pyridin-3-yl, 4-hydroxy-benzyl, 2-oxo-2 -phenyl -ethyl), 1 -methyl- lH-pyrazol-3-ylmethyl, pyrimidin-2-yl, 5-methyl-pyrazin-2-yl, l-(2-methoxy-pyridin-3-yl)-l -methyl-ethyl, 6- methanesulfonyl-2-methyl-pyridin-3-yl, 2-hydroxy-benzyl, 6-bromo-2-methyl-pyridin-3-yl, 2- methoxy-pyridin-3-yl, l-(4-chloro-phenyl)-cyclobutyl, 2-(pyridine-2-sulfonyl)-ethyl, 1-pyridin- 2-yl-cyclopropylmethyl, 1 -methyl- 1, 2,3, 4-tetrahydro-quinolin-7-yl, benzyl, 3,5-dimethyl- pyrazin-2-yl, l-(2-hydroxy-pyridin-3-yl)-l-methyl-ethyl, l-(ethoxycarbonyl)cyclobutyl, \-{tert- butoxycarbonyl)pyrrolidin-3-ylmethyl, quinolin-4-ylmethyl, 2-(4-fluoro-phenyl)-l-(2-hydroxy- ethylcarbamoyl)-l -methyl-ethyl, 2-morpholin-4-yl-pyridin-3-yl, 6-methyl-pyridin-2-yl, 3- diiluoromethoxy-benzyl, 4-hydroxy- 1 -methyl-piperidin-4-ylmethyl, 1 -(2,5-dimethylpyrrolidine- l-carbonyl)cyclopentyl, 2-methoxy-benzyl, 6-methyl-pyridin-2-ylmethyl, 3-chloro-pyridin-4-yl, 2-carboxypropan-2-yl, 6-chloro-pyridin-3-yl, 2-hydroxy-2-pyridin-3-yl -ethyl, l-/?-tolyl- cyclopropyl, l-(3,3,3-triiluoro-propyl)-piperidin-4-yl, 4-methoxy-pyridin-2-yl, 3-azepan-l-yl- 2,2-dimethyl-propyl, l-(teri-butoxycarbonyl)azetidin-3-yl, 5-methyl-pyrazin-2-ylmethyl, 1-oxo- hexahydro-^4-thiopyran-4-yl, 2-(2-chloro-phenyl)-ethyl, 3-chloro-5-trifluoromethyl-pyridin-2- ylmethyl, 2-hydroxy-l-hydroxymethyl-ethyl, (l-methyl-pyrrolidin-2-yl)-pyridin-2-yl, 5-iluoro- 2-hydroxy-phenyl, methyl, 4-(methoxycarbonyl)-l-methylpiperidin-4-yl, 4-hydroxymethyl-l- methyl-piperidin-4-yl, 2-(2-hydroxymethyl-pyrrolidin-l-yl)-ethyl, 1-phenyl-cyclohexyl, 3- methyl- 1 , 1 -dioxo-tetrahydro- 1 λ6-ΰιίορ1ΐ6η-3 -yl, 1 -cyano-cyclohexyl, 1 -(5-methyl- [l,2,4]oxadiazol-3-yl)-cyclohexyl, 2-cyanopropan-2-yl, 3-methyl-l-phenylureido, 1-carbamoyl- 2,2-dimethyl -propyl, teri-butylamino, 2,2,2-trifluoro- 1,1 -dimethyl-ethyl, 2,2-dimethyl- 1- methylcarbamoyl -propyl, 1-cyclopropyl-ethyl, amino, N-teri-butylmethylsulfonamido, 1,1- dimethyl-prop-2-ynyl, 2-methyl-l-(phosphonooxy)propan-2-yl, l-teri-butyl-3-methylureido, 4- cyano-tetrahydro-pyran-4-yl, 1 -methyl-cyclobutyl, 1 -hydroxymethyl-2-methyl -propyl, cyclobutylamino, 1-cyano-cyclopentyl, cyano-dimethyl-methyl, 2,2-dimethyl- 1- (methylcarbamoyl)-propyl, phenylamino, 1-hydroxymethyl-propyl, l-methyl-l-(lH-tetrazol-5- yl)-ethyl, 3,3-dimethyl- 1 -(phosphonooxy)butan-2-yl), 2-hydroxy- 1 -tetrahydro-pyran-4-yl -ethyl, 1 ,2-dimethyl -propyl, l-pyridin-2-yl-cyclobutyl, l-hydroxymethyl-2-phenyl-ethyl, 4- methylcarbamoyl-tetrahydro-pyran-4-yl, 1 -methyl- 1 -methylcarbamoyl -ethyl, 2,2-dimethyl- 1 - morpholin-4-ylmethyl-propyl, l-methylcarbamoyl-cyclopent-3-enyl, 2-methoxy-2-oxo-l- (pyridin-2-yl)ethyl, methylcarbamoyl-pyridin-2-yl-methyl, 1 -methylcarbamoyl -cyclopentyl, 1- (teri-butylcarbamoyl)-2,2-dimethyl-propyl, 2,2-dimethyl- l-(pyridin-2-ylcarbamoyl)-propyl, 1- (pyridin-2-ylcarbamoyl)-cyclobutyl, 1-methylcarbamoyl-cyclobutyl, 2-(methylamino)-2-oxo-l- phenylethyl, pyrrolidin-l-yl, piperidin-l-yl, 2,6-dimethyl-piperidin-l-yl, 1- cyclopropylcarbamoyl-2,2-dimethyl-propyl, 2,2-dimethyl-l-(2,2,2-trilluoro-ethylcarbamoyl)- propyl, 1-ethylcarbamoyl -2,2-dimethyl -propyl, 2-hydroxy- l-(tetrahydro-pyran-4-yl)-ethyl, N- cyclobutylmethylsulfonamido, N-phenylmethylsulfonamido, 1 -cyclopropyl-2-hydroxy-ethyl,
1 ,2,2-trimethyl-propyl, 2-oxo-l -(pyridin-2-yl)-2-(2,2,2-trifluoroethylamino)ethyl, 2,2-dimethyl- l-pyridin-2-yl -propyl, l-methoxy-3,3-dimethyl-l-oxobutan-2-yl, l-carboxy-2,2-dimethylpropyl, 1 -(hydroxy-methyl-carbamoyl)-2,2-dimethyl -propyl, 1 -dimethylcarbamoyl-2,2-dimethyl -propyl, 1 -(azetidine- 1 -carbonyl)-2,2-dimethyl -propyl, 1 -methoxycarbamoyl-2,2-dimethyl-propyl, 1 - (methoxy-methyl-carbamoyl)-2,2-dimethyl-propyl, 1 -teri-butoxycarbamoyl-2,2-dimethyl- propyl, and 2,2-dimethyl- 1 -pyridin-2-yl -propyl. In some embodiments, R is H. In some embodiments, R is 2-methyl-2-morpholin-4-yl- propyl. In some embodiments, R8 is l-hydroxymethyl-2,2-dimethyl-propyl. In some
embodiments, R8 is 2-(teri-butoxycarbonylamino)cyclohexyl. In some embodiments, R8 is 1- phenyl-cyclopropyl. In some embodiments, R8 is 5-trifluoromethyl-pyridin-2-yl. In some embodiments, R8 is 1 -methyl- 1-phenyl-ethyl. In some embodiments, R8 is l-(2-methoxy-ethyl)- pyrrolidin-3-ylmethyl. In some embodiments, R8 is l-(methoxycarbonyl)cyclopropyl. In some embodiments, R8 is tetrahydro-pyran-4-ylmethyl. In some embodiments, R8 is
1- (teri-butoxycarbonyl)piperidin-4-yl. In some embodiments, R8 is l-(4-fluoro-phenyl)- cyclopropyl. In some embodiments, R8 is 6-methyl-pyridin-3-ylmethyl. In some embodiments, R8 is 2-hydroxy- 1 -phenyl-ethyl. In some embodiments, R8 is l ,3,3-trimethyl-bicyclo[2.2.1]hept-
2- yl. In some embodiments, R8 is 2-hydroxy- 1 , 1 -dimethyl -ethyl. In some embodiments, R8 is 2- (5-hydroxy-lH-indol-3-yl)-ethyl. In some embodiments, R8 is 1-hydroxymethyl-cyclopropyl. In some embodiments, R8 is 3-chloro-5 -methyl -pyridin-2-yl. In some embodiments, R8 is 6-fluoro- pyridin-3-yl. In some embodiments, R8 is l-(3-iluoro-phenyl)-cyclobutyl. In some
embodiments, R8 is 2-methyl-pyridin-3-yl. In some embodiments, R8 is 2-hydroxy-l -
(tetrahydro-furan-3-yl)-ethyl. In some embodiments, R8 is 2-(pyridin-3-yloxy)-propyl. In some embodiments, R8 is carbamoyl-phenyl-methyl. In some embodiments, R8 is 5-fluoro-2-methoxy- phenyl. In some embodiments, R8 is 2-methoxy-ethyl. In some embodiments, R8 is 2,3- dihydroxy-propyl. In some embodiments, R8 is l-(teri-butoxycarbonyl)pyrrolidin-3-yl. In some embodiments, R8 is 2-oxo-2-phenyl-ethyl. In some embodiments, R8 is l-(3,3,3-trilluoro- propyl)-azetidin-3-yl. In some embodiments, R8 is 2-hydroxy- l-pyridin-2-yl-ethyl. In some embodiments, R8 is 3-hydroxy-pyridin-4-yl. In some embodiments, R8 is 1 -methyl- l -pyridin-4- yl -ethyl. In some embodiments, R8 is l-hydroxymethyl-2-3H-imidazol-4-yl-ethyl. In some embodiments, R8 is 4-hydroxy-3-methoxy-benzyl. In some embodiments, R8 is 5-fluoro-2-oxo- 2,3-dihydro-pyrimidin-4-yl. In some embodiments, R8 is l-(4-lluoro-phenyl)-3-hydroxy-propyl. In some embodiments, R8 is l-pyridin-4-yl-cyclopropyl. In some embodiments, In some embodiments, R8 is 2-hydroxy- l-pyridin-3-yl-ethyl. In some embodiments, R8 is 1 ,1 -dimethyl - 2-(4-methyl-piperidin-l -yl)-ethyl. In some embodiments, R8 is 6-cyano-pyridin-3-yl. In some embodiments, R8 is 5-fluoro-pyridin-2-yl. In some embodiments, R8 is 2,5-dimethyl-benzyl. In some embodiments, R8 is l-isopropyl-piperidin-4-yl. In some embodiments, R8 is 2-methoxy-l - methoxymethyl-ethyl. In some embodiments, R8 is 2,3-dimethyl-benzyl. In some embodiments, R8 is l-pyridin-2-yl-ethyl. In some embodiments, R8 is 6-chloro-pyridin-3-ylmethyl. In some embodiments, R8 is 3-methyl-pyridin-2-yl. In some embodiments, R8 is 2-hydroxy-indan-l-yl. In some embodiments, R8 is (15,25)-2-hydroxy-indan-l-yl. In some embodiments, R8 is (15,2R)- 2-hydroxy-indan-l-yl. In some embodiments, R8 is (lR,2R)-2-hydroxy-indan-l-yl. In some embodiments, R8 is (lR,25)-2-hydroxy-indan-l -yl. In some embodiments, R8 is 1- hydroxymethyl-cyclobutyl. In some embodiments, R8 is 2-(4-chloro-phenyl)-l , l-dimethyl-ethyl. In some embodiments, R is 3-hydroxy-pyridin-2-ylmethyl. In some embodiments, R is 3- methyl-pyridin-4-yl. In some embodiments, R8 is 5-teri-butyl-isoxazol-3-yl. In some embodiments, R8 is l-(6-methoxy-pyridin-3-yl)-l-methyl-ethyl. In some embodiments, R8 is lH-benzoimidazol-2-yl. In some embodiments, R8 is tert-butyl. In some embodiments, R8 is 4- phenyl-thiazol-2-yl. In some embodiments, R8 is l-(2-fluoro-phenyl)-cyclobutyl. In some embodiments, R8 is 2,4-dimethoxy-benzyl. In some embodiments, R8 is 5-bromo-3-methyl- pyridin-2-yl. In some embodiments, R8 is 4-benzyl-morpholin-2-ylmethyl. In some
embodiments, R8 is 6-trifluoromethyl-pyridin-3-ylmethyl. In some embodiments, R8 is tetrahydro-furan-3-yl. In some embodiments, R8 is pyridin-3-ylmethyl. In some embodiments, R8 is pyrazin-2-yl. In some embodiments, R8 is piperidin-4-yl. In some embodiments, R8 is l-(6- hydroxy-pyridin-3-yl)-l-methyl-ethyl. In some embodiments, R8 is 1 -methyl- l-pyridin-2-yl- ethyl. In some embodiments, R8 is 1-hydroxymethyl-cyclopentyl. In some embodiments, R8 is 1- aza-bicyclo[2.2.2]oct-3-yl. In some embodiments, R8 is 2-hydroxy-cyclopentyl. In some embodiments, R8 is 2-hydroxy- l-(hydroxymethyl)-propyl. In some embodiments, R8 is \-{tert- butoxycarbonyl)piperidin-4-yl)methyl. In some embodiments, R8 is 3,5-dimethoxy-phenyl. In some embodiments, R8 is 6-fluoro-4H-benzo[l,3]dioxin-8-ylmethyl. In some embodiments, R8 is 4,6-dimethyl-pyridin-2-yl. In some embodiments, R8 is l,l-dimethyl-2-morpholin-4-yl-ethyl. In some embodiments, R8 is 2-hydroxy-cyclohexylmethyl. In some embodiments, R8 is l-(4- methoxy-phenyl)-cyclopropyl. In some embodiments, R8 is l-ethyl-pyrrolidin-2-ylmethyl. In some embodiments, R8 is indan-l-yl. In some embodiments, R8 is pyrimidin-4-yl. In some embodiments, R8 is 2-fluoro-4-methanesulfonyl-phenyl. In some embodiments, R8 is 6-hydroxy- pyridin-2-yl. In some embodiments, R8 is cyclobutyl. In some embodiments, R8 is l-(3- methoxy-phenyl)-cyclopropyl. In some embodiments, R8 is l-(3,3,3-trifluoro-propyl)- pyrrolidin-3-yl. In some embodiments, R8 is 2-hydroxy-pyridin-3-yl. In some embodiments, R8 is 4-diiluoromethoxy-benzyl. In some embodiments, R8 is 1-piperidin-l-yl-cyclopentylmethyl.
In some embodiments, R8 is 3-hydroxy-3-methyl-butyl. In some embodiments, R8 is l-(4-lluoro- phenyl)-cyclobutyl. In some embodiments, R8 is 4-methoxy-benzyl. In some embodiments, R8 is pyridin-2-yl. In some embodiments, R8 is 2-hydroxy-2-phenyl-ethyl. In some embodiments, R8 is 2-hydroxymethyl-2,3-dihydro-indol-l-yl. In some embodiments, R8 is 3-hydroxy-pyridin-2- yl. In some embodiments, R8 is 4-dimethylamino-tetrahydro-pyran-4-ylmethyl. In some embodiments, R8 is 2-(4-fluoro-phenyl)-ethyl. In some embodiments, R8 is l-(2-methoxy-ethyl)- piperidin-4-ylmethyl. In some embodiments, R8 is 2-morpholin-4-yl-ethyl. In some
embodiments, R8 is l-(teri-butoxycarbonyl)-4-carboxypiperidin-4-yl. In some embodiments, R8 is quinolin-3-yl. In some embodiments, R8 is l-morpholin-4-ylmethyl-cyclopentyl. In some embodiments, R8 is l,4-dimethyl-lH-pyrrol-2-ylmethyl. In some embodiments, R8 is 2-hydroxy- 2-pyridin-2-yl-ethyl. In some embodiments, R8 is pyridin-3-yl. In some embodiments, R8 is 2- dimethylamino-benzyl. In some embodiments, R8 is tetrahydro-thiopyran-4-yl. In some embodiments, R is 1-ra-tolyl-cyclopropyl. In some embodiments, R is l-(2-methoxy-ethyl)- piperidin-3-yl. In some embodiments, R8 is 5-methoxy-pyridin-2-ylmethyl. In some
embodiments, R8 is 2-hydroxy-l-pyridin-4-yl-ethyl. In some embodiments, R8 is 4-methyl- pyridin-2-yl. In some embodiments, R8 is 4-carboxy-2-fluorophenyl. In some embodiments, R8 is 6-methanesulfonyl-pyridin-3-yl. In some embodiments, R8 is 1-o-tolyl-cyclobutyl. In some embodiments, R8 is l ,l-dimethyl-2-pyrrolidin-l-yl-ethyl. In some embodiments, R8 is 2,6- dimethoxy-pyridin-3-yl. In some embodiments, R8 is pyridin-2-yl. In some embodiments, R8 is 4-hydroxymethyl-tetrahydro-pyran-4-yl. In some embodiments, R8 is 2-(lH-imidazol-4-yl)- ethyl. In some embodiments, R8 is 3-fluoro-pyridin-4-yl. In some embodiments, R8 is 1- carbamoyl-2-phenyl-ethyl. In some embodiments, R8 is oxazol-4-ylmethyl. In some
embodiments, R8 is 6-methoxy-pyrimidin-4-yl. In some embodiments, R8 is 1 ,1-dioxo- hexahydro-^6-thiopyran-4-yl. In some embodiments, R8 is l-methoxy-l-oxo-3-phenylpropan- 2-yl. In some embodiments, R8 is l-(2-methoxy-ethyl)-pyrrolidin-3-yl. In some embodiments, R8 is l-(6-methyl-pyridin-2-yl)-ethyl. In some embodiments, R8 is 2-hydroxy-l -(4-hydroxy- phenyl)-ethyl. In some embodiments, R8 is 2-methoxy-pyridin-4-yl. In some embodiments, R8 is l-pyridin-2-yl-cyclopropyl. In some embodiments, R8 is l-(teri-butoxycarbonyl)piperidin-3-yl. In some embodiments, R8 is 3-methyl-pyridin-2-ylmethyl. In some embodiments, R8 is 3-fluoro- pyridin-2-yl. In some embodiments, R8 is l-pyridin-4-yl-cyclobutyl. In some embodiments, R8 is 2-carboxy-l -(pyridin-3-yl)ethyl. In some embodiments, R8 is 2-hydroxy-l -methyl-ethyl. In some embodiments, R8 is l-(methoxycarbonyl)cyclohexyl. In some embodiments, R8 is 3- hydroxymethyl-pyridin-4-yl. In some embodiments, R8 is 2-hydroxy-l -phenyl-ethyl. In some embodiments, R8 is 3-dimethylamino-tetrahydro-thiophen-3-ylmethyl. In some embodiments, R8 is tetrahydro-pyran-4-yl. In some embodiments, R8 is 5-chloro-pyridin-2-yl. In some embodiments, R8 is 1-carbamoyl-cyclobutyl. In some embodiments, R8 is 5-fluoro-2-methyl- benzyl. In some embodiments, R8 is 2-morpholin-4-yl-2-pyridin-3-yl-ethyl. In some
embodiments, R8 is l-(3-methoxy-phenyl)-cyclobutyl. In some embodiments, R8 is 5-methyl- pyridin-2-yl. In some embodiments, R8 is l-(tetrahydro-furan-2-yl)methyl. In some
embodiments, R8 is 1-dimethylaminomethyl-cyclopentyl. In some embodiments, R8 is 2-(4- lluoro-phenyl)-l -methyl-ethyl. In some embodiments, R8 is benzothiazol-2-yl. In some embodiments, R8 is l-(2-fluoro-phenyl)-cyclopropyl. In some embodiments, R8 is l-(2- methoxy-ethyl)-piperidin-4-yl. In some embodiments, R8 is 2-hydroxy-l -pyridin-4-yl-ethyl. In some embodiments, R8 is l-(3,3,3-trilluoro-propyl)-azetidin-3-ylmethyl. In some embodiments, R8 is 6-pyrrolidin-l-yl-pyridin-2-ylmethyl. In some embodiments, R8 is 1 ,1-dioxo-tetrahydro- ^6-thiophen-3-yl. In some embodiments, R8 is 2,3-dimethoxy-benzyl. In some embodiments, R8 is 3-cyano-5-methyl-pyridin-2-yl. In some embodiments, R8 is 2,3-dihydro-benzofuran-3-yl. In some embodiments, R8 is 1-hydroxymethyl-cyclohexyl. In some embodiments, R8 is 2,5- dilluoro-benzyl. In some embodiments, R8 is 4-dimethylamino-benzyl. In some embodiments, R8 is 4-hydroxy-l , l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R8 is 4- trifluoromethyl-pyridin-2-yl. In some embodiments, R8 is 5-methyl-thiazol-2-yl. In some embodiments, R8 is 6-trifluoromethyl-pyridin-3-yl. In some embodiments, R8 is 5-hydroxy-lH- pyrazol-3-yl. In some embodiments, R8 is 2-thiomorpholin-4-yl-ethyl. In some embodiments, R8 is benzo[l ,3]dioxol-5-ylmethyl. In some embodiments, R8 is 2-amino-cyclohexyl. In some embodiments, R8 is 3-dimethylamino-l-oxo-tetrahydro-^4-thiophen-3-ylmethyl. In some embodiments, R8 is 4-methyl-morpholin-2-ylmethyl. In some embodiments, R8 is l-(2-methoxy- phenyl)-cyclopropyl. In some embodiments, R8 is 2-carboxy-l-(4-fluorophenyl)propan-2-yl. In some embodiments, R8 is pyridin-2-ylmethyl. In some embodiments, R8 is pyridazin-3-yl. In some embodiments, R8 is 4-pyridin-2-yl-thiazol-2-yl. In some embodiments, R8 is l-(3,3,3- trifluoro-propyl)-piperidin-4-ylmethyl. In some embodiments, R8 is 6-chloro-2-methyl-pyridin-
3- yl. In some embodiments, R8 is 6-hydroxy-pyridin-3-yl. In some embodiments, R8 is 3- trifluoromethoxy-benzyl. In some embodiments, R8 is l-morpholin-4-yl-cyclopentylmethyl. In some embodiments, R8 is l-pyridin-2-yl-cyclobutylmethyl. In some embodiments, R8 is 2- hydroxy- 1 -hydroxymethyl-l -methyl-ethyl. In some embodiments, R8 is 5-hydroxymethyl- pyridin-2-yl. In some embodiments, R8 is 5-fluoro-l-oxy-pyridin-2-yl. In some embodiments, R8 is 6-methoxy-pyridin-2-yl. In some embodiments, R8 is 1 -methyl- l-pyridin-3-yl-ethyl. In some embodiments, R8 is 6-methyl-pyridin-3-yl. In some embodiments, R8 is 2-hydroxy-l - hydroxymethyl-propyl. In some embodiments, R8 is 2-chloro-pyridin-3-yl. In some
embodiments, R8 is 3-methyl-3H-imidazol-4-ylmethyl. In some embodiments, R8 is 6-fluoro- pyridin-2-yl. In some embodiments, R8 is 3-dimethylamino-benzyl. In some embodiments, R8 is 6-morpholin-4-yl-pyridin-3-yl. In some embodiments, R8 is 1-o-tolyl-cyclopropyl. In some embodiments, R8 is l-(3,3,3-trifluoro-propyl)-piperidin-3-yl. In some embodiments, R8 is 6- methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R8 is 2-methyl-quinolin-4-yl. In some embodiments, R8 is l-(3,3,3-trilluoro-propyl)-pyrrolidin-3-ylmethyl. In some
embodiments, R8 is benzooxazol-2-yl. In some embodiments, R8 is l-methyl-piperidin-4- ylmethyl. In some embodiments, R8 is 2-(2,6-dimethyl-morpholin-4-yl)-2-methyl-propyl. In some embodiments, R8 is l-methyl-piperidin-2-ylmethyl. In some embodiments, R8 is pyridin-4- ylmethyl. In some embodiments, R8 is 4-hydroxymethyl-pyridin-2-yl. In some embodiments, R8 is 5,7-dimethyl-pyrazolo[l ,5-a]pyrimidin-2-yl. In some embodiments, R8 is 6,6-dimethyl- bicyclo[3.1.1]hept-2-ylmethyl. In some embodiments, R8 is l-(5-methyl-pyridin-2-yl)-ethyl. In some embodiments, R8 is 2-iluoro-pyridin-3-yl. In some embodiments, R8 is morpholin-4-yl. In some embodiments, R8 is 2-hydroxy-2-pyridin-4-yl-ethyl. In some embodiments, R8 is pyridin-
4- yl. In some embodiments, R8 is 4-hydroxy-pyridin-2-yl. In some embodiments, R8 is 3- methoxy-benzyl. In some embodiments, R8 is l-oxy-pyridin-2-yl. In some embodiments, R8 is 1 -ethyl -propyl. In some embodiments, R8 is 6-carboxypyridin-2-yl. In some embodiments, R8 is 1 , 2,2,6, 6-pentamethyl-piperidin-4-yl. In some embodiments, R8 is 6-methoxy-pyridin-3-yl. In some embodiments, R is cyclopentyl. In some embodiments, R is morpholin-2-ylmethyl. In some embodiments, R8 is l-(teri-butoxycarbonyl)azetidin-3-yl)methyl. In some embodiments, R8 is 2-dimethylamino-2-pyridin-3-yl-ethyl. In some embodiments, R8 is l-(4-methoxy-phenyl)- cyclobutyl. In some embodiments, R8 is 3-hydroxy-benzyl. In some embodiments, R8 is tetrahydro-furan-2-ylmethyl. In some embodiments, R8 is 4-(teri-butoxycarbonyl)morpholin-2- ylmethyl. In some embodiments, R8 is l-(3-fluoro-phenyl)-cyclopropyl. In some embodiments, R8 is 2-o-tolyl-ethyl. In some embodiments, R8 is 3-hydroxymethyl-l -isobutyl-pyrrolidin-3-yl. In some embodiments, R8 is l-(2-methoxy-ethyl)-azetidin-3-yl. In some embodiments, R8 is 6- morpholin-4-yl-pyridin-2-ylmethyl. In some embodiments, R8 is l ,l-dioxo-tetrahydro-^6- thiophen-3-ylmethyl. In some embodiments, R8 is 2-(4-iluoro-phenoxy)-ethyl. In some embodiments, R8 is 2,6-dimethyl-pyrimidin-4-yl. In some embodiments, R8 is 1-hydroxymethyl- 2-(3H-imidazol-4-yl)-ethyl. In some embodiments, R8 is 4-methanesulfonyl-benzyl. In some embodiments, R8 is l-pyridin-3-yl-cyclopropyl. In some embodiments, R8 is 9-methyl-9-aza- bicyclo[3.3.1]non-l-yl. In some embodiments, R8 is 2,6-dimethyl-pyridin-3-yl. In some embodiments, R8 is 4-hydroxy-benzyl. In some embodiments, R8 is 2-oxo-2-phenyl-ethyl). In some embodiments, R8 is l-methyl-lH-pyrazol-3-ylmethyl. In some embodiments, R8 is pyrimidin-2-yl. In some embodiments, R8 is 5-methyl-pyrazin-2-yl. In some embodiments, R8 is l-(2-methoxy-pyridin-3-yl)-l -methyl-ethyl. In some embodiments, R8 is 6-methanesulfonyl-2- methyl-pyridin-3-yl. In some embodiments, R8 is 2-hydroxy-benzyl. In some embodiments, R8 is 6-bromo-2-methyl-pyridin-3-yl. In some embodiments, R8 is 2-methoxy-pyridin-3-yl. In some embodiments, R8 is l-(4-chloro-phenyl)-cyclobutyl. In some embodiments, R8 is 2-(pyridine-2- sulfonyl)-ethyl. In some embodiments, R8 is l-pyridin-2-yl-cyclopropylmethyl. In some embodiments, R8 is l-methyl-l ,2,3,4-tetrahydro-quinolin-7-yl. In some embodiments, R8 is benzyl. In some embodiments, R8 is 3,5-dimethyl-pyrazin-2-yl. In some embodiments, R8 is 1- (2-hydroxy-pyridin-3-yl)-l -methyl -ethyl. In some embodiments, R8 is 1-
(ethoxycarbonyl)cyclobutyl. In some embodiments, R8 is l-(teri-butoxycarbonyl)pyrrolidin-3- ylmethyl. In some embodiments, R8 is quinolin-4-ylmethyl. In some embodiments, R8 is 2-(4- fluoro-phenyl)-l-(2-hydroxy-ethylcarbamoyl)-l -methyl-ethyl. In some embodiments, R8 is 2- morpholin-4-yl-pyridin-3-yl. In some embodiments, R8 is 6-methyl-pyridin-2-yl. In some embodiments, R8 is 3-difluoromethoxy-benzyl. In some embodiments, R8 is 4-hydroxy-l- methyl-piperidin-4-ylmethyl. In some embodiments, R8 is l-(2,5-dimethylpyrrolidine-l- carbonyl)cyclopentyl. In some embodiments, R8 is 2-methoxy-benzyl. In some embodiments, R8 is 6-methyl-pyridin-2-ylmethyl. In some embodiments, R8 is 3-chloro-pyridin-4-yl. In some embodiments, R8 is 2-carboxypropan-2-yl. In some embodiments, R8 is 6-chloro-pyridin-3-yl. In some embodiments, R8 is 2-hydroxy-2-pyridin-3-yl -ethyl. In some embodiments, R8 is l-p-tolyl- cyclopropyl. In some embodiments, R8 is l-(3,3,3-trifluoro-propyl)-piperidin-4-yl. In some embodiments, R8 is 4-methoxy-pyridin-2-yl. In some embodiments, R8 is 3-azepan-l-yl-2,2- dimethyl-propyl. In some embodiments, R is l-(teri-butoxycarbonyl)azetidin-3-yl. In some embodiments, R8 is 5-methyl-pyrazin-2-ylmethyl. In some embodiments, R8 is 1-oxo- hexahydro-^4-thiopyran-4-yl. In some embodiments, R8 is 2-(2-chloro-phenyl)-ethyl. In some embodiments, R8 is 3-chloro-5-trifluoromethyl-pyridin-2-ylmethyl. In some embodiments, R8 is 2-hydroxy-l-hydroxymethyl-ethyl. In some embodiments, R8 is (l-methyl-pyrrolidin-2-yl)- pyridin-2-yl. In some embodiments, R8 is 5-fluoro-2-hydroxy-phenyl. In some embodiments, R8 is methyl. In some embodiments, R8 is 4-(methoxycarbonyl)-l-methylpiperidin-4-yl. In some embodiments, R8 is 4-hydroxymethyl-l-methyl-piperidin-4-yl. In some embodiments, R8 is 2- (2-hydroxymethyl-pyrrolidin-l-yl)-ethyl. In some embodiments, R8 is 1 -phenyl -cyclohexyl. In some embodiments, R8 is 3-methyl-l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R8 is 1-cyano-cyclohexyl. In some embodiments, R8 is l-(5-methyl- [l,2,4]oxadiazol-3-yl)-cyclohexyl. In some embodiments, R8 is 2-cyanopropan-2-yl. In some embodiments, R8 is 3-methyl-l-phenylureido. In some embodiments, R8 is l-carbamoyl-2,2- dimethyl-propyl. In some embodiments, R8 is teri-butylamino. In some embodiments, R8 is 2,2,2-trifluoro- 1,1 -dimethyl-ethyl. In some embodiments, R8 is 2,2-dimethyl-l- methylcarbamoyl -propyl. In some embodiments, R8 is 1-cyclopropyl-ethyl. In some
embodiments, R8 is amino. In some embodiments, R8 is N-teri-butylmethylsulfonamido. In some embodiments, R8 is l,l-dimethyl-prop-2-ynyl. In some embodiments, R8 is 2-methyl-l- (phosphonooxy)propan-2-yl. In some embodiments, R8 is l-teri-butyl-3-methylureido. In some embodiments, R8 is 4-cyano-tetrahydro-pyran-4-yl. In some embodiments, R8 is 1 -methyl - cyclobutyl. In some embodiments, R8 is l-hydroxymethyl-2-methyl-propyl. In some embodiments, R8 is cyclobutylamino. In some embodiments, R8 is 1-cyano-cyclopentyl. In some embodiments, R8 is cyano-dimethyl-methyl. In some embodiments, R8 is 2,2-dimethyl-l- (methylcarbamoyl)-propyl. In some embodiments, R8 is phenylamino. In some embodiments, R8 is 1-hydroxymethyl-propyl. In some embodiments, R8 is l-methyl-l-(lH-tetrazol-5-yl)-ethyl. In some embodiments, R8 is 3,3-dimethyl-l-(phosphonooxy)butan-2-yl). In some embodiments, R8 is 2-hydroxy-l-tetrahydro-pyran-4-yl-ethyl. In some embodiments, R8 is 1 ,2-dimethyl-propyl. In some embodiments, R8 is l-pyridin-2-yl-cyclobutyl. In some embodiments, R8 is 1- hydroxymethyl-2-phenyl-ethyl. In some embodiments, R8 is 4-methylcarbamoyl-tetrahydro- pyran-4-yl. In some embodiments, R8 is 1 -methyl- 1-methylcarbamoyl-ethyl. In some embodiments, R8 is 2,2-dimethyl-l-morpholin-4-ylmethyl-propyl. In some embodiments, R8 is
1- methylcarbamoyl-cyclopent-3-enyl. In some embodiments, R8 is 2-methoxy-2-oxo-l-(pyridin-
2- yl)ethyl. In some embodiments, R8 is methylcarbamoyl-pyridin-2-yl-methyl. In some embodiments, R8 is 1-methylcarbamoyl-cyclopentyl. In some embodiments, R8 is \-{tert- butylcarbamoyl)-2,2-dimethyl -propyl. In some embodiments, R8 is 2,2-dimethyl-l-(pyridin-2- ylcarbamoyl)-propyl. In some embodiments, R8 is l-(pyridin-2-ylcarbamoyl)-cyclobutyl. In some embodiments, R8 is 1-methylcarbamoyl-cyclobutyl. In some embodiments, R8 is 2- (methylamino)-2-oxo-l-phenylethyl. In some embodiments, R is pyrrolidin-l-yl. In some embodiments, R8 is piperidin-l-yl. In some embodiments, R8 is 2,6-dimethyl-piperidin-l-yl. In some embodiments, R8 is l-cyclopropylcarbamoyl-2,2-dimethyl-propyl. In some embodiments, R8 is 2,2-dimethyl-l-(2,2,2-trifluoro-ethylcarbamoyl)-propyl. In some embodiments, R8 is 1- ethylcarbamoyl-2,2-dimethyl -propyl. In some embodiments, R8 is 2-hydroxy-l-(tetrahydro- pyran-4-yl)-ethyl. In some embodiments, R8 is N-cyclobutylmethylsulfonamido. In some embodiments, R8 is N-phenylmethylsulfonamido. In some embodiments, R8 is l-cyclopropyl-2- hydroxy-ethyl. In some embodiments, R8 is 1 ,2,2-trimethyl-propyl. In some embodiments, R8 is 2-oxo-l-(pyridin-2-yl)-2-(2,2,2-trifluoroethylamino)ethyl. In some embodiments, R8 is 2,2- dimethyl- 1 -pyridin-2-yl -propyl. In some embodiments, R8 is 1 -me thoxy-3, 3 -dimethyl- 1- oxobutan-2-yl. In some embodiments, R8 is l-carboxy-2,2-dimethylpropyl. In some
embodiments, R8 is l-(hydroxy-methyl-carbamoyl)-2,2-dimethyl-propyl. In some embodiments, R8 is l-dimethylcarbamoyl-2,2-dimethyl-propyl. In some embodiments, R8 is l-(azetidine-l- carbonyl)-2,2-dimethyl-propyl. In some embodiments, R8 is l-methoxycarbamoyl-2,2-dimethyl- propyl. In some embodiments, R8 is l-(methoxy-methyl-carbamoyl)-2,2-dimethyl-propyl. In some embodiments, R8 is l-teri-butoxycarbamoyl-2,2-dimethyl-propyl. In some embodiments, R8 is 2,2-dimethyl-l-pyridin-2-yl -propyl. In some embodiments, R8 is iluoromethyl. In some embodiments, R8 is 2,2,2-trilluoroethylamino. In some embodiments, R8 is (1,1-dioxo- tetrahydro-^6-thiophen-3-yl)amino. In some embodiments, R8 is l-hydroxycarbamoyl-2,2- dimethyl-propyl. In some embodiments, R8 is l-hydroxymethyl-2-methyl-butyl. In some embodiments, R8 is l-(2-hydroxy-ethylcarbamoyl)-2,2-dimethyl-propyl. In some embodiments, R8 is l,l-&/s-hydroxymethyl-propyl. In some embodiments, R8 is l-(5-fluoro-pyridin-2-yl)-2,2- dimethyl-propyl. In some embodiments, R8 is 4-hydroxymethyl-tetrahydro-2H-pyran-4-yl. In some embodiments, R8 is l-(2-(teri-butoxycarbonylamino)-3-methylbutanoyloxy)-2- methylpropan-2-yl. In some embodiments, R8 is l-(2-amino-3-methylbutanoyloxy)-3- methylbutan-2-yl. In some embodiments, R8 is l-(2-amino-3-methylbutanoyloxy)-2- methylpropan-2-yl. In some embodiments, R8 is 2-hydroxy-l-(tetrahydro-2H-pyran-4-yl)-ethyl. In some embodiments, R8 is l-(4-carboxybutanoyloxy)-2-methylpropan-2-yl. In some embodiments, R8 is l-(4-carboxybutanoyloxy)-3-methylbutan-2-yl. In some embodiments, R8 is l-(4-carboxybutanoyloxy)-3,3-dimethylbutan-2-yl. In some embodiments, R8 is l-(2-amino-3- methylbutanoyloxy)-3,3-dimethylbutan-2-yl. In some embodiments, R8 is 2-(2-amino-3- methylbutanoyloxy)-l-(tetrahydro-2H-pyran-4-yl)ethyl. In some embodiments, R8 is 3,3,3- trilluoro-l-hydroxymethyl-propyl. In some embodiments, R8 is 3-fluoro-l-methoxy-3-methyl-l- oxobutan-2-yl. In some embodiments, R8 is l-ethoxy-4,4,4-trilluoro-l-oxo-3- (trilluoromethyl)butan-2-yl. In some embodiments, R8 is 2-lluoro-l-hydroxymethyl-2-methyl- propyl. In some embodiments, R8 is l-(2-(tert-butoxycarbonylamino)-3-methylbutanoyloxy)- 3,3-dimethylbutan-2-yl. In some embodiments, R8 is 4,4,4-trifluoro-l-methoxy-l-oxobutan-2-yl. In some embodiments, R is 2-fluoro- 1,1 -dimethyl-ethyl. In some embodiments, R is 3-fluoro- 2-(fluoromethyl)-l-methoxy-l-oxopropan-2-yl. In some embodiments, R8 is 2-fluoro-l- fluoromethyl-l-hydroxymethyl-ethyl. In some embodiments, R8 is 3-hydroxy-l-methoxy-2- methyl-l-oxopropan-2-yl. In some embodiments, R8 is 2-carboxy-l-hydroxypropan-2-yl. In some embodiments, R8 is 2,2,2-trifluoroethylamino. In some embodiments, R8 is 1- fluoromethyl-2-methyl-propyl. In some embodiments, R8 is l-fluoromethyl-2,2-dimethyl- propyl. In some embodiments, R8 is 3-methyl-oxetan-3-yl. In some embodiments, R8 is 1- lluoromethyl-cyclobutyl. In some embodiments, R8 is l,l-& s-hydroxymethyl-2-methyl-propyl. In some embodiments, R8 is 1-trifluoromethyl-cyclopropyl. In some embodiments, R8 is 1- methyl-cyclopropyl. In some embodiments, R8 is 1-trilluoromethyl-cyclobutyl.
The Group R9:
In some embodiments, R9 is selected from H, C1-C6 alkyl, and C3-C7 cycloalkyl.
In some embodiments, R9 is C1-C6 alkyl.
In some embodiments, R9 is C3-C7 cycloalkyl.
In some embodiments, R9 is selected from H, methyl, tert-butyl, and cyclobutyl.
In some embodiments, R9 is H.
In some embodiments, R9 is methyl.
In some embodiments, R9 is tert-butyl.
In some embodiments, R9 is cyclobutyl.
The Group R10:
In some embodiments, R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene.
In some embodiments, R10 is selected from: 1,1-dimethylethylene, 1,1- dimethylmethylene, ethylene, methylene, 1,4-piperidinylene, 2,5-pyrazinylene, and 2,4- pyridinylene.
In some embodiments, R10 is C1-C6 alkylene.
In some embodiments, R10 is selected from: 1,1-dimethylethylene, 1,1- dimethylmethylene, ethylene, and methylene.
In some embodiments, R10 is 1,1-dimethylethylene
In some embodiments, R10 is 1,1-dimethylmethylene.
In some embodiments, R10 is ethylene.
In some embodiments, R10 is methylene.
In some embodiments, R10 is heteroarylene.
In some embodiments, R10 is selected from: 2,5-pyrazinylene, and 2,4-pyridinylene. In some embodiments, R10 is heterocyclylene.
In some embodiments, R10 is 1,4-piperidinylene.
In some embodiments, R is absent. The Group R11:
In some embodiments, R11 is selected from: -C(0)NH- and Ci-C6 alkylene.
In some embodiments, R11 is selected from: -C(0)NH- and methylene.
In some embodiments, R11 is -C(0)NH-.
In some embodiments, R11 is Ci-C6 alkylene.
In some embodiments, R11 is methylene.
In some embodiments, R11 is absent.
The Group R12:
In some embodiments, R12 is C1-C6 alkylene.
In some embodiments, R12 is methylene.
In some embodiments, R12 is 1,1-dimethyl-methylene.
In some embodiments, R12 is absent.
The Group R13:
In some embodiments, R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Q- C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl.
In some embodiments, R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, bromo, chloro, iodo, methoxy, cyano, methyl, tert-butyl, isopropyl, hydroxyl, ethyl, heptafluoropropyl, cyclobutyl, trifluoromethyl, cyclopropyl, dimethylamino, methoxy, ethoxy, methylamino, propyl, amino, and methanesulfonyl.
In some embodiments, R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: fluoro, bromo, chloro, methoxy, cyano, methyl, tert-butyl, isopropyl, hydroxyl, ethyl, heptafluoropropyl, cyclobutyl, trifluoromethyl, cyclopropyl, dimethylamino, methoxy, ethoxy, methylamino, propyl, amino, and methanesulfonyl.
In some embodiments, R13 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 2- fluoro-4-methanesulfonyl-phenyl, 2,6-difluoro-phenyl, 2,5-difluoro-phenyl, 4-methoxy-phenyl, 4-cyano-phenyl, 4-fluoro-phenyl, phenyl, 2-fluoro-phenyl, 3-fluoro-phenyl, o-tolyl, tert-butyl, isopropyl, 2,2-dimethylpropyl, hydroxyl, 2-hydroxy-2-methylpropyl, l-oxo-hexahydro-ΐλ4- thiopyran-4-yl, l,l-dioxo-hexahydro-^6-thiopyran-4-yl, tetrahydrothiopyran-4-yl, morpholin-4- yl, tetrahydro-pyran-4-yl, l,l-dioxo-tetrahydro-^6-thiophen-3-yl, pyrazin-2-yl, 5-ethyl-pyrazin- 2-yl, 5-hydroxy-pyrazin-2-yl, 5-isopropyl-pyrazin-2-yl, 5-heptafluoropropyl-pyrazin-2-yl, 5- cyclobutyl-pyrazin-2-yl, 5-methyl-pyrazin-2-yl, 6-ethyl-pyrazin-2-yl, 5-trifluoromethyl-pyrazin- 2-yl, cyclopropyl, 5-cyclopropyl-pyrazin-2-yl, 6-chloro-pyrazin-2-yl, 5-dimethylamino-pyrazin-
2- yl, 4-cyano-phenyl, 6-methoxy-pyridazin-3-yl, 6-chloro-pyridazin-3-yl, pyrimidin-5-yl, 6- dimethylamino-pyrazin-2-yl, 6-methoxy-pyrazin-2-yl, 2-pyrimidin-4-yl, 5-bromo-pyrazin-2-yl, 5-hydroxy-pyrazin-2-yl, 5-methoxy-pyrazin-2-yl, 5-ethoxypyrazin-2-yl, 5-methylamino- pyrazin-2-yl, 5-bromo-pyridin-2-yl, pyridin-3-yl, 5-triiluoromethyl-pyridin-2-yl, 5-isopropyl- pyridin-2-yl, 5-isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-ethyl-pyridin-2-yl, 5-methoxy- pyridin-2-yl, 4-trifluoromethyl-pyridin-2-yl, 5-cyano-pyridin-2-yl, 5-dimethylamino-pyridin-2- yl, 4-methyl-pyridin-2-yl, 5-chloro-4-methyl-pyridin-2-yl, 5-chloro-4-trifluoromethyl-pyridin-2- yl, 4-trifluoromethyl-pyridin-2-yl, 3-lluoro-pyridin-2-yl, 6-methyl-4-trifluoromethyl-pyridin-2- yl, 3-methyl-pyridin-2-yl, 5-propyl-pyridin-2-yl, 5-cyclopropyl-pyridin-2-yl, 5-fluoro-pyridin-2- yl, 3,5-difluoro-pyridin-2-yl, 6-bromo-pyridin-3-yl, 5-bromo-pyridin-3-yl, 5,6-difluoro-pyridin-
3- yl, 6-chloro-pyridin-3-yl, 3-lluoro-pyridin-4-yl, 5-cyano-pyridin-3-yl, pyridin-4-yl, 2-chloro- pyridin-4-yl, 2-methoxy-pyridin-4-yl, 6-methyl-pyridin-3-yl, ra-tolyl, thiazol-2-yl, cyclopentyl, 4-amino-pyridin-2-yl, 4-methoxy-pyridin-2-yl, 4-choro-pyridin-2-yl, 4-fluoro-pyridin-2-yl, 4- cyclopropyl-pyridin-2-yl, 4-bromo-pyridin-2-yl, 4-methanesulfonyl-pyridin-2-yl, 4-cyano- pyridin-2-yl, hydroxymethyl, 4-oxy-pyrazin-2-yl, 3 -methyl- l,l-dioxo-tetrahydro-^6-thiophen-
3- yl, 5-chloro-3-lluoro-pyridin-2-yl, 3-lluoro-5-methoxy-pyridin-2-yl, 2-chloro-4-lluoro-phenyl, 6-fluoro-pyridin-3-yl, 6-cyano-pyridin-3-yl, 4-iodo-pyridin-2-yl, l-oxy-pyridin-3-yl, and 4- hydroxy-pyridin-2-yl.
In some embodiments, R13 is selected from: 2,4-difluoro-phenyl, 2,4-dichloro-phenyl, 2- fluoro-4-methanesulfonyl-phenyl, 2,6-difluoro-phenyl, 2,5-difluoro-phenyl, 4-methoxy-phenyl,
4- cyano-phenyl, 4-fluoro-phenyl, phenyl, 2-fluoro-phenyl, 3-fluoro-phenyl, o-tolyl, tert-b tyl, isopropyl, 2,2-dimethylpropyl, hydroxyl, 2-hydroxy-2-methylpropyl, l-oxo-hexahydro-ΐλ4- thiopyran-4-yl, l,l-dioxo-hexahydro-^6-thiopyran-4-yl, tetrahydrothiopyran-4-yl, morpholin-4- yl, tetrahydro-pyran-4-yl, l,l-dioxo-tetrahydro-^6-thiophen-3-yl, pyrazin-2-yl, 5-ethyl-pyrazin- 2-yl, 5-hydroxy-pyrazin-2-yl, 5-isopropyl-pyrazin-2-yl, 5-heptafluoropropyl-pyrazin-2-yl, 5- cyclobutyl-pyrazin-2-yl, 5-methyl-pyrazin-2-yl, 6-ethyl-pyrazin-2-yl, 5-trifluoromethyl-pyrazin- 2-yl, cyclopropyl, 5-cyclopropyl-pyrazin-2-yl, 6-chloro-pyrazin-2-yl, 5-dimethylamino-pyrazin- 2-yl, 4-cyano-phenyl, 6-methoxy-pyridazin-3-yl, 6-chloro-pyridazin-3-yl, pyrimidin-5-yl, 6- dimethylamino-pyrazin-2-yl, 6-methoxy-pyrazin-2-yl, 2-pyrimidin-4-yl, 5-bromo-pyrazin-2-yl,
5- hydroxy-pyrazin-2-yl, 5-methoxy-pyrazin-2-yl, 5-ethoxypyrazin-2-yl, 5-methylamino- pyrazin-2-yl, 5-bromo-pyridin-2-yl, pyridin-3-yl, 5-trifluoromethyl-pyridin-2-yl, 5-isopropyl- pyridin-2-yl, 5-isopropyl-pyridin-2-yl, 5-methyl-pyridin-2-yl, 5-ethyl-pyridin-2-yl, 5-methoxy- pyridin-2-yl, 4-trifluoromethyl-pyridin-2-yl, 5-cyano-pyridin-2-yl, 5-dimethylamino-pyridin-2- yl, 4-methyl-pyridin-2-yl, 5-chloro-4-methyl-pyridin-2-yl, 5-chloro-4-trifluoromethyl-pyridin-2- yl, 4-trifluoromethyl-pyridin-2-yl, 3-fluoro-pyridin-2-yl, 6-methyl-4-trifluoromethyl-pyridin-2- yl, 3-methyl-pyridin-2-yl, 5-propyl-pyridin-2-yl, 5-cyclopropyl-pyridin-2-yl, 5-fluoro-pyridin-2- yl, 3,5-difluoro-pyridin-2-yl, 6-bromo-pyridin-3-yl, 5-bromo-pyridin-3-yl, 5,6-difluoro-pyridin-
3- yl, 6-chloro-pyridin-3-yl, 3-fluoro-pyridin-4-yl, 5-cyano-pyridin-3-yl, pyridin-4-yl, 2-chloro- pyridin-4-yl, 2-methoxy-pyridin-4-yl, 6-methyl-pyridin-3-yl, ra-tolyl, thiazol-2-yl, cyclopentyl, 4-methoxy-pyridin-2-yl, 4-choro-pyridin-2-yl, 4-fluoro-pyridin-2-yl, 4-cyclopropyl-pyridin-2-yl,
4- bromo-pyridin-2-yl, 4-methanesulfonyl-pyridin-2-yl, 4-cyano-pyridin-2-yl, hydroxymethyl, and 4-oxy-pyrazin-2-yl.
In some embodiments, R13 is 2,4-difluoro-phenyl. In some embodiments, R13 is 2,4- dichloro-phenyl. In some embodiments, R13 is 2-fluoro-4-methanesulfonyl-phenyl. In some embodiments, R13 is 2,6-diiluoro-phenyl. In some embodiments, R13 is 2,5-difluoro-phenyl. In some embodiments, R13 is 4-methoxy-phenyl. In some embodiments, R13 is 4-cyano-phenyl. In some embodiments, R13 is 4-iluoro-phenyl. In some embodiments, R13 is phenyl. In some embodiments, R13 is 2-iluoro-phenyl. In some embodiments, R13 is 3-iluoro-phenyl. In some embodiments, R13 is o-tolyl. In some embodiments, R13 is teri-butyl. In some embodiments, R13 is isopropyl. In some embodiments, R13 is 2,2-dimethylpropyl. In some embodiments, R13 is hydroxyl. In some embodiments, R13 is 2-hydroxy-2-methylpropyl. In some embodiments, R13 is l-oxo-hexahydro-^4-thiopyran-4-yl. In some embodiments, R13 is l,l-dioxo-hexahydro-^6- thiopyran-4-yl. In some embodiments, R13 is tetrahydrothiopyran-4-yl. In some embodiments, R13 is morpholin-4-yl. In some embodiments, R13 is tetrahydro-pyran-4-yl. In some
embodiments, R13 is l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R13 is pyrazin-2-yl. In some embodiments, R13 is 5-ethyl-pyrazin-2-yl. In some embodiments, R13 is 5- hydroxy-pyrazin-2-yl. In some embodiments, R13 is 5-isopropyl-pyrazin-2-yl. In some embodiments, R13 is 5-heptafluoropropyl-pyrazin-2-yl. In some embodiments, R13 is 5- cyclobutyl-pyrazin-2-yl. In some embodiments, R13 is 5-methyl-pyrazin-2-yl. In some embodiments, R13 is 6-ethyl-pyrazin-2-yl. In some embodiments, R13 is 5-triiluoromethyl- pyrazin-2-yl. In some embodiments, R13 is cyclopropyl. In some embodiments, R13 is 5- cyclopropyl-pyrazin-2-yl. In some embodiments, R13 is 6-chloro-pyrazin-2-yl. In some embodiments, R13 is 5-dimethylamino-pyrazin-2-yl. In some embodiments, R13 is 4-cyano- phenyl. In some embodiments, R13 is 6-methoxy-pyridazin-3-yl. In some embodiments, R13 is 6- chloro-pyridazin-3-yl. In some embodiments, R13 is pyrimidin-5-yl. In some embodiments, R13 is 6-dimethylamino-pyrazin-2-yl. In some embodiments, R13 is 6-methoxy-pyrazin-2-yl. In some embodiments, R13 is 2-pyrimidin-4-yl. In some embodiments, R13 is 5-bromo-pyrazin-2-yl. In some embodiments, R13 is 5-hydroxy-pyrazin-2-yl. In some embodiments, R13 is 5-methoxy- pyrazin-2-yl. In some embodiments, R13 is 5-ethoxypyrazin-2-yl. In some embodiments, R13 is 5-methylamino-pyrazin-2-yl. In some embodiments, R13 is 5-bromo-pyridin-2-yl. In some embodiments, R13 is pyridin-3-yl. In some embodiments, R13 is 5-trilluoromethyl-pyridin-2-yl. In some embodiments, R13 is 5-isopropyl-pyridin-2-yl. In some embodiments, R13 is 5- isopropyl-pyridin-2-yl. In some embodiments, R is 5-methyl-pyridin-2-yl. In some embodiments, R13 is 5-ethyl-pyridin-2-yl. In some embodiments, R13 is 5-methoxy-pyridin-2-yl. In some embodiments, R13 is 4-trifluoromethyl-pyridin-2-yl. In some embodiments, R13 is 5- cyano-pyridin-2-yl. In some embodiments, R13 is 5-dimethylamino-pyridin-2-yl. In some embodiments, R13 is 4-methyl-pyridin-2-yl. In some embodiments, R13 is 5-chloro-4-methyl- pyridin-2-yl. In some embodiments, R13 is 5-chloro-4-trifluoromethyl-pyridin-2-yl. In some embodiments, R13 is 4-trifluoromethyl-pyridin-2-yl. In some embodiments, R13 is 3-fluoro- pyridin-2-yl. In some embodiments, R13 is 6-methyl-4-trifluoromethyl-pyridin-2-yl. In some embodiments, R13 is 3-methyl-pyridin-2-yl. In some embodiments, R13 is 5-propyl-pyridin-2-yl. In some embodiments, R13 is 5-cyclopropyl-pyridin-2-yl. In some embodiments, R13 is 5-fluoro- pyridin-2-yl. In some embodiments, R13 is 3,5-difluoro-pyridin-2-yl. In some embodiments, R13 is 6-bromo-pyridin-3-yl. In some embodiments, R13 is 5-bromo-pyridin-3-yl. In some embodiments, R13 is 5,6-difluoro-pyridin-3-yl. In some embodiments, R13 is 6-chloro-pyridin-3- yl. In some embodiments, R13 is 3-fluoro-pyridin-4-yl. In some embodiments, R13 is 5-cyano- pyridin-3-yl. In some embodiments, R13 is pyridin-4-yl. In some embodiments, R13 is 2-chloro- pyridin-4-yl. In some embodiments, R13 is 2-methoxy-pyridin-4-yl. In some embodiments, R13 is 6-methyl-pyridin-3-yl. In some embodiments, R13 is ra-tolyl. In some embodiments, R13 is thiazol-2-yl. In some embodiments, R13 is cyclopentyl. In some embodiments, R13 is 4-amino- pyridin-2-yl. In some embodiments, R13 is 4-methoxy-pyridin-2-yl. In some embodiments, R13 is 4-choro-pyridin-2-yl. In some embodiments, R13 is 4-fluoro-pyridin-2-yl. In some embodiments, R13 is 4-cyclopropyl-pyridin-2-yl. In some embodiments, R13 is 4-bromo-pyridin-2-yl. In some embodiments, R13 is 4-methanesulfonyl-pyridin-2-yl. In some embodiments, R13 is 4-cyano- pyridin-2-yl. In some embodiments, R13 is hydroxymethyl. In some embodiments, R13 is 4-oxy- pyrazin-2-yl. In some embodiments, R13 is 3-methyl-l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R13 is 5-chloro-3-fluoro-pyridin-2-yl. In some embodiments, R13 is 3- fluoro-5-methoxy-pyridin-2-yl. In some embodiments, R13 is 2-chloro-4-fluoro-phenyl. In some embodiments, R13 is 6-fluoro-pyridin-3-yl. In some embodiments, R13 is 6-cyano-pyridin-3-yl. In some embodiments, R13 is 4-iodo-pyridin-2-yl. In some embodiments, R13 is l-oxy-pyridin-3- yl. In some embodiments, R13 is 4-hydroxy-pyridin-2-yl.
The Group R14:
In some embodiments, R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3- C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Q- C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl. In some embodiments, R is selected from: Ci-C6 alkylene and C3-C7 cycloalkylene; wherein said Ci-C6 alkylene is optionally substituted with one or more substituents selected from: Ci-C6 alkyl, aryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl is optionally substituted with one substituent selected from: halogen, and hydroxyl.
In some embodiments, R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-
C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: methyl, tert-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4- fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, cyclopropyl, sec-butyl, 2,2,2-trifluoroethyl, 2- fluoropropan-2-yl, l,l,l,3,3,3-hexafluoropropan-2-yl, and fluoromethyl.
In some embodiments, R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3- C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: methyl, tert-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4- fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, and cyclopropyl.
In some embodiments, R14 is selected from: Ci-C6 alkylene and C3-C7 cycloalkylene; wherein said Ci-C6 alkylene is optionally substituted with one or more substituents selected from: tetrahydro-2H-pyranyl, hydroxyl, 2,2,2-trifluoroethyl, and fluoromethyl.
In some embodiments, R14 is selected from: methylene, ethylene, cyclopropylene, cyclobutylene, piperidinylene, pyridinylene, tetrahydropyranylene, thiazolylene, cyclohexylene, cyclopentylene, cyclopentenylene, dioxohexahydrothiopyranylene, pyrrolidinylene,
tetrahydrothiophenylene, propylene, 3,3-oxetanylene, and -S02-; wherein said ethylene, methylene, piperidinylene, propylene, and pyrrolidinylene are each optionally substituted with one or more substituents selected from: methyl, tert-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4-fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, cyclopropyl, sec-butyl, 2,2,2-trifluoroethyl, 2-fluoropropan-2-yl, 1,1, 1,3,3, 3-hexafluoropropan- 2-yl, and fluoromethyl.
In some embodiments, R14 is selected from: methylene, ethylene, cyclopropylene, cyclobutylene, piperidinylene, pyridinylene, tetrahydropyranylene, thiazolylene, cyclohexylene, cyclopentylene, cyclopentenylene, dioxohexahydrothiopyranylene, pyrrolidinylene,
tetrahydrothiophenylene, propylene, and -S02-; wherein said ethylene, methylene,
piperidinylene, propylene, and pyrrolidinylene are each optionally substituted with one or more substituents selected from: methyl, teri-butyl, ethyl, tetrahydro-2H-pyranyl, isopropyl, benzyl, pyridinyl, hydroxymethyl, 4-fluoro-phenyl, teri-butoxycarbonyl, carboxy, methoxymethyl, hydroxyethyl, tetrahydro-furanyl, 3H-imidazolylmethyl, hydroxyl, pyrrolidinyl, and
cyclopropyl.
In some embodiments, R14 is selected from: methylene, ethylene, 1 , 1-cyclopropylene, 1 ,1-dimethyl-methylene, 1 ,1-cyclobutylene, teri-butyl-methylene, 1 -methyl -4,4-piperidinylene, 4,4-tetrahydro-2H-pyranylene, methyl-methylene, 1 ,1-cyclohexylene, 1 ,2-cyclohexylene, 1 ,1- dimethyl-ethylene, 1-teri-butyl-ethylene, 1-ethyl-ethylene, 1-methyl-ethylene, l-(tetrahydro-2H- pyran-4-yl)-ethylene, isopropyl-methylene, 1 ,1-cyclopentylene, benzyl-methylene, 4,4- cyclopent- 1 -enylene, 1 , 1 -dioxo-hexahydro- 1 λ6-4,4-thiopyranylene, 1 -teri-butoxycarbonyl-4,4- piperidinylene, 1 -(pyridin-4-yl)-ethylene, 1 -(pyridin-3-yl)-ethylene, 1 -(pyridin-2-yl)-ethylene, l-(4-fluoro-phenyl)-ethylene, 1-hydroxymethyl-l -methyl-ethylene, 1-carboxy- 1-methyl- ethylene, 1-methoxymethyl-ethylene, 1-hydroxymethyl -ethylene, l-(l-hydroxyethyl)-ethylene, 1 ,1 -dimethyl -ethylene, l-(tetrahydro-furan-3-yl)-ethylene, phenyl-methylene, l-(3H-imidazol-4- ylmethyl)-ethylene, l-(4-hydroxy-phenyl) -ethylene, benzyl -ethylene, (1-hydroxymethyl -2- methyl)-ethylene, 1-isopropyl-ethylene, pyridin-2-yl-methylene, 1 , 1 -dimethyl -propylene, 2- hydroxy-propylene, (l-isobutyl-pyrrolidin-3-yl)-methylene, 1 ,3-azetidinylene, 1 ,3- pyrrolidinylene, 1 ,3-piperidinylene, 1 ,4-piperidinylene, 2,4-thiazolylene, 3,4-pyridinylene, 2,4- pyridinylene, 2,5-pyridinylene, -S02-, 2,5-pyridinylene, 1-cyclopropyl-ethylene, 1 -(sec-butyl) - ethylene, 1-hydroxymethyl- 1-ethyl-ethylene, 1-isopropyl-ethylene, l-(2,2,2-trifluoroethyl)- ethylene, (2-fluoropropan-2-yl)-methylene, (l ,l ,l ,3,3,3-hexafluoropropan-2-yl)-methylene, 1- (2-fluoropropan-2-yl)-ethylene, (2,2,2-trifluoroethyl)-methylene, 1 , 1 -di(fluoromethyl)-ethylene, (hydroxymethyl)(methyl)methylene, (hydroxymethyl)(methyl)methylene, 3,3-oxetanylene, and 1 -hydroxymethyl- 1 -isopropyl -ethylene.
In some embodiments, R14 is selected from: methylene, ethylene, 1 , 1-cyclopropylene, 1 ,1-dimethyl-methylene, 1 ,1-cyclobutylene, teri-butyl-methylene, 1 -methyl -4,4-piperidinylene, 4,4-tetrahydro-2H-pyranylene, methyl-methylene, 1 ,1-cyclohexylene, 1 ,2-cyclohexylene, 1 ,1- dimethyl-ethylene, 1-teri-butyl-ethylene, 1-ethyl-ethylene, 1-methyl-ethylene, l-(tetrahydro-2H- pyran-4-yl)-ethylene, isopropyl-methylene, 1 ,1-cyclopentylene, benzyl-methylene, 4,4- cyclopent- 1 -enylene, 1 , 1 -dioxo-hexahydro- 1 λ6-4,4-thiopyranylene, 1 -teri-butoxycarbonyl-4,4- piperidinylene, 1 -(pyridin-4-yl)-ethylene, 1 -(pyridin-3-yl)-ethylene, 1 -(pyridin-2-yl)-ethylene, l-(4-fluoro-phenyl)-ethylene, 1-hydroxymethyl-l -methyl-ethylene, 1-carboxy- 1-methyl- ethylene, 1-methoxymethyl-ethylene, 1-hydroxymethyl -ethylene, l-(l-hydroxyethyl)-ethylene, 1 ,1 -dimethyl -ethylene, l-(tetrahydro-furan-3-yl)-ethylene, phenyl-methylene, l-(3H-imidazol-4- ylmethyl)-ethylene, l-(4-hydroxy-phenyl) -ethylene, benzyl -ethylene, ( 1-hydroxymethyl -2- methyl)-ethylene, 1-isopropyl-ethylene, pyridin-2-yl-methylene, 1 , 1 -dimethyl -propylene, 2- hydroxy-propylene, (l-isobutyl-pyrrolidin-3-yl)-methylene, 1 ,3-azetidinylene, 1 ,3- pyrrolidinylene, 1 ,3-piperidinylene, 1 ,4-piperidinylene, 2,4-thiazolylene, 3,4-pyridinylene, 2,4- pyridinylene, 2,5-pyridinylene, -S02-, 2,5-pyridinylene, and 1-cyclopropyl-ethylene. In some embodiments, R is selected from: 1,1-cyclopropylene, 1,1 -dimethyl - methylene, 1,1-cyclobutylene, teri-butyl-methylene, 1,1-dimethyl-ethylene, l-tert-b ty\- ethylene, l-(tetrahydro-2H-pyran-4-yl)-ethylene, isopropyl-methylene, 1-hydroxymethyl-l- methyl-ethylene, phenyl-methylene, 1-isopropyl-ethylene, l-(2,2,2-trifluoroethyl)-ethylene, and l,l-di(fluoromethyl)-ethylene.
In some embodiments, R14 is methylene. In some embodiments, R14 is ethylene. In some embodiments, R14 is 1,1-cyclopropylene. In some embodiments, R14 is 1,1-dimethyl-methylene. In some embodiments, R14 is 1,1-cyclobutylene. In some embodiments, R14 is teri-butyl- methylene. In some embodiments, R14 is l-methyl-4,4-piperidinylene. In some embodiments, R14 is 4,4-tetrahydro-2H-pyranylene. In some embodiments, R14 is methyl-methylene. In some embodiments, R14 is 1,1-cyclohexylene. In some embodiments, R14 is 1,2-cyclohexylene. In some embodiments, R14 is 1,1-dimethyl-ethylene. In some embodiments, R14 is 1-teri-butyl- ethylene. In some embodiments, R14 is 1-ethyl-ethylene. In some embodiments, R14 is 1-methyl- ethylene. In some embodiments, R14 is l-(tetrahydro-2H-pyran-4-yl)-ethylene. In some embodiments, R14 is isopropyl-methylene. In some embodiments, R14 is 1,1-cyclopentylene. In some embodiments, R14 is benzyl-methylene. In some embodiments, R14 is 4,4-cyclopent-l- enylene. In some embodiments, R14 is l,l-dioxo-hexahydro-^6-4,4-thiopyranylene. In some embodiments, R14 is l-teri-butoxycarbonyl-4,4-piperidinylene. In some embodiments, R14 is 1- (pyridin-4-yl)-ethylene. In some embodiments, R14 is l-(pyridin-3-yl)-ethylene. In some embodiments, R14 is l-(pyridin-2-yl)-ethylene. In some embodiments, R14 is l-(4-fluoro- phenyl)-ethylene. In some embodiments, R14 is 1-hydroxymethyl-l-methyl-ethylene. In some embodiments, R14 is 1-carboxy-l -methyl -ethylene. In some embodiments, R14 is 1- methoxymethyl -ethylene. In some embodiments, R14 is 1-hydroxymethyl -ethylene. In some embodiments, R14 is l-(l-hydroxyethyl)-ethylene. In some embodiments, R14 is 1,1-dimethyl- ethylene. In some embodiments, R14 is l-(tetrahydro-furan-3-yl)-ethylene. In some
embodiments, R14 is phenyl-methylene. In some embodiments, R14 is l-(3H-imidazol-4- ylmethyl)-ethylene. In some embodiments, R14 is l-(4-hydroxy-phenyl) -ethylene. In some embodiments, R14 is benzyl-ethylene. In some embodiments, R14 is (l-hydroxymethyl-2- methyl)-ethylene. In some embodiments, R14 is 1-isopropyl-ethylene. In some embodiments, R14 is pyridin-2-yl-methylene. In some embodiments, R14 is 1,1-dimethyl-propylene. In some embodiments, R14 is 2-hydroxy-propylene. In some embodiments, R14 is (1-isobutyl-pyrrolidin- 3-yl)-methylene. In some embodiments, R14 is 1,3-azetidinylene. In some embodiments, R14 is 1,3-pyrrolidinylene. In some embodiments, R14 is 1,3-piperidinylene. In some embodiments, R14 is 1,4-piperidinylene. In some embodiments, R14 is 2,4-thiazolylene. In some embodiments, R14 is 3,4-pyridinylene. In some embodiments, R14 is 2,4-pyridinylene. In some embodiments, R14 is 2,5-pyridinylene. In some embodiments, R14 is -S02-. In some embodiments, R14 is 2,5- pyridinylene. In some embodiments, R14 is 1-cyclopropyl-ethylene. In some embodiments, R14 is l-(seobutyl)-ethylene. In some embodiments, R is 1-hydroxymethyl-l-ethyl-ethylene. In some embodiments, R14 is 1-isopropyl-ethylene. In some embodiments, R14 is l-(2,2,2-trifluoroethyl)- ethylene. In some embodiments, R14 is (2-lluoropropan-2-yl) -methylene. In some embodiments, R14 is (1 ,1 ,1 , 3,3, 3-hexafluoropropan-2-yl)-methylene. In some embodiments, R14 is l-(2- fluoropropan-2-yl)-ethylene. In some embodiments, R14 is (2,2,2-trilluoroethyl)-methylene. In some embodiments, R14 is l , l-di(lluoromethyl)-ethylene. In some embodiments, R14 is
(hydroxymethyl)(methyl)methylene. In some embodiments, R14 is
(hydroxymethyl)(methyl)methylene. In some embodiments, R14 is 3,3-oxetanylene. In some embodiments, R14 is 1-hydroxymethyl-l -isopropyl-ethylene.
In some embodiments, R14 is absent.
The Group R15:
In some embodiments, R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl.
In some embodiments, R15 is selected from: -C(0)NH-, -C(O)-, Ci-C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl.
In some embodiments, R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with methyl.
In some embodiments, R15 is selected from: -C(0)NH-, -C(O)-, Ci-C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with methyl.
In some embodiments, R15 is selected from: pyrrolidinylene, piperidinylene, pyridinylene, azetidinylene, -C(0)NH-, -C(O)-, -C(0)0-, morpholinylene, methylene, ethylene, cyclopropylene, tetrahydropyranylene, cyclopentylene, tetrahydrothiophenylene,
oxotetrahydrothiophenylene; wherein said piperidinylene is optionally substituted with methyl.
In some embodiments, R15 is selected from: pyrrolidinylene, piperidinylene, pyridinylene, azetidinylene, -C(0)NH-, -C(O)-, morpholinylene, methylene, ethylene, cyclopropylene, tetrahydropyranylene, cyclopentylene, tetrahydrothiophenylene,
oxotetrahydrothiophenylene; wherein said piperidinylene is optionally substituted with methyl.
In some embodiments, R15 is selected from: 1 ,3 -pyrrolidinylene, 1 ,4-piperidinylene, 2,6- pyridinylene, 1 ,3-azetidinylene, -C(0)NH-, -C(O)-, -C(0)0-, 1 ,2-pyrrolidinylene, 2,4- morpholinylene, ethylene, methylene, 1 , 1 -cyclopentylene, 4,4-tetrahydro-2H-pyranylene, 3,3- tetrahydro-thiophenylene, 1 ,1 -cyclopropylene, l-methyl-4,4-piperidinylene, and 1-oxo- tetrahydro- 1 λ4-3 ,3 -thiophenylene . In some embodiments, R is selected from: 1,3-pyrrolidinylene, 1 ,4-piperidinylene, 2,6- pyridinylene, 1,3-azetidinylene, -C(0)NH-, -C(O)-, 1,2-pyrrolidinylene, 2,4-morpholinylene, ethylene, methylene, 1,1-cyclopentylene, 4,4-tetrahydro-2H-pyranylene, 3,3-tetrahydro- thiophenylene, 1,1-cyclopropylene, l-methyl-4,4-piperidinylene, and l-oxo-tetrahydro-^4-3,3- thiophenylene.
In some embodiments, R15 is selected from: -C(0)NH- and -C(0)0-.
In some embodiments, R15 is 1,3-pyrrolidinylene. In some embodiments, R15 is 1,4- piperidinylene. In some embodiments, R15 is 2,6-pyridinylene. In some embodiments, R15 is 1,3- azetidinylene. In some embodiments, R15 is -C(0)NH-. In some embodiments, R15 is -C(O)-. In some embodiments, R15 is 1,2-pyrrolidinylene. In some embodiments, R15 is 2,4- morpholinylene. In some embodiments, R15 is ethylene. In some embodiments, R15 is methylene. In some embodiments, R15 is 1,1-cyclopentylene. In some embodiments, R15 is 4,4-tetrahydro- 2H-pyranylene. In some embodiments, R15 is 3,3-tetrahydro-thiophenylene. In some
embodiments, R15 is 1,1-cyclopropylene. In some embodiments, R15 is 1 -methyl -4,4- piperidinylene. In some embodiments, R15 is l-oxo-tetrahydro-^4-3,3-thiophenylene.
In some embodiments, R15 is absent.
The Group R16:
In some embodiments, R16 is Ci-C6 alkylene.
In some embodiments, R16 is selected from: ethylene, methylene, isopropyl-methylene, and propylene.
In some embodiments, R16 is selected from: methylene, isopropyl-methylene, and propylene.
In some embodiments, R16 is selected from: ethylene, and methylene.
In some embodiments, R16 is ethylene.
In some embodiments, R16 is methylene.
In some embodiments, R16 is absent.
The Group R17:
In some embodiments, R17 is selected from: Η, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylaniino, C2-C8 dialkylaniino, C2-C8 dialkylsulionaniide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C3-C7 cycloalkylaniino, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl.
In some embodiments, R17 is selected from: H, Ci-C6 alkyl, Ci-C6 alkylamino, amino, aryl, carboxy, cyano, Ci-C6 haloalkyl, heteroaryl, hydroxyl, and phosphonooxy; wherein said aryl is optionally substituted with one hydroxyl group.
In some embodiments, R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: amino, tert- butoxycarbonylamino, methyl, teri-butoxycarbonyl, ethyl, hydroxyl, isopropyl, terf-butyl, fluoro, chloro, methoxy, methanesulfonyl, carboxy, trifluoromethoxy, difluoromethoxy, dimethylamino, methoxycarbonyl, ethoxycarbonyl, carboxy, carboxamide, trifluoromethyl, diethylamino, cyano, teri-butylamino, cyclopropyl, cyclobutyl, phenyl, bromo, 1-methyl- pyrrolidinyl, 2,2,2-trifluoroethyl, and l,l-dioxo-tetrahydro-^6-thiophen-3-yl.
In some embodiments, R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: amino, 1-teri-butoxycarbonylamino, methyl, 1-teri-butoxycarbonyl, ethyl, hydroxyl, isopropyl, tert-bv yl, fluoro, chloro, methoxy, methanesulfonyl, carboxy, trifluoromethoxy, difluoromethoxy, dimethylamino,
methoxycarbonyl, ethoxycarbonyl, carboxy, carboxamide, trifluoromethyl, diethylamino, cyano, teri-butylamino, cyclopropyl, cyclobutyl, phenyl, bromo, and 1 -methyl-pyrrolidinyl.
In some embodiments, R17 is selected from: H, Ci-C6 alkyl, Ci-C6 alkylamino, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, Ci-C6 haloalkyl, heteroaryl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said aryl and C3-C7 cycloalkyl are each optionally substituted with one or more substituents selected from: hydroxyl and trifluoromethyl.
In some embodiments, R17 is selected from: H, amino, 1-teri-butoxycarbonylamino, morpholin-4-yl, 4-methyl-piperidin-l-yl, piperidin-4-yl, l-teri-butoxycarbonyl-piperidin-3-yl, tetrahydro-thiopyran-4-yl, 1 -oxo-hexahydro- 1 λ4-thiopyran-4-yl, tetrahydro-pyran-4-yl, pyrrolidin-l-yl, l-teri-butoxycarbonyl-azetidin-3-yl, 2,6-dimethyl-morpholin-4-yl, piperidin-1- yl, l-teri-butoxycarbonyl-piperidin-4-yl, l,l-dioxo-hexahydro-^6-thiopyran-4-yl, tetrahydro- furan-2-yl, 1 -ethyl -pyrrolidin-2-yl, 1 -methyl -pyrrolidin-2-yl, morpholin-2-yl, 1-methyl- piperidin-2-yl, l-methyl-piperidin-4-yl, 4-hydroxy-l -methyl -piperidin-4-yl, thiomorpholin-4-yl, tetrahydro-furan-3-yl, l-teri-butoxycarbonyl-pyrrolidin-4-yl, l,2,2,6,6-pentamethyl-piperidin-4- yl, l,l-dioxo-tetrahydro-^6-thiophen-3-yl, 4-methyl-morpholin-2-yl, 4-teri-butoxycarbonyl - morpholin-2-yl, 1 -isopropyl-piperidin-4-yl,
Figure imgf000056_0001
3-methyl-l,l-dioxo-tetrahydro-^6-thiophen-3-yl, phenyl, 2-hydroxy-indan-l-yl, indan-l-yl, cyclopentyl, 2-hydroxy-cyclopentyl, cyclobutyl, 2-hydroxy-cyclohexyl, 1,3,3-trimethyl- bicyclo[2.2.1]hept-2-yl, 6,6-dimethyl-bicyclo[3.1.1]hept-2-yl, l-aza-bicyclo[2.2.2]oct-3-yl, 9- methyl-9-aza-bicyclo[3.3.1]non-l-yl, 3-azepan-l-yl, 2-fluoro-phenyl, 2-chloro-phenyl, 4-lluoro- phenyl, 4-chloro-phenyl, 3-lluoro-phenyl, 5-fluoro-2-methoxy-phenyl, 2-fluoro-4- methanesulfonyl-phenyl, 4-carboxy-2-lluoro-phenyl, 2,5-difluoro-phenyl, ra-tolyl, o-tolyl, 2,5- dimethyl-phenyl, 2,3-dimethyl-phenyl, 4-hydroxy-3-methoxy-phenyl, 2,4-dimethoxy-phenyl, 2,3-dimethoxy-phenyl, 3,5-dimethoxy-phenyl, 4-methoxy-phenyl, 3-methoxy-phenyl, 2- methoxy-phenyl, 3-hydroxy-phenyl, 4-hydroxy-phenyl, 2-hydroxy-phenyl, 5-fluoro-2-hydroxy- phenyl, 3-trilluoromethoxy-phenyl, 4-difluoromethoxy-phenyl, 3-difluoromethoxy-phenyl, 4- fluoro-phenoxy, 2-dimethylamino-phenyl, 4-dimethylamino-phenyl, 6-lluoro-4H- benzo[l,3]dioxin-8-yl, benzo[l,3]dioxol-5-yl, pyrimidin-2-yl, pyrimidin-4-yl, 2,6-dimethyl- pyrimidin-4-yl, pyridazin-3-yl, 5-methyl-pyrazin-2-yl, 6-methoxy-pyrimidin-4-yl, pyrazin-2-yl, 3,5-dimethyl-pyrazin-2-yl, 5-fluoro-2-oxo-2,3-dihydro-pyrimidin-4-yl, hydroxyl,
methoxycarbonyl, ethoxycarbonyl, carboxy, 1-piperidin-l-yl, carboxamide, methoxy, trilluoromethyl, methyl, tert-b tyl, diethylamino, dimethylamino, cyano, teri-butylamino, cyclopropyl, pyridin-3-yloxy, lH-tetrazol-5-yl, 5-methyl-[l,2,4]oxadiazol-3-yl, phosphonooxy, cyclobutylamino, phenylamino, l-teri-butyl-3-methylureido, 3-methyl-l-phenylureido, N-tert- butylmethylsulfonamido, l-cyclobutyl-3-methylureido, methylcarbamoyl, 5 -hydroxy- lH-indol- 3-yl, lH-benzoimidazol-2-yl, 5,7-dimethyl-pyrazolo[l,5-a]pyrimidin-2-yl, lH-benzoimidazol-2- yl, 2-(teri-butoxycarbonyl)- 3,4-dihydro-lH-isoquinoline-2-yl, quinolin-3-yl, quinolin-4-yl, 2- methyl-quinolin-4-yl, benzooxazol-2-yl, l-methyl-l,2,3,4-tetrahydro-quinolin-7-yl, 2,3-dihydro- benzofuran-3-yl, benzothiazol-2-yl, l,4-dimethyl-lH-pyrrol-2-yl, 3-methyl-3H-imidazol-4-yl, lH-imidazol-4-yl, 5-hydroxy-lH-pyrazol-3-yl, 1 -methyl- lH-pyrazol-3-yl, 4-pyridin-2-yl- thiazol-2-yl, 5-methyl-thiazol-2-yl, oxazol-4-yl, 4-phenyl-thiazol-2-yl, 5-teri-butyl-isoxazol-3- yl, pyridin-2-yl, pyridin-3-yl, pyridin-4-yl, 3-hydroxy-pyridin-2-yl, 6-hydroxy-pyridin-3-yl, 3- hydroxy-pyridin-4-yl, 4-hydroxy-pyridin-2-yl, 6-hydroxy-pyridin-2-yl, 2-hydroxy-pyridin-3-yl, 2-methoxy-pyridin-3-yl, 5-methoxy-pyridin-2-yl, 4-methoxy-pyridin-2-yl, 2-methoxy-pyridin-4- yl, 6-methoxy-pyridin-2-yl, 6-methoxy-pyridin-3-yl, 3-fluoro-pyridin-2-yl, 2-lluoro-pyridin-3- yl, 6-fluoro-pyridin-2-yl, 5-fluoro-pyridin-2-yl, 6-lluoro-pyridin-3-yl, 3-lluoro-pyridin-4-yl, 3- methyl-pyridin-2-yl, 3-methyl-pyridin-4-yl, 6-methyl-pyridin-2-yl, 4-methyl-pyridin-2-yl, 6- methyl-pyridin-3-yl, 2-methyl-pyridin-3-yl, 5-trifluoromethyl-pyridin-2-yl, 6-trifluoromethyl- pyridin-3-yl, 4-trifluoromethyl-pyridin-2-yl, 3-chloro-5-trifluoromethyl-pyridin-2-yl, 4,6- dimethyl-pyridin-2-yl, 4,6-dimethyl-pyridin-2-yl, 3-chloro-5-methyl-pyridin-2-yl, 6-cyano- pyridin-3-yl, 3-cyano-5-methyl-pyridin-2-yl, 3-cyano-5-methyl-pyridin-2-yl, 3-chloro-5-methyl- pyridin-2-yl, 2-chloro-pyridin-3-yl, 5-chloro-pyridin-2-yl, 6-chloro-2-methyl-pyridin-3-yl, 6- chloro-pyridin-3-yl, 3-chloro-pyridin-4-yl, 6-bromo-2-methyl-pyridin-3-yl, 5-bromo-3-methyl- pyridin-2-yl, 6-carboxypyridin-2-yl, 6-methanesulfonyl-4-methyl-pyridin-3-yl, 6- methanesulfonyl-4-methyl-pyridin-3-yl, 6-methanesulfonyl-2-methyl-pyridin-3-yl, 6- methanesulfonyl-pyridin-3-yl, 2,6-dimethoxy-pyridin-3-yl, 5-lluoro-l-oxy-pyridin-2-yl, 1-oxy- pyridin-2-yl, 6-pyrrolidin- 1 -yl-pyridin-2-ylmethyl, 5-( 1 -methyl-pyrrolidin-2-yl)-pyridin-2-yl, 6- morpholin-4-yl-pyridin-2-yl, 6-morpholin-4-yl-pyridin-3-yl, ethynyl, teri-butyl(methyl)amino, 2,2,2-trilluoroethyl, N-cyclobutylmethylsulfonamido, N-phenylmethylsulfonamido, hydroxy(methyl)amino, methoxy(methyl)amino, azetidin-l-yl, tert-b toxy, lluoromethyl, 2,2,2- trilluoroethylamino, and (l,l-dioxo-tetrahydro-^6-thiophen-3-yl)amino.
In some embodiments, R17 is selected from: H, amino, 1-teri-butoxycarbonylamino, morpholin-4-yl, 4-methyl-piperidin-l-yl, piperidin-4-yl, l-teri-butoxycarbonyl-piperidin-3-yl, tetrahydro-thiopyran-4-yl, 1 -oxo-hexahydro- 1 λ4-thiopyran-4-yl, tetrahydro-pyran-4-yl, pyrrolidin-l-yl, l-teri-butoxycarbonyl-azetidin-3-yl, 2,6-dimethyl-morpholin-4-yl, piperidin-1- yl, l-teri-butoxycarbonyl-piperidin-4-yl, l,l-dioxo-hexahydro-^6-thiopyran-4-yl, tetrahydro- furan-2-yl, 1 -ethyl -pyrrolidin-2-yl, 1 -methyl -pyrrolidin-2-yl, morpholin-2-yl, 1-methyl- piperidin-2-yl, l-methyl-piperidin-4-yl, 4-hydroxy-l -methyl -piperidin-4-yl, thiomorpholin-4-yl, tetrahydro-furan-3-yl, l-teri-butoxycarbonyl-pyrrolidin-4-yl, l,2,2,6,6-pentamethyl-piperidin-4- yl, l,l-dioxo-tetrahydro-^6-thiophen-3-yl, 4-methyl-morpholin-2-yl, 4-teri-butoxycarbonyl - morpholin-2-yl, 1 -isopropyl-piperidin-4-yl,
Figure imgf000057_0001
3-methyl-l,l-dioxo-tetrahydro-^6-thiophen-3-yl, phenyl, 2-hydroxy-indan-l-yl, indan-l-yl, cyclopentyl, 2-hydroxy-cyclopentyl, cyclobutyl, 2-hydroxy-cyclohexyl, 1,3,3-trimethyl- bicyclo[2.2.1]hept-2-yl, 6,6-dimethyl-bicyclo[3.1.1]hept-2-yl, l-aza-bicyclo[2.2.2]oct-3-yl, 9- methyl-9-aza-bicyclo[3.3.1]non-l-yl, 3-azepan-l-yl, 2-fluoro-phenyl, 2-chloro-phenyl, 4-fluoro- phenyl, 4-chloro-phenyl, 3-fluoro-phenyl, 5-fluoro-2-methoxy-phenyl, 2-fluoro-4- methanesulfonyl-phenyl, 4-carboxy-2-fluoro-phenyl, 2,5-difluoro-phenyl, ra-tolyl, o-tolyl, 2,5- dimethyl-phenyl, 2,3-dimethyl-phenyl, 4-hydroxy-3-methoxy-phenyl, 2,4-dimethoxy-phenyl, 2,3-dimethoxy-phenyl, 3,5-dimethoxy-phenyl, 4-methoxy-phenyl, 3-methoxy-phenyl, 2- methoxy-phenyl, 3-hydroxy-phenyl, 4-hydroxy-phenyl, 2-hydroxy-phenyl, 5-fluoro-2-hydroxy- phenyl, 3-trifluoromethoxy-phenyl, 4-difluoromethoxy-phenyl, 3-difluoromethoxy-phenyl, 4- fluoro-phenoxy, 2-dimethylamino-phenyl, 4-dimethylamino-phenyl, 6-fluoro-4H- benzo[l,3]dioxin-8-yl, benzo[l,3]dioxol-5-yl, pyrimidin-2-yl, pyrimidin-4-yl, 2,6-dimethyl- pyrimidin-4-yl, pyridazin-3-yl, 5-methyl-pyrazin-2-yl, 6-methoxy-pyrimidin-4-yl, pyrazin-2-yl, 3,5-dimethyl-pyrazin-2-yl, 5-fluoro-2-oxo-2,3-dihydro-pyrimidin-4-yl, hydroxyl,
methoxycarbonyl, ethoxycarbonyl, carboxy, 1-piperidin-l-yl, carboxamide, methoxy, trifluoromethyl, methyl, tert-b tyl, diethylamino, dimethylamino, cyano, teri-butylamino, cyclopropyl, pyridin-3-yloxy, lH-tetrazol-5-yl, 5-methyl-[l,2,4]oxadiazol-3-yl, phosphonooxy, cyclobutylamino, phenylamino, l-teri-butyl-3-methylureido, 3-methyl-l-phenylureido, N-tert- butylmethylsulfonamido, l-cyclobutyl-3-methylureido, methylcarbamoyl, 5 -hydroxy- lH-indol- 3-yl, lH-benzoimidazol-2-yl, 5,7-dimethyl-pyrazolo[l,5-a]pyrimidin-2-yl, lH-benzoimidazol-2- yl, 2-(teri-butoxycarbonyl)- 3,4-dihydro-lH-isoquinoline-2-yl, quinolin-3-yl, quinolin-4-yl, 2- methyl-quinolin-4-yl, benzooxazol-2-yl, l-methyl-l,2,3,4-tetrahydro-quinolin-7-yl, 2,3-dihydro- benzofuran-3-yl, benzothiazol-2-yl, l,4-dimethyl-lH-pyrrol-2-yl, 3-methyl-3H-imidazol-4-yl, lH-imidazol-4-yl, 5-hydroxy-lH-pyrazol-3-yl, 1 -methyl- lH-pyrazol-3-yl, 4-pyridin-2-yl- thiazol-2-yl, 5-methyl-thiazol-2-yl, oxazol-4-yl, 4-phenyl-thiazol-2-yl, 5-teri-butyl-isoxazol-3- yl, pyridin-2-yl, pyridin-3-yl, pyridin-4-yl, 3-hydroxy-pyridin-2-yl, 6-hydroxy-pyridin-3-yl, 3- hydroxy-pyridin-4-yl, 4-hydroxy-pyridin-2-yl, 6-hydroxy-pyridin-2-yl, 2-hydroxy-pyridin-3-yl, 2-methoxy-pyridin-3-yl, 5-methoxy-pyridin-2-yl, 4-methoxy-pyridin-2-yl, 2-methoxy-pyridin-4- yl, 6-methoxy-pyridin-2-yl, 6-methoxy-pyridin-3-yl, 3-fluoro-pyridin-2-yl, 2-fluoro-pyridin-3- yl, 6-fluoro-pyridin-2-yl, 5-fluoro-pyridin-2-yl, 6-lluoro-pyridin-3-yl, 3-lluoro-pyridin-4-yl, 3- methyl-pyridin-2-yl, 3-methyl-pyridin-4-yl, 6-methyl-pyridin-2-yl, 4-methyl-pyridin-2-yl, 6- methyl-pyridin-3-yl, 2-methyl-pyridin-3-yl, 5-trilluoromethyl-pyridin-2-yl, 6-trifluoromethyl- pyridin-3-yl, 4-trifluoromethyl-pyridin-2-yl, 3-chloro-5-trifluoromethyl-pyridin-2-yl, 4,6- dimethyl-pyridin-2-yl, 4,6-dimethyl-pyridin-2-yl, 3-chloro-5-methyl-pyridin-2-yl, 6-cyano- pyridin-3-yl, 3-cyano-5-methyl-pyridin-2-yl, 3-cyano-5-methyl-pyridin-2-yl, 3-chloro-5-methyl- pyridin-2-yl, 2-chloro-pyridin-3-yl, 5-chloro-pyridin-2-yl, 6-chloro-2-methyl-pyridin-3-yl, 6- chloro-pyridin-3-yl, 3-chloro-pyridin-4-yl, 6-bromo-2-methyl-pyridin-3-yl, 5-bromo-3-methyl- pyridin-2-yl, 6-carboxypyridin-2-yl, 6-methanesulfonyl-4-methyl-pyridin-3-yl, 6- methanesulfonyl-4-methyl-pyridin-3-yl, 6-methanesulfonyl-2-methyl-pyridin-3-yl, 6- methanesulfonyl-pyridin-3-yl, 2,6-dimethoxy-pyridin-3-yl, 5-lluoro-l-oxy-pyridin-2-yl, 1-oxy- pyridin-2-yl, 6-pyrrolidin- 1 -yl-pyridin-2-ylmethyl, 5-( 1 -methyl-pyrrolidin-2-yl)-pyridin-2-yl, 6- morpholin-4-yl-pyridin-2-yl, 6-morpholin-4-yl-pyridin-3-yl, ethynyl, teri-butyl(methyl)amino, 2,2,2-trilluoroethyl, N-cyclobutylmethylsulfonamido, N-phenylmethylsulfonamido, hydroxy(methyl)amino, methoxy(methyl)amino, azetidin-l-yl, and teri-butoxy.
In some embodiments, R17 is selected from: is selected from: amino, 2-hydroxy-indan- 1-yl, hydroxyl, carboxy, trifluoromethyl, methyl, tert-bvAyl, cyano, teri-butylamino, phosphonooxy, pyridin-2-yl, and fluoromethyl.
In some embodiments, R17 is Η. In some embodiments, R17 is amino. In some embodiments, R17 is 1-teri-butoxycarbonylamino. In some embodiments, R17 is morpholin-4-yl. In some embodiments, R is 4-methyl-piperidin-l-yl. In some embodiments, R is piperidin-4- yl. In some embodiments, R17 is l-teri-butoxycarbonyl-piperidin-3-yl. In some embodiments, R17 is tetrahydro-thiopyran-4-yl. In some embodiments, R17 is l-oxo-hexahydro-^4-thiopyran- 4-yl. In some embodiments, R17 is tetrahydro-pyran-4-yl. In some embodiments, R17 is pyrrolidin-l-yl. In some embodiments, R17 is l-teri-butoxycarbonyl-azetidin-3-yl. In some embodiments, R17 is 2,6-dimethyl-morpholin-4-yl. In some embodiments, R17 is piperidin-l-yl. In some embodiments, R17 is l-teri-butoxycarbonyl-piperidin-4-yl. In some embodiments, R17 is l,l-dioxo-hexahydro-^6-thiopyran-4-yl. In some embodiments, R17 is tetrahydro-furan-2-yl. In some embodiments, R17 is l-ethyl-pyrrolidin-2-yl. In some embodiments, R17 is 1-methyl- pyrrolidin-2-yl. In some embodiments, R17 is morpholin-2-yl. In some embodiments, R17 is 1- methyl-piperidin-2-yl. In some embodiments, R17 is 1 -methyl -piperidin-4-yl. In some embodiments, R17 is 4-hydroxy-l-methyl-piperidin-4-yl. In some embodiments, R17 is thiomorpholin-4-yl. In some embodiments, R17 is tetrahydro-furan-3-yl. In some embodiments, R17 is l-teri-butoxycarbonyl-pyrrolidin-4-yl. In some embodiments, R17 is 1,2,2,6,6- pentamethyl-piperidin-4-yl. In some embodiments, R17 is l,l-dioxo-tetrahydro-^6-thiophen-3- yl. In some embodiments, R17 is 4-methyl-morpholin-2-yl. In some embodiments, R17 is 4-tert- butoxycarbonyl -morpholin-2-yl. In some embodiments, R17 is l-isopropyl-piperidin-4-yl. In some embodiments, R17 is 4-hydroxy-l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R17 is 3-methyl-l,l-dioxo-tetrahydro-^6-thiophen-3-yl. In some embodiments, R17 is phenyl. In some embodiments, R17 is 2-hydroxy-indan-l-yl. In some embodiments, R17 is indan-l-yl. In some embodiments, R17 is cyclopentyl. In some embodiments, R17 is 2-hydroxy- cyclopentyl. In some embodiments, R17 is cyclobutyl. In some embodiments, R17 is 2-hydroxy- cyclohexyl. In some embodiments, R17 is l,3,3-trimethyl-bicyclo[2.2.1]hept-2-yl. In some embodiments, R17 is 6,6-dimethyl-bicyclo[3.1.1]hept-2-yl. In some embodiments, R17 is 1-aza- bicyclo[2.2.2]oct-3-yl. In some embodiments, R17 is 9-methyl-9-aza-bicyclo[3.3.1]non-l-yl. In some embodiments, R17 is 3-azepan-l-yl. In some embodiments, R17 is 2-iluoro-phenyl. In some embodiments, R17 is 2-chloro-phenyl. In some embodiments, R17 is 4-iluoro-phenyl. In some embodiments, R17 is 4-chloro-phenyl. In some embodiments, R17 is 3-iluoro-phenyl. In some embodiments, R17 is 5-iluoro-2-methoxy-phenyl. In some embodiments, R17 is 2-fluoro-4- methanesulfonyl-phenyl. In some embodiments, R17 is 4-carboxy-2-iluoro-phenyl. In some embodiments, R17 is 2,5-diiluoro-phenyl. In some embodiments, R17 is ra-tolyl. In some embodiments, R17 is o-tolyl. In some embodiments, R17 is 2,5-dimethyl-phenyl. In some embodiments, R17 is 2,3-dimethyl-phenyl. In some embodiments, R17 is 4-hydroxy-3-methoxy- phenyl. In some embodiments, R17 is 2,4-dimethoxy-phenyl. In some embodiments, R17 is 2,3- dimethoxy-phenyl. In some embodiments, R17 is 3,5-dimethoxy-phenyl. In some embodiments, R17 is 4-methoxy-phenyl. In some embodiments, R17 is 3-methoxy-phenyl. In some
embodiments, R17 is 2-methoxy-phenyl. In some embodiments, R17 is 3-hydroxy-phenyl. In some embodiments, R is 4-hydroxy-phenyl. In some embodiments, R is 2-hydroxy-phenyl. In some embodiments, R17 is 5-fluoro-2-hydroxy-phenyl. In some embodiments, R17 is 3- trifluoromethoxy-phenyl. In some embodiments, R17 is 4-difluoromethoxy-phenyl. In some embodiments, R17 is 3-difluoromethoxy-phenyl. In some embodiments, R17 is 4-fluoro-phenoxy. In some embodiments, R17 is 2-dimethylamino-phenyl. In some embodiments, R17 is 4- dimethylamino-phenyl. In some embodiments, R17 is 6-fluoro-4H-benzo[l ,3]dioxin-8-yl. In some embodiments, R17 is benzo[l ,3]dioxol-5-yl. In some embodiments, R17 is pyrimidin-2-yl. In some embodiments, R17 is pyrimidin-4-yl. In some embodiments, R17 is 2,6-dimethyl- pyrimidin-4-yl. In some embodiments, R17 is pyridazin-3-yl. In some embodiments, R17 is 5- methyl-pyrazin-2-yl. In some embodiments, R17 is 6-methoxy-pyrimidin-4-yl. In some embodiments, R17 is pyrazin-2-yl. In some embodiments, R17 is 3,5-dimethyl-pyrazin-2-yl. In some embodiments, R17 is 5-fluoro-2-oxo-2,3-dihydro-pyrimidin-4-yl. In some embodiments, R17 is hydroxyl. In some embodiments, R17 is methoxycarbonyl. In some embodiments, R17 is ethoxycarbonyl. In some embodiments, R17 is carboxy. In some embodiments, R17 is 1- piperidin-l -yl. In some embodiments, R17 is carboxamide. In some embodiments, R17 is methoxy. In some embodiments, R17 is trifluoromethyl. In some embodiments, R17 is methyl. In some embodiments, R17 is teri-butyl. In some embodiments, R17 is diethylamino. In some embodiments, R17 is dimethylamino. In some embodiments, R17 is cyano. In some embodiments, R17 is teri-butylamino. In some embodiments, R17 is cyclopropyl. In some embodiments, R17 is pyridin-3-yloxy. In some embodiments, R17 is lH-tetrazol-5-yl. In some embodiments, R17 is 5- methyl-[l ,2,4]oxadiazol-3-yl. In some embodiments, R17 is phosphonooxy. In some
embodiments, R17 is cyclobutylamino. In some embodiments, R17 is phenylamino. In some embodiments, R17 is l-teri-butyl-3-methylureido. In some embodiments, R17 is 3-methyl-l - phenylureido. In some embodiments, R17 is N-teri-butylmethylsulfonamido. In some embodiments, R17 is l-cyclobutyl-3-methylureido. In some embodiments, R17 is
methylcarbamoyl. In some embodiments, R17 is 5-hydroxy-lH-indol-3-yl. In some
embodiments, R17 is lH-benzoimidazol-2-yl. In some embodiments, R17 is 5,7-dimethyl- pyrazolo[l ,5-a]pyrimidin-2-yl. In some embodiments, R17 is lH-benzoimidazol-2-yl. In some embodiments, R17 is 2-(teri-butoxycarbonyl)- 3,4-dihydro-lH-isoquinoline-2-yl. In some embodiments, R17 is quinolin-3-yl. In some embodiments, R17 is quinolin-4-yl. In some embodiments, R17 is 2-methyl-quinolin-4-yl. In some embodiments, R17 is benzooxazol-2-yl. In some embodiments, R17 is l-methyl-l ,2,3,4-tetrahydro-quinolin-7-yl. In some embodiments, R17 is 2,3-dihydro-benzofuran-3-yl. In some embodiments, R17 is benzothiazol-2-yl. In some embodiments, R17 is l ,4-dimethyl-lH-pyrrol-2-yl. In some embodiments, R17 is 3-methyl-3H- imidazol-4-yl. In some embodiments, R17 is lH-imidazol-4-yl. In some embodiments, R17 is 5- hydroxy-lH-pyrazol-3-yl. In some embodiments, R17 is 1 -methyl- lH-pyrazol-3-yl. In some embodiments, R17 is 4-pyridin-2-yl-thiazol-2-yl. In some embodiments, R17 is 5-methyl-thiazol- 2-yl. In some embodiments, R is oxazol-4-yl. In some embodiments, R is 4-phenyl-thiazol-2- yl. In some embodiments, R17 is 5-teri-butyl-isoxazol-3-yl. In some embodiments, R17 is pyridin-2-yl. In some embodiments, R17 is pyridin-3-yl. In some embodiments, R17 is pyridin-4- yl. In some embodiments, R17 is 3-hydroxy-pyridin-2-yl. In some embodiments, R17 is 6- hydroxy-pyridin-3-yl. In some embodiments, R17 is 3-hydroxy-pyridin-4-yl. In some embodiments, R17 is 4-hydroxy-pyridin-2-yl. In some embodiments, R17 is 6-hydroxy-pyridin-2- yl. In some embodiments, R17 is 2-hydroxy-pyridin-3-yl. In some embodiments, R17 is 2- methoxy-pyridin-3-yl. In some embodiments, R17 is 5-methoxy-pyridin-2-yl. In some embodiments, R17 is 4-methoxy-pyridin-2-yl. In some embodiments, R17 is 2-methoxy-pyridin- 4-yl. In some embodiments, R17 is 6-methoxy-pyridin-2-yl. In some embodiments, R17 is 6- methoxy-pyridin-3-yl. In some embodiments, R17 is 3-fluoro-pyridin-2-yl. In some
embodiments, R17 is 2-fluoro-pyridin-3-yl. In some embodiments, R17 is 6-fluoro-pyridin-2-yl. In some embodiments, R17 is 5-fluoro-pyridin-2-yl. In some embodiments, R17 is 6-fluoro- pyridin-3-yl. In some embodiments, R17 is 3-fluoro-pyridin-4-yl. In some embodiments, R17 is 3- methyl-pyridin-2-yl. In some embodiments, R17 is 3-methyl-pyridin-4-yl. In some embodiments, R17 is 6-methyl-pyridin-2-yl. In some embodiments, R17 is 4-methyl-pyridin-2-yl. In some embodiments, R17 is 6-methyl-pyridin-3-yl. In some embodiments, R17 is 2-methyl-pyridin-3-yl. In some embodiments, R17 is 5-triiluoromethyl-pyridin-2-yl. In some embodiments, R17 is 6- trifluoromethyl-pyridin-3-yl. In some embodiments, R17 is 4-triiluoromethyl-pyridin-2-yl. In some embodiments, R17 is 3-chloro-5-triiluoromethyl-pyridin-2-yl. In some embodiments, R17 is 4,6-dimethyl-pyridin-2-yl. In some embodiments, R17 is 4,6-dimethyl-pyridin-2-yl. In some embodiments, R17 is 3-chloro-5-methyl-pyridin-2-yl. In some embodiments, R17 is 6-cyano- pyridin-3-yl. In some embodiments, R17 is 3-cyano-5-methyl-pyridin-2-yl. In some
embodiments, R17 is 3-cyano-5-methyl-pyridin-2-yl. In some embodiments, R17 is 3-chloro-5- methyl-pyridin-2-yl. In some embodiments, R17 is 2-chloro-pyridin-3-yl. In some embodiments, R17 is 5-chloro-pyridin-2-yl. In some embodiments, R17 is 6-chloro-2-methyl-pyridin-3-yl. In some embodiments, R17 is 6-chloro-pyridin-3-yl. In some embodiments, R17 is 3-chloro-pyridin-
4- yl. In some embodiments, R17 is 6-bromo-2-methyl-pyridin-3-yl. In some embodiments, R17 is
5- bromo-3-methyl-pyridin-2-yl. In some embodiments, R17 is 6-carboxypyridin-2-yl. In some embodiments, R17 is 6-methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R17 is 6- methanesulfonyl-4-methyl-pyridin-3-yl. In some embodiments, R17 is 6-methanesulfonyl-2- methyl-pyridin-3-yl. In some embodiments, R17 is 6-methanesulfonyl-pyridin-3-yl. In some embodiments, R17 is 2,6-dimethoxy-pyridin-3-yl. In some embodiments, R17 is 5-fluoro-l-oxy- pyridin-2-yl. In some embodiments, R17 is l-oxy-pyridin-2-yl. In some embodiments, R17 is 6- pyrrolidin-l-yl-pyridin-2-ylmethyl. In some embodiments, R17 is 5-(l-methyl-pyrrolidin-2-yl)- pyridin-2-yl. In some embodiments, R17 is 6-morpholin-4-yl-pyridin-2-yl. In some
embodiments, R17 is 6-morpholin-4-yl-pyridin-3-yl. In some embodiments, R17 is ethynyl. In some embodiments, R is teri-butyl(methyl)amino. In some embodiments, R is 2,2,2- trifluoroethyl. In some embodiments, R17 is N-cyclobutylmethylsulfonamido. In some embodiments, R17 is N-phenylmethylsulfonamido. In some embodiments, R17 is
hydroxy(methyl)amino. In some embodiments, R17 is methoxy(methyl)amino. In some embodiments, R17 is azetidin-l-yl. In some embodiments, R17 is teri-butoxy. In some embodiments, R17 is fluoromethyl. In some embodiments, R17 is 2,2,2-trifluoroethylamino. In some embodiments, R17 is (l,l-dioxo-tetrahydro-^6-thiophen-3-yl)amino.
Certain R15 and R17 Combinations:
In some embodiments, R15 is selected from: -C(0)NH-, -C(O)-, C1-C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo- Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7
cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl.
Certain Combinations:
In some embodiments, R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C C6 alkyl.
In some embodiments, R1 and R6 are each independently selected from: H, and C1-C6 alkyl; and R2, R3, R4, and R5 are each H.
In some embodiments, R1, R2, R3, R4, R5, and R6 are each independently selected from: H, methyl, and isopropyl.
In some embodiments, R1 is selected from: H and methyl; R2, R3, R4, and R5 are each H; and R6 is selected from: H and is isopropyl.
In some embodiments, R1 is methyl; R2, R3, R4, and R5 are each H; and R6 is isopropyl. In some embodiments, R1, R2, R3, R4, R5, and R6 are each H.
In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl.
In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-cyclohexylmethyl-piperazin-l-yl, hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl, 5,7- dihydro-pyrrolo[3,4-b]pyridin-6-yl, 4-methoxy-2,3-dihydro-indol- 1 -yl, 2-phenyl-pyrrolidin- 1 -yl, 2-pyridin-2-yl-thiomorpholin-4-yl, 2-hydroxymethyl-2,3-dihydro-indol- 1 -yl, 4-hydroxy- piperidin-1 -yl, hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl, 7-(methoxycarbonyl)-3,4-dihydro-lH- isoquinolin-2-yl, 7-methoxy-3,4-dihydro-lH-isoquinolin-2-yl, l ,4,6,7-tetrahydro-imidazo[4,5- c] pyridin-5 -yl, 5 -fluoro- 1 ,3 -dihydro-isoindol-2-yl, 3 -hydroxy-7 , 8 -dihydro-5H- [1 ,6]naphthyridin-6-yl, 4-(teri-butoxycarbonyl)-2-(hydroxymethyl)piperazin- 1 -yl, 1 ,3-dihydro- isoindol-2-yl, 3-trifluoromethyl-5,6-dihydro-8H-[l ,2,4]triazolo[4,3-a]pyrazin-7-yl, 4-morpholin- 4-yl-piperidin- 1 -yl, 3 ,4-dihydro- 1 H-isoquinolin-2-yl, 4-(3 -methoxy-pyridin-2-yl)-piperazin- 1 - yl, 3-hydroxy-piperidin-l-yl, 4-(3-chloro-phenyl)-piperazin-l -yl, 6-methoxy-3,4-dihydro-lH- isoquinolin-2-yl, morpholin-4-yl, 2-hydroxymethyl-pyrrolidin-l-yl, l ,3-dihydro-pyrrolo[3,4- c]pyridin-2-yl, 3-pyridin-4-yl-pyrrolidin-l-yl, 4-(pyridin-2-yloxy)-piperidin-l-yl, 3-pyridin-2- yl-pyrrolidin- 1 -yl, 7-methyl-3 ,4-dihydro-2H- [ 1 ,8] naphthyridin- 1 -yl, 3-pyridin-3-yl-pyrrolidin- 1 - yl, 3-hydroxy-pyrrolidin-l-yl, 4-(4,6-dimethyl-pyrimidin-2-yl)-piperazin-l -yl, 2-methyl-3,4- dihydro-2H-quinolin-l-yl, 2-phenyl-morpholin-4-yl or pyrazin-2-yl.
In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-cyclohexylmethyl-piperazin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form hexahydro-pyrrolo[l ,2-a]pyrazin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 5,7-dihydro-pyrrolo[3,4-b]pyridin-6-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-methoxy-2,3-dihydro-indol-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2- phenyl-pyrrolidin-l -yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2-pyridin-2-yl-thiomorpholin-4-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2-hydroxymethyl- 2,3-dihydro-indol-l -yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-hydroxy-piperidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form hexahydro-pyrrolo[l,2- a]pyrazin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 7-(methoxycarbonyl)-3,4-dihydro-lH-isoquinolin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 7- methoxy-3,4-dihydro-lH-isoquinolin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form l ,4,6,7-tetrahydro-imidazo[4,5-c]pyridin-5- yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 5-fluoro-l,3-dihydro-isoindol-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-7,8-dihydro-5H- [l,6]naphthyridin-6-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-(teri-butoxycarbonyl)-2-(hydroxymethyl)piperazin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form l,3-dihydro-isoindol-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-trifluoromethyl-5,6-dihydro-8H-[l,2,4]triazolo[4,3- a]pyrazin-7-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-morpholin-4-yl-piperidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3,4-dihydro-lH- isoquinolin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-(3-methoxy-pyridin-2-yl)-piperazin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-piperidin-l- yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-(3-chloro-phenyl)-piperazin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 6-methoxy-3,4-dihydro-lH-isoquinolin- 2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form morpholin-4-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2-hydroxymethyl-pyrrolidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 1,3-dihydro- pyrrolo[3,4-c]pyridin-2-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-pyridin-4-yl-pyrrolidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-(pyridin-2-yloxy)- piperidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-pyridin-2-yl-pyrrolidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 7-methyl-3,4-dihydro-2H- [l,8]naphthyridin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-pyridin-3-yl-pyrrolidin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 3-hydroxy-pyrrolidin-l- yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 4-(4,6-dimethyl-pyrimidin-2-yl)-piperazin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2-methyl-3,4-dihydro-2H- quinolin-l-yl. In some embodiments, R8 and R9 together with the nitrogen atom to which they are both bonded form 2-phenyl-morpholin-4-yl or pyrazin-2-yl.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof is selected from compounds of Formula Ie and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000065_0001
le
wherein:
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl.
In some embodiments, the compound of Formula la is selected from the following compounds and pharmaceutically acceptable salts, solvates, hydrates and/or N-oxides thereof:
Compound 151 : ( 1 aR,5aR)-2-(5 -Chloro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)-amide;
Compound 174: (laR,5aR)-2-(2,4-Dichloro-phenyl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid ( 1 -hydroxymethyl-cyclopropyl)-amide;
Compound 264: (laR,5aR)-2-(5-Cyano-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)-amide;
Compound 309: ( 1 aR,5aR)-2-(5 -Fluoro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)-amide;
Compound 493: (laR,5aR)-2-(2,4-Difluoro-phenyl)-l a,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy- l ,l-dimethyl-ethyl)-amide;
Compound 515: l-(2,4-Difluoro-phenyl)-3b,4,4a,5-tetrahydro-lH- cyclopropa[3,4]cyclopenta[l ,2-c]pyrazole-3-carboxylic acid (2-hydroxy- 1 ,1 -dime thyl-ethyl)- amide;
Compound 593: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid teri-butylamide;
Compound 625: (laR,5aR)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa [a] pentalene-4-carboxylic acid (cy ano-dimethyl-methyl) -amide ;
Compound 642: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide;
Compound 644: (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)-amide;
Compound 646: Phosphoric acid mono-(2-{ [(laR,5aR)-2-(4-cyano-pyridin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino} -2-methyl- propyl) ester; Compound 667: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid [2,2-dimethyl-l-((S)-methylcarbamoyl)-propyl]- amide;
Compound 683: Phosphoric acid mono-{ (5)-3,3-dimethyl-2-[((laR,5aR)-2-pyrazin-2- yl-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl)-amino]-butyl} ester;
Compound 684: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2-hydroxy-l-tetrahydro-pyran-4-yl-ethyl)-amide;
Compound 690: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -hydroxymethyl-2-methyl-propyl)-amide;
Compound 696: (la5,5a5)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide;
Compound 698: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-hydroxymethyl-cyclobutyl)-amide;
Compound 699: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide;
Compound 700: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -pyridin-2-yl-cyclobutyl)-amide;
Compound 703: Phosphoric acid mono-((5)-3,3-dimethyl-2-{ [(laR,5aR)-2-(4-oxy- pyrazin-2-yl)-la,2,5,5a^etrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}- butyl) ester;
Compound 704: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2,2-dimethyl-l -methylcarbamoyl-propyl)-amide;
Compound 722: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-methylcarbamoyl-phenyl-methyl)-amide;
Compound 746: (5)-3,3-Dimethyl-2-{ [(laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino} -butyric acid methyl ester;
Compound 764: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -trifluoromethyl-cyclopropyl)-amide;
Compound 765: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trilluoromethyl-cyclobutyl)-amide;
Compound 766: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((R)-2,2-dimethyl- 1 -pyridin-2-yl-propyl)-amide;
Compound 767: ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2,2-dimethyl-l -pyridin-2-yl-propyl)-amide;
Compound 820: (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa [a] pentalene-4-carboxylic acid (2-hydroxy- 1 -hydroxymethyl- 1 -methyl-ethyl) - amide; Compound 821 : ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-methyl-cyclobutyl)-amide;
Compound 828: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((R)-l ,2-dimethyl-propyl)-amide;
Compound 841: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid [(5)-2-hydroxy-l-(tetrahydro-pyran-4-yl)-ethyl]- amide;
Compound 844: (laR,5aR)-Pentanedioic acid mono-((5)-3-methyl-2-{ [(laR,5aR)-2-(4- oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]- amino} -butyl) ester;
Compound 848: (laS,5aS)-(S)-2-Amino-3-methyl-butyric acid (S)-3,3-dimethyl-2-{ [2- (4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]- amino} -butyl ester;
Compound 889: ( 1 aS,5aS)-2-(4-Chloro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3- diaza-cyclopropa [a] pentalene-4-carboxy lie acid (2-fluoro- 1-lluoromethyl-l -hydroxymethyl- ethyl)-amide;
Compound 891: (la5,5a5)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-3,3,3-trifluoro-l -hydroxymethyl-propyl)- amide;
Compound 896: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2-methyl-propyl)-amide;
Compound 897: ( 1 aS,5aS)-2-(4-Chloro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-fluoro- 1 , 1 -dimethyl -ethyl)-amide;
Compound 902: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid N' -teri-butyl-hydrazide;
Compound 904: ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid (2-fluoro- 1 , 1 -dimethyl -ethyl) -amide;
Compound 912: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((R)-l ,2-dimethyl-propyl)-amide;
Compound 913: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2-hydroxy-l-phenyl-ethyl)-amide;
Compound 918: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -fluoromethyl-2,2-dimethyl-propyl)-amide;
Compound 919: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trilluoro- 1 , 1 -dimethyl-ethyl)-amide;
Compound 920: ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((15,25)-2-hydroxy-indan-l-yl)-amide; Compound 921 : ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((lS,2R)-2-hydroxy-indan-l-yl)-amide;
Compound 924: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -fluoromethyl-cyclobutyl)-amide;
Compound 926: (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trifluoromethyl-cyclobutyl)-amide;
Compound 927: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trifluoro- 1 , 1 -dimethyl-ethyl)-amide;
Compound 930: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trifluoromethyl-cyclopropyl)-amide; and
Compound 931: (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)-amide.
In some embodiments, the compound of Formula la is selected from the following compounds and pharmaceutically acceptable salts, solvates, hydrates and/or N-oxides thereof:
Compound 699: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide;
Compound 764: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -trifluoromethyl-cyclopropyl)-amide;
Compound 765: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trifluoromethyl-cyclobutyl)-amide;
Compound 919: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trifluoro- 1 , 1 -dimethyl-ethyl)-amide;
Compound 921 : ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid ((15,2R)-2-hydroxy-indan-l-yl)-amide; and
Compound 926: (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -trifluoromethyl-cyclobutyl)-amide.
In some embodiments, the compound of Formula la is (laS,5aS)-2-(4-Oxy-pyrazin-2- yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l - hydroxymethyl-2,2-dimethyl-propyl)-amide or a pharmaceutically acceptable salt, solvate, and/or hydrate, thereof.
Provided is an anhydrous form of (laS,5aS)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethyl-propyl)-amide. The physical properties of the crystalline form of (la5,5a5)-2-(4-Oxy- pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)- l-hydroxymethyl-2,2-dimethyl-propyl)-amide (anhydrous form) are summarized in the table below. Compound 699 (Anhydrous Form)
PXRD Figure 11: Peaks of about > 8.7% relative intensity at 8.5, 9.8, 10.7,
11.1, 11.8, 14.5, 16.5, 16.9, 17.4, 18.9, 22.1, and 25.4 °2Θ
TGA Figure 12: Decrease in weight of about 0.24% out to about 150 °C
DSC Figure 12: Endotherm extrapolated onset temperature: about 162 °C
DMS Figure 13: The adsorption/desorption isotherm shows about 1.0% or
less weight change from about 10% relative humidity (RH) to about 90% RH; and about 0.1% or less weight change after a 10% RH to
90% RH back to 10% RH cycle, See Example 10.
Certain X-ray powder diffraction peaks for the anhydrous form of (laS,5aS)-2-(4-oxy- pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)- l-hydroxymethyl-2,2-dimethyl-propyl)-amide are shown in the table below.
Figure imgf000070_0001
Also provided is an anhydrous crystalline form of (laS,5aS)-2-(4-oxy-pyrazin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l- hydroxymethyl-2,2-dimethyl-propyl)-amide.
Also provided is an anhydrous crystalline form of (laS,5aS)-2-(4-oxy-pyrazin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l- hydroxymethyl-2,2-dimethyl-propyl)-amide having an X-ray powder diffraction pattern comprising a peak, in terms of 2Θ, at 8.5° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, and 10.7° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X- ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, 10.7° ± 0.2°, and 16.9° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, and 11.1° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X- ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1° ± 0.2°, 9.8° ± 0.2°, and 17.4° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1° ± 0.2°, 9.8° ± 0.2°, 17.4° ± 0.2°, 22.1° ± 0.2°, and 16.5° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern comprising peaks, in terms of 20, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1° ± 0.2°, 9.8° ± 0.2°, 17.4° ± 0.2°, 22.Γ ± 0.2°, 16.5° ± 0.2°, 14.5° ± 0.2°, 11.8° ± 0.2°, and 18.9° ± 0.2°. In some embodiments, the anhydrous crystalline form has an X-ray powder diffraction pattern substantially as shown in Figure 11, wherein by "substantially" is meant that the reported peaks can vary by about ± 0.2 °20
In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 159.6 °C and about 169.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 160.6 °C and about 168.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about
162.6 °C and about 166.6 °C. In some embodiments, the anhydrous crystalline form has having a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 163.6 °C and about 165.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature at about 164.6 °C. In some embodiments, the anhydrous crystalline form has a differential scanning calorimetry thermogram substantially as shown in Figure 12, wherein by "substantially" is meant that the reported DSC features can vary by about ± 4 °C and that the reported DSC features can vary by about ± 20 joules per gram.
In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.5% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.25% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C. In some embodiments, the anhydrous crystalline form has a thermogravimetric analysis profile substantially as shown in Figure 12, wherein by "substantially" is meant that the reported TGA features can vary by about ± 5 °C, and that that the reported TGA features can vary by about ± 2% weight change. Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, and 10.7° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 159.6 °C and about 169.6 °C; and
3) a thermogravimetric analysis profile showing about 0.5% weight loss below about 135 °C.
Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, 10.7° ± 0.2°, and 16.9° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 160.6 °C and about 168.6 °C; and
3) a thermogravimetric analysis profile showing about 0.25% weight loss below about 135 °C.
Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, and 11.1 ° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 162.6 °C and about 166.6 °C; and
3) a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ± 0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1 ° ± 0.2°, 9.8° ± 0.2°, and 17.4° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature between about 163.6 °C and about 165.6 °C; and
3) a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ±
0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1 ° ± 0.2°, 9.8° ± 0.2°, 17.4° ± 0.2°, 22.1 ° ± 0.2°, and 16.5° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature at about 164.6 °C; and
3) a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
Also pro vided is an anhydrous crystalline form having:, 1) an X-ray powder diffraction pattern comprising peaks, in terms of 2Θ, at 8.5° ±
0.2°, 10.7° ± 0.2°, 16.9° ± 0.2°, 25.4° ± 0.2°, 11.1° ± 0.2°, 9.8° ± 0.2°, 17.4° ± 0.2°, 22.1° ±
0.2°, 16.5° ± 0.2°, 14.5° ± 0.2°, 11.8° ± 0.2°, and 18.9° ± 0.2°;
2) a differential scanning calorimetry thermogram comprising an endotherm with an extrapolated onset temperature at about 164.6 °C; and
3) a thermogravimetric analysis profile showing about 0.05% weight loss below about 135 °C.
Also provided is an anhydrous crystalline form having:
1) an X-ray powder diffraction pattern substantially as shown in Figure 11;
2) a differential scanning calorimetry thermogram substantially as shown in
Figure 12; and
3) a thermogravimetric analysis profile substantially as shown in Figure 12.
In some embodiments, the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof is (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethyl-propyl)-amide or a pharmaceutically acceptable salt, solvate, and/or hydrate thereof and the one or more known pharmaceutical agent is morphine.
Additionally, chemical genera and individual compounds, for example, those compounds found in the above list including diastereoisomers and enantiomers thereof, encompass all pharmaceutically acceptable salts, solvates, and particularly hydrates, and N- oxides thereof:
The compounds of the Formula la may be prepared according to relevant published literature procedures that are used by one skilled in the art. Exemplary reagents and procedures for these reactions appear hereinafter in the working Examples. Protection and deprotection may be carried out by procedures generally known in the art (see, for example, Greene, T. W. and Wuts, P. G. M., Protecting Groups in Organic Synthesis, 3rd Edition, 1999 [Wiley]).
It is understood that the present invention embraces each diastereoisomer, each enantiomer and mixtures thereof of each compound and generic formulae disclosed herein just as if they were each individually disclosed with the specific stereochemical designation for each chiral carbon. Separation of the individual isomers (such as, by chiral HPLC, recrystallization of diastereoisomeric mixtures and the like) or selective synthesis (such as, by enantiomeric selective syntheses and the like) of the individual isomers is accomplished by application of various methods which are well known to practitioners in the art.
The combinations disclosed herein are useful in the treatment of osteoarthritis, and in the amelioration of symptoms thereof. In addition, the combinations disclosed herein are useful for the treatment of pain associated with these osteoarthritis. Given the expression of CB2 on a number of different types of immune cells and the attenuating effects that CB2 agonists have been observed to have on the activities of these cells, CB2 agonists are useful for the treatment and/or prophylaxis of other disorders wherein undesired immune cell activity and/or inflammation is observed. Such exemplary disorders include osteoarthritis.
Severity of osteoarthritis can be assessed in various manners, using an index, scale or measure known in the art. For example, the attenuation of one or more symptoms or signs of osteoarthritis may be measured on the Western Ontario and McMaster Universities (WOMAC) Arthritis Index or one of its subscales (in other words, the pain, stiffness, or physical function subscales of the WOMAC Osteoarthritis Index). Any suitable version of the WOMAC OA
Index may be used, including, for example, Version 3.0 or Version 3.1. Any suitable scale may be used as well. The WOMAC OA Index is available in Likert and Visual Analog scaled formats, either of which may be employed in the present methods.
WOMAC values can be considered as surrogate markers for the diagnosis, prognosis, monitoring or treatment osteoarthritis. The WOMAC values represent a subjective surrogate marker.
Alternatively or additionally, the attenuation of one or more symptoms or signs may be measured on another suitable index, scale or measure, such the Australian/Canadian (AUSCAN) Osteoarthritis Hand Index or the Osteoarthritis Global Index (OGI). The AUSCAN 3.0 Index and User Guide are currently available from http://www.womac.org/contact/index.cfm, as are the WOMAC 3.1 Osteoarthritis Index and User Guide.
Another suitable measure of attenuation is the Definition of Improvement in
Rheumatoid Arthritis described in Felson et al., Arthritis & Rheumatism 38:727-735 (1995) incorporated herein by reference. This measure, which also may be designated as the ACR (American College of Rheumatology) 20 improvement, is a composite defined as both improvement of 20% in the number of tender and number of swollen joints, and a 20% improvement in three of the following five: patient global, physician global, patient pain, patient function assessment, and C-reactive protein (CRP).
Another suitable measure of attenuation is the ACR 70 improvement, is a composite defined as a composite defined as both improvement of 70% in the number of tender and number of swollen joints, and a 70% improvement in three of the following five: patient global, physician global, patient pain, patient function assessment, and C-reactive protein (CRP).
Another suitable measure is described by Paulus et al., Arthritis & Rheumatism 33:477- 484 (1990) incorporated herein by reference. Paulus et al. provides a definition of improvement based on a set of measures that discriminate between active second-line drug treatment and placebo. These include a 20% improvement in morning stiffness, erythrocyte sedimentation rate (ESR), joint tenderness score, and joint swelling score and improvement by at least 2 grades on a 5-grade scale (or from grade 2 to grade 1) for patient and physician global assessments of current disease severity.
Current disease severity can be measured in a variety of ways, including patient or physician global assessments, patient or physician assessments of joint tenderness, joint swelling stiffness, pain, or physical function, cytokine levels, B-cell or T-cell subtype ratios, erythrocyte sedimentation rate (ESR), or C-reactive protein.
Suitable measures of attenuation of one or more symptoms or signs, of inhibiting the progression of osteoarthritis, or of reversing tissue or cellular damage include measuring current disease severity. Other indexes, definitions, measures, or scales may also be used for measuring attenuation of one or more symptoms or signs, inhibition of progression, or reversal of tissue or cellular damage.
Other measures of physical function that can be assessed include (1) the pain felt by the subject when walking on a flat surface; (2) the pain felt by the subject when going up or down stairs; (3) the pain felt by the subject at night while in bed; (4) the pain felt by the subject that disturbs the sleep of the subject; (5) the pain felt by the subject while sitting or lying down; and/or (6) the pain felt by the subject while standing. Alternatively or additionally, the following measures can be assessed: (1) the severity of the stiffness felt by the patient after the subject first woke up in the morning; (2) the severity of the stiffness felt by the subject after sitting or lying down later in the day; and/or (3) the severity of the stiffness felt by the subject while resting later in the day. Alternatively or additionally, the following measures can be assessed: (1) the difficulty had by the subject when going down stairs; (2) the difficulty had by the human subject when going up stairs; (3) the difficulty had by the subject when getting up from a sitting position; (4) the difficulty had by the subject while standing; (5) the difficulty had by the subject when bending to the floor; (6) the difficulty had by the patient when walking on a flat surface; (7) the difficulty had by the human subject when getting in or out of a car or bus; (8) the difficulty had by the subject while going shopping; (9) the difficulty had by the patient when getting out of bed; (10) the difficulty had by the subject when putting on socks, or panty hose or stockings; (11) the difficulty had by the subject while lying in bed; (12) the difficulty had by the subject when getting in or out of the bathtub; (13) the difficulty had by the subject while sitting; (14) the difficulty had by the patient when getting on or off the toilet; (15) the difficulty had by the subject while doing heavy household chores; and/or (16) the difficulty had by the subject while doing light household chores.
The severity of the pain can be assessed with self -reported measures as is known in the art. Genreally, pain is assessed at rest, with appropriate activity (e.g., ambulation, cough), at baseline (prior to administration of the compound of Formula la, or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof, and at regular intervals thereafter. Some of the most commonly used pain assessment instrucments include the visual analog scale (VAS), numeric rating scale (NRS), and categorical Likert scale. The VAS is a written assessment that typically utilizes a unmarked 100-mm line with the left end marked as "no pain" and the right end marked as "worst pain imaginable." Subjects put a mark on the line corresponding to their level of pain. The NRS can be applied ineither written or verbal form and typically utilizes a rating from 0 (corresponding to "no pain") to 10 (corresponding to "worst pain imageinable"). Likert scales are typically four- or five -item instruments (e.g., ratings of "none", "mild", "moderate", "severe") that attempt to quantify pain.
It is understood that when the phrase "pharmaceutically acceptable salts, solvates and hydrates" is used when referring to a particular formula herein, it is intended to embrace solvates and/or hydrates of compounds of the particular formula, pharmaceutically acceptable salts of compounds of the particular formula as well as solvates and/or hydrates of
pharmaceutically acceptable salts of compounds of the particular formula.
The compounds described herein can be administrated in a wide variety of oral and parenteral dosage forms. It will be apparent to those skilled in the art that the following dosage forms may comprise, as the active component, either a compound described herein or a pharmaceutically acceptable salt or as a solvate or hydrate thereof. Moreover, various hydrates and solvates of the compounds described herein and their salts will find use as intermediates in the manufacture of pharmaceutical compositions. Typical procedures for making and identifying suitable hydrates and solvates, outside those mentioned herein, are well known to those in the art; see for example, pages 202-209 of K.J. Guillory, "Generation of Polymorphs, Hydrates, Solvates, and Amorphous Solids," in: Polymorphism in Pharmaceutical Solids, ed. Harry G. Brittan, Vol. 95, Marcel Dekker, Inc., New York, 1999, incorporated herein by reference in its entirety. Also provided are hydrates and solvates of compounds of Formula la and/or their pharmaceutical acceptable salts, as described herein, that can be isolated and characterized by methods known in the art, such as, thermogravimetric analysis (TGA), TGA-mass spectroscopy, TGA-Infrared spectroscopy, powder X-ray diffraction (XRPD), Karl Fisher titration, high resolution X-ray diffraction, and the like. There are several commercial entities that provide quick and efficient services for identifying solvates and hydrates on a routine basis. Example companies offering these services include Wilmington PharmaTech (Wilmington, DE), Avantium Technologies (Amsterdam) and Aptuit (Greenwich, CT).
Polymorphism is the ability of a substance to exist as two or more crystalline phases that have different arrangements and/or conformations of the molecules in the crystal lattice.
Polymorphs show the same properties in the liquid or gaseous state but they behave differently in the solid state.
Besides single -component polymorphs, drugs can also exist as salts and other multicomponent crystalline phases. For example, solvates and hydrates may contain an API host and either solvent or water molecules, respectively, as guests. Analogously, when the guest compound is a solid at room temperature, the resulting form is often called a cocrystal. Salts, solvates, hydrates, and cocrystals may show polymorphism as well. Crystalline phases that share the same API host, but differ with respect to their guests, may be referred to as
pseudopolymorphs of one another.
Solvates contain molecules of the solvent of crystallization in a definite crystal lattice.
Solvates, in which the solvent of crystallization is water, are termed hydrates. Because water is a constituent of the atmosphere, hydrates of drugs may be formed rather easily.
By way of example, Stahly recently published a polymorph screens of 245 compounds consisting of a "wide variety of structural types" revealed that about 90% of them exhibited multiple solid forms. Overall, approximately half the compounds were polymorphic, often having one to three forms. About one-third of the compounds formed hydrates, and about one- third formed solvates. Data from cocrystal screens of 64 compounds showed that 60% formed cocrystals other than hydrates or solvates. (G. P. Stahly, Crystal Growth & Design (2007), 7(6), 1007-1026.)
As will be recognized, the steps of the methods described herein need not be performed any particular number of times or in any particular sequence. Additional objects, advantages and novel features of this invention will become apparent to those skilled in the art upon examination of the following examples thereof, which are intended to be illustrative and not intended to be limiting.
EXAMPLES
Example 1: Syntheses.
Illustrated syntheses for compounds described herein are shown in Figures 2 through 7 where the symbols have the same definitions as used throughout this disclosure.
The compounds and their syntheses are further illustrated by the following examples.
The following examples are provided to further define the invention without, however, limiting the invention to the particulars of these examples. The compounds described herein, supra and infra, are named according to AutoNom version 2.2, AutoNom 2000, CS ChemDraw Ultra Version 7.0.1, or CS ChemDraw Ultra Version 9.0.7. In certain instances common names are used and it is understood that these common names would be recognized by those skilled in the art.
Chemistry: Proton nuclear magnetic resonance NMR) spectra were recorded on a Bruker Avance-400 equipped with a QNP (Quad Nucleus Probe) or a BBI (Broad Band Inverse) and z-gradient. Chemical shifts are given in parts per million (ppm) with the residual solvent signal used as reference. NMR abbreviations are used as follows: s = singlet, d = doublet, dd = doublet of doublets, ddd = doublet of doublet of doublets, dt = doublet of triplets, t = triplet, td = triplet of doublets, tt = triplet of triplets, q = quartet, m = multiplet, bs = broad singlet, bt = broad triplet. Microwave irradiations were carried out using a Smith Synthesizer or an Emrys Optimizer™ (Biotage). Thin-layer chromatography (TLC) was performed on silica gel 60 F254 (Merck), preparatory thin-layer chromatography (prep TLC) was preformed on PK6F silica gel 60 A 1 mm plates (Whatman) and column chromatography was carried out on a silica gel column using Kieselgel 60, 0.063-0.200 mm (Merck). Evaporation was done under reduced pressure on a Biichi rotary evaporator.
LCMS spec: HPLC-pumps: LC-10AD VP, Shimadzu Inc.; HPLC system controller: SCL-IOA VP, Shimadzu Inc; UV-Detector: SPD-10A VP, Shimadzu Inc; Autosampler: CTC HTS, PAL, Leap Scientific; Mass spectrometer: API 150EX with Turbo Ion Spray source, AB/MDS Sciex; Software: Analyst 1.2.
Example 1.1: Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 1).
Step A: Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester. Method A
To a solution of (lR,5S)-bicyclo[3.1.0]hexan-2-one (9.19 g, 96 mmol) and diethyl oxalate (12.98 mL, 96 mmol) in absolute ethanol (300 mL) was added a 1.0 M THF solution of potassium teri-butoxide (105 mL, 105 mmol). The resulting yellow solution was stirred at 20 °C for 2 h. (2,4-difluorophenyl)hydrazine hydrochloride (17.26 g, 96 mmol) was added followed by a 3.0 M aqueous solution of hydrogen chloride (96 mL, 287 mmol). The reaction was stirred at 40 °C for 18 h. The volume was reduced by about 200 mL, and then brine (300 mL) was added. The mixture was extracted with dichloromethane (3 X 250 mL). The combined organic extracts were dried (MgS04), filtered, and then concentrated. The residue was purified by silica gel flash chromatography to give the title compound as a yellow solid (18.4 g). LCMS mlz = 305.3
[M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.49 (td, / = 4.8, 3.3 Hz, 1H), 1.16 (td, = 7.8, 5.0 Hz, 1H), 1.38 (t, = 7.1 Hz, 3H), 2.11-2.16 (m, 1H), 2.24-2.30 (m, 1H), 2.90 (d, = 16.6 Hz, 1H), 3.03 (dd, = 16.4, 6.3 Hz, 1H), 4.38 (q, = 7.1 Hz, 2H), 6.97-7.02 (m, 2H), 7.66-7.72 (m, 1H).
Step B: Preparation of (la/?,5a/?)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid. Method B
To a solution of (laR,5aR)-2-(2,4-difluoro-phenyl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (17.4 g, 57.2 mmol) in methanol (100 mL) and THF (100 mL) was added a 2.0 M aqueous solution of sodium hydroxide (86 mL, 172 mmol). The resulting orange solution was stirred at 23 °C for 3 h. The organic solvents were removed under reduced pressure. The remaining aqueous solution was diluted to 150 mL with water and then acidified to pH 2 by addition of 6 M HC1 while stirring vigorously. The precipitate was collected by filtration, rinsed with water, and then dried under reduced pressure to give the title compound as a tan solid (15.62 g). LCMS mlz = 277.3 [M+H]+; lU NMR (400 MHz, DMSO-i ) δ ρριη θ.41 (td, / = 4.6, 3.4 Hz, 1H), 1.15 (td, / = 7.8, 4.7 Hz, 1H), 2.16-2.21 (m, 1H), 2.23-2.29 (m, 1H), 2.76 (d, = 16.2 Hz, 1H), 2.90 (dd, = 16.4, 6.2 Hz, 1H), 7.27-7.32 (m, 1H), 7.56-7.62 (m, 1H), 7.75 (td, = 9.0, 5.9 Hz, 1H), 12.93 (bs, 1H).
Example 1.2: Preparation of (laR,5aR)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 2).
Step A: Preparation of Potassium 2-Ethoxy-2-oxo-l-((lR,5/?)-2- oxobicyclo[3.1.0]hexan-3-ylidene)ethanolate.
To a solution of (lR,5S)-bicyclo[3.1.0]hexan-2-one (10 g, 91 mmol) and diethyl oxalate (12.29 mL, 91 mmol) in absolute ethanol (250 mL) was added a 1.0 M THF solution of potassium teri-butoxide (91 mL, 91 mmol). The resulting yellow solution was stirred at 20 °C for 3 h. The mixture was diluted with diethyl ether (250 mL). The precipitate was collected by filtration, rinsed with diethyl ether, and then dried under reduced pressure to give the title compound as a yellow solid (16.7 g). LCMS m/z = 197.2 [M+H]+; lU NMR (400 MHz, DMSO- d6) δ ppm 0.14 (td, = 4.5, 3.4 Hz, 1H), 0.78 (td, = 8.0, 3.3 Hz, 1H), 1.15 (t, = 7.2 Hz, 3H), 1.26-1.31 (m, 1H), 1.41-1.47 (m, 1H), 2.27 (dd, / = 14.2, 1.4 Hz, 1H), 2.39 (dd, / = 14.2, 6.2 Hz, 1H), 3.91-4.01 (m, 2H).
Step B: Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester. Method C
To a stirred suspension of 2-ethoxy-2-oxo-l-((lR,5R)-2-oxobicyclo[3.1.0]hexan-3- ylidene)ethanolate (300 mg, 1.28 mmol) in ethanol (5 mL) was added 2-hydrazinylpyrazine (141 mg, 1.28 mmol) followed by 6 N HQ (0.5 mL, 3.0 mmol). The reaction was stirred overnight at room temperature. The reaction was diluted with H20 and extracted with DCM. The combined organic phases were washed with H20, dried over MgS04, and concentrated. Purification by silica gel flash chromatography gave the title compound (150 mg). LCMS m/z = 271.2 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.47 (td, = 4.7 and 3.4 Hz, 1H), 1.22-1.28 (m, 1H), 1.39 (t, = 7.1 Hz, 3H), 2.26-2.30 (m, 1H), 2.77-2.82 (m, 1H), 2.87 (d, = 16.6 Hz, 1H), 2.98 (dd, = 16.6 and 6.3 Hz, 1H), 4.40 (q, = 7.1 Hz, 2H), 8.40 (dd, = 2.6 and 1.5 Hz, 1H), 8.51 (d, = 2.5 Hz, 1H), 9.39 (d, = 1.3 Hz, 1H).
Step C: Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid. Method D
To a solution of (laR,5aR)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (150 mg, 0.56 mmol) in dioxane (2 mL) was added 1 N LiOH (1.1 mL, 1.11 mmol). The reaction was stirred for 1 h at 80 °C, and cooled to room temperature. The reaction was acidified to pH 2 with 4 N HCl and diluted with H20 to form precipitate. The resulting precipitate was collected by filtration, rinsed with water, and then dried to give the title compound as a white solid (100 mg). LCMS m/z = 243.3 [M+H]+; H NMR (400 MHz, DMSO-d6) δ ppm 0.43 (td, = 4.5 and 3.4 Hz, 1H), 1.26 (td, = 7.7 and 4.4 Hz, 1H), 2.26-2.33 (m, 1H), 2.70-2.79 (m, 2H), 2.89 (dd, / = 16.6 and 6.3 Hz, 1H), 8.60 (dd, / = 2.6 and 1.5 Hz, 1H), 8.67 (d, = 2.6 Hz, 1H), 9.17 (d, = 1.4 Hz, 1H), 13.01 (s, 1H).
Example 1.3: Preparation of (laR,5aR)-2-(2,4-Difluoro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 493).
Figure imgf000080_0001
To a stirred solution of Intermediate 1 (2 g, 7.24 mmol), benzotriazole-l-yl- oxytripyrrolidinophosphonium hexafluorophosphate (PyBOP, 4.52 g, 8.69 mmol) and DIEA (2.52 mL, 14.48 mmol) in DMF (20 mL) was added 2-amino-2-methylpropan-l-ol (0.833 mL, 8.69 mmol). The reaction was stirred at room temperature overnight, then poured into water, and extracted with ethyl acetate. The combined organics were dried and concentrated. The residue was purified by silica gel column chromatography to give the title compound as a white solid (2.08 g). LCMS m/z = 348.4 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.48 (td, / = 4.7, 3.3 Hz, 1H), 1.16 (td, = 7.8, 4.9 Hz, 1H), 1.371 (s, 3H), 1.376 (s, 3H), 2.08-2.13 (m, 1H), 2.25- 2.31 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.04 (dd, = 16.4, 6.2 Hz, 1H), 3.68 (d, = 3.5 Hz, 2H), 4.81-4.84 (m, 1H), 6.88 (bs, 1H), 6.99-7.05 (m, 2H), 7.59-7.65 (m, 1H).
Example 1.4: Preparation of (laR,5aR)-2-(5-Cyano-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 264).
Figure imgf000080_0002
A heterogeneous mixture of (laR,5aR)-2-(5-bromo-pyrazin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy- 1 , 1 -dimethyl-ethyl) -amide
(40 mg, 0.10 mmol) and cyanocopper (13.7 mg, 0.15 mmol) in NMP (1.0 mL) in a heavy walled
Jjibi
Figure imgf000080_0003
Xhi.mafJJnri purified by preparative HPLC to give the title compound. LCMS m/z = 339.6 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.46 (td, = 4.7 and 3.4 Hz, 1H), 1.29 (td, = 8.0 and 4.7 Hz, 1H), 1.42 (s, 3H), 1.43 (s, 3H), 2.30-2.37 (m, 1H), 2.71-2.77 (m, 1H), 2.92 (d, = 17.0 Hz, 1H), 3.01 (dd, = 16.8 and 6.2 Hz, 1H), 3.71 (s, 2H), 4.29 (s, 1H), 6.90 (s, 1H), 8.72 (d, = 1.4 Hz, 1H), 9.33 (d, = 1.4 Hz, 1H).
Example 1.5: Preparation of (laR,5aR)-2-(5-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)-amide (Compound 309).
Figure imgf000081_0001
Step A: Preparation of (laR,5aR)-2-(5-Fluoropyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
To a solution of hydrazine monohydrate (3.13 mL, 64.6 mmol) in 1-butanol (8 mL) in a thick-walled glass tube was added 2-chloro-5-fluoropyridine (1.00 g, 7.60 mmol). The vessel was flushed with nitrogen then sealed. The solution was heated under microwave irradiation at 200 °C for 8 h. The reaction was concentrated under reduced pressure leaving an orange solid. The solid was taken up in ethyl acetate (30 mL), and the insoluble material was removed by filtration. The filtrate was concentrated to give an orange solid (0.8 g) as a 39:61 mixture of 5- fluoro-2-hydrazinylpyridine and 2-chloro-5-hydrazinylpyridine.
The title compound was prepared in a manner similar to that described in Method C using potassium 2-ethoxy-2-oxo-l-((lR,5R)-2-oxobicyclo[3.1.0]hexan-3-ylidene)ethanolate and mixture of 5-fluoro-2-hydrazinylpyridine and 2-chloro-5-hydrazinylpyridine. LCMS m/z = 288.2 [M+H]+.
Step B: Preparation of (la/?,5a/?)-2-(5-Fluoropyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
The title compound was prepared in a manner similar to that described in Method B using (laR,5aR)-2-(5-fluoropyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester. LCMS m/z = 260.2 [M+H]+.
Step C: Preparation of (laR,5aR)-2-(5-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide. The title compound was prepared in a manner similar to that described in Method G using (laR,5aR)-2-(5-fluoropyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and 2-amino-2-methylpropan-l-ol. LCMS m/z =
331.2 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.45 (td, / = 4.7, 3.3 Hz, 1H), 1.24 (td, = 7.9, 4.8 Hz, 1H), 1.404 (s, 3H), 1.408 (s, 3H), 2.24-2.30 (m, 1H), 2.74-2.79 (m, 1H), 2.91 (d, = 16.7 Hz, 1H), 3.00 (dd, = 16.6, 6.2 Hz, 1H), 3.70 (d, = 6.2 Hz, 2H), 4.72 (t, = 6.3 Hz, 1H), 6.92 (s, 1H), 7.55 (ddd, = 9.1, 7.6, 3.0 Hz, 1H), 7.91 (dd, / = 9.1, 3.9 Hz, 1H), 8.31 (d, = 2.8 Hz, 1H).
Example 1.6: Preparation of Phosphoric Acid mono-(2-{[(laR,5aR)-2-(4-Cyano-pyridin-2- yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}-2- methyl-propyl) Ester (Compou
Figure imgf000082_0001
A solution of (laR,5aR)-2-(4-cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy- 1,1 -dimethyl -ethyl)-amide (500 mg, 1.482 mmol) in pyridine (10 mL) was cooled in a dry-ice/acetone bath until the mixture solidified. The cooling bath was removed and phosphoryl trichloride (0.691 mL, 7.41 mmol) was added as soon as the mixture melted (ca -42 °C). The cooling bath was replaced periodically, maintaining the temperature at -42 °C while stirring for 45 minutes. Still at -42 °C, 50 mL 0.5 M aqueous HQ was added. The volume was reduced to 20 mL by distillation under reduced pressure (50 °C water bath). The remaining solution was purified by preparative HPLC to give a white solid
(338 mg). The solid was suspended in water (10 mL) and acetonitrile (2 mL). Sodium carbonate (81.5 mg, 0.769 mmol) was added to form a solution. The resulting solution was lyophilized to give the sodium salt of the title compound as a white solid (385 mg). LCMS m/z = 418.3
[M+H]+; lU NMR (400 MHz, D20) δ ppm 0.53-0.56 (m, 1H), 1.33-1.38 (m, 1H), 1.53 (s, 6H), 2.41-2.47 (m, 1H), 2.69-2.73 (m, 1H), 2.89 (d, = 16.4 Hz, 1H), 3.00 (dd, = 16.4, 6.2 Hz, 1H), 3.91 (d, = 4.2 Hz, 2H), 7.26 (d, = 4.2 Hz, 1H), 8.26-7.33 (s, 1H), 8.72 (d, = 4.6 Hz, 1H). 31P NMR (162 MHz, D20, no decoupling) δ ppm 3.36 (t, = 4.5 Hz, 1H).
Example 1.7: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl-propyl)- amide (Compound 696).
Figure imgf000083_0001
Step A: Preparation of (laS,5aS)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
The title compound was prepared in a manner similar to that described herein. LCMS m/z = 243.1 [M+H]+; lU NMR (400 MHz, DMSO-i ) δ ppm 0.43 (td, / = 4.6, 3.2 Hz, 1H), 1.26 (td, = 8.0, 4.6 Hz, 1H), 2.27-2.33 (m, 1H), 2.71-2.75 (m, 1H), 2.75 (d, = 16.7 Hz, 1H), 2.89 (dd, / = 16.4, 6.4 Hz, 1H), 8.61 (dd, / = 2.5, 1.4 Hz, 1H), 8.67 (d, = 2.7 Hz, 1H), 9.17 (d, = 1.4 Hz, 1H), 12.99 (s, 1H).
Step B: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
The title compound was prepared in a manner similar to that described in Method G, using (la5,5a5)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4- carboxylic acid and (5)-2-amino-3,3-dimethylbutan-l -ol. LCMS m/z = 342.2 [M+H]+; !H NMR (400 MHz, CDC13) δ ppm 0.48 (td, = 4.6, 3.4 Hz, 1H), 1.05 (s, 9H), 1.24 (td, = 8.0, 4.7 Hz, 1H), 2.26-2.32 (m, 1H), 2.74-2.78 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.01 (dd, = 16.7, 6.1 Hz, 1H), 3.67-3.72 (m, 1H), 3.93-3.98 (m, 2H), 7.08 (d, = 8.5 Hz, 1H), 8.42 (dd, = 1.4, 0.9 Hz, 1H), 8.51 (d, = 2.7 Hz, 1H), 9.26 (d, = 1.1 Hz, 1H).
Example 1.8: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide (Compound 699).
Figure imgf000083_0002
To a solution of (laS,5aS)-2-pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide (900 mg, 2.64 mmol) in chloroform (10 mL) was added 3-chlorobenzoperoxoic acid (1772 mg, 7.91 mmol). The reaction was stirred at 23 °C for 3 h. Additional MCPBA (1.2 g) was added and stirring was continued at room temperature for 18 h. The mixture was purified by silica gel column chromatography to give the title compound (550 mg) as a white solid. LCMS m/z = 358.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.49 (td, / = 4.6, 3.3 Hz, 1H), 1.03 (s, 9H), 1.27 (td, = 8.0, 4.9 Hz, 1H), 2.08 (bs, 1H), 2.27-2.33 (m, 1H), 2.71-2.76 (m, 1H), 2.93 (d, = 16.8 Hz, 1H), 3.00 (dd, = 16.7, 6.1 Hz, 1H), 3.65-3.71 (m, 1H), 3.92-3.97 (m, 2H), 6.97 (d, = 8.5 Hz, 1H), 7.99 (dd, / = 4.0, 1.4 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.78 (dd, = 1.4, 0.8 Hz, 1H).
A sample was recrystallized from CH2Cl2/hexane to give a crystalline solvate. A thermogravimetric analysis (TGA) thermogram for this solvate showed a loss of -5% weight occurring with a melting endotherm at 164°C.
A non-sol vated form of Compound 699 was slurried in CH2C12 and stirred at -28 °C overnight. The suspension was filtered using a centrifuge filter and air dried prior to powder X- ray diffraction pattern (PXRD) analysis. The PXRD pattern showed the material following CH2C12 slurry to be indistinguishable from the original solvate form resulting from recrystallized from CH2Cl2/hexane. The differential scanning calorimetry (DSC) thermogram and
thermogravimetric analysis (TGA) thermogram for the crystalline CH2C12 solvate obtained from recrystallization using CH2Cl2/hexane is shown in Figure 8; and the PXRD pattern for each of the crystalline CH2C12 solvates obtained from two the different methods (i.e., recrystallization using CH2Cl2/hexane; and non-solvated Compound 699 slurried in CH2C12) is shown as an overlay in Figure 9.
Example 1.9: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Pyridin-2-yl-cyclobutyl) -amide (Compound 700).
Figure imgf000084_0001
The title compound was prepared in a manner similar to that described in Method G, using (la5,5a5)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and l-(pyridin-2-yl)cyclobutanamine. LCMS m/z = 389.4 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.46 (td, = 4.7, 3.4 Hz, 1H), 1.25 (td, = 7.8, 4.8 Hz, 1H), 1.97-2.08 (m, 1H), 2.19-2.31 (m, 2H), 2.70-2.78 (m, 3H), 2.84-2.92 (m, 3H), 2.98 (dd, = 16.7, 6.2 Hz, 1H), 7.19 (t, = 5.7 Hz, 1H), 7.62 (d, = 8.0 Hz, 1H), 7.72 (t, = 7. Hz, 1H), 7.98 (dd, / = 4.2, 1.5 Hz, 1H), 8.00-8.04 (m, 1H), 8.28 (d, J = 4.2 Hz, 1H), 8.61-8.63 (m, 1H), 8.85 (s, 1H).
Example 1.10: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Hydroxymethyl-cyclobutyl)-amide (Compound 698).
Figure imgf000085_0001
The title compound was prepared in a manner similar to that described in Example 1.57. LCMS m/z = 342.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.46 (dd, = 8.0 and 4.7 Hz, 1H), 1.28 (td, J = 1.9 and 5.0 Hz, 1H), 1.87-2.07 (m, 2H), 2.22-2.37 (m, 5H), 2.71-2.76 (m, 1H), 2.90 (d, = 17.0 Hz, 1H), 2.99 (dd, = 16.7 and 6.2 Hz, 1H), 3.89 (s, 2H), 7.15 (s, NH, 1H), 8.00 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (d, = 4.1 Hz, 1H), 8.80 (s, 1H).
Example 1.11: Preparation of Phosphoric Acid mono-((S)-3,3-Dimethyl-2-{[(la/?,5a/?)-2- (4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4- carbonyl]-amino}-butyl) Ester
Figure imgf000085_0002
To a solution of phosphoric acid mono-{ (S)-3,3-dimethyl-2-[((laR,5aR)-2-pyrazin-2-yl- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl)-amino]-butyl} ester (500 mg, 1.074 mmol) in formic acid (5 mL) was added hydrogen peroxide (35% in water, 0.31 mL, 3.22 mmol). The reaction was stirred at 45 °C for 6 h and concentrated. The residue was purified by preparative HPLC to give the title compound (284 mg) as a white solid. LCMS m/z = 438.4 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.54 (dd, = 8.0 and 4.7 Hz, 1H), 1.05 (s, 9H), 1.25 (td, = 7.9 and 5.0 Hz, 1H), 2.27-2.33 (m, 1H), 2.70-2.74 (m, 1H), 2.90 (d, = 17.2 Hz, 1H), 2.99 (dd, = 16.7 and 6.2 Hz, 1H), 4.11-4.16 (m, 1H), 4.22-4.34 (m, 2H), 7.55 (d, = 10.2 Hz, NH, 1H), 8.02 (dd, = 4.1 and 1.5 Hz, 1H), 8.38 (d, = 4.1 Hz, 1H), 9.32 (s, 1H). Example 1.12: Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l-tetrahydro-pyran-4-yl-ethyl)- amide (Mixture of C
Figure imgf000086_0001
The title compound was prepared in a manner similar to that described in Method G using Intermediate 2 and 2-amino-2-(tetrahydro-2H-pyran-4-yl)ethanol. LCMS m/z = 370.2 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.46-0.50 (m, 1H), 1.26 (td, / = 7.8 and 4.6 Hz, 1H), 1.42-1.54 (m, 2H), 1.72 (d, = 12.6 Hz, 2H), 1.98-2.09 (m, 1H), 2.27-2.34 (m, 1H), 2.51 (bs, 1H), 2.73-2.79 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.01 (dd, / = 16.4 and 6.1 Hz, 1H), 3.36- 3.45 (m, 2H), 3.82-3.89 (m, 3H), 4.01 (dd, / = 11.2 and 4.0 Hz, 2H), 7.11 (d, = 7.6 Hz, 1H), 8.42 (dd, = 2.5 and 1.5 Hz, 1H), 8.51 (d, = 2.4 Hz, 1H), 9.26 (d, = 1.4 Hz, 1H).
Resolution via Chiral HPLC.
Column: normal phase preparative Chiralcel OD®, 5 cm ID X 50 cm L, 20 μιη particle size Eluent: 90% hexane/10% IPA
Gradient: isocratic
Flow: 60 mL/min
Detector: 280 nm
Retention Times: 1st diastereomer - 31 min; 2nd diastereomer - 35 min.
Example 1.13: Preparation of (laR,5aR)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Cyano-dimethyl-methyl)-amide (Compound 625). Method JJJ
Figure imgf000086_0002
A mixture of (laR,5aR)-2-(4-bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (cyano-dimethyl-methyl)-amide (0.800 g, 2.071 1.036 mmol) in DMA (10 mL) was heated in a heavy-walled sealed tube under microwave irradiation at 180 °C for 11 h. The mixture was purified by preparative HPLC to give the title compound (160 mg) as a white solid. LCMS m/z = 342.1 [M+H]+; lU NMR (400 MHz, CDC13) δ ρριη θ.45 (td, 7 = 4.6, 3.4 Hz, 1H), 1.26 (td, 7 = 8.0, 4.9 Hz, 1H), 1.839 (s, 3H), 1.844 (s, 3H), 2.25-2.31 (m, 1H), 2.78-2.82 (m, 1H), 2.94 (d, 7 = 16.8 Hz, 1H), 3.02 (dd, 7 = 16.7, 6.1 Hz, 1H), 6.91 (s, 1H), 7.23 (dd, 7 = 5.4, 1.9 Hz, 1H), 7.92 (d, 7 = 1.8 Hz, 1H) 8.37 (d, 7 = 5.3 Hz, 1H). Example 1.14: Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid [2,2-Dimethyl-l-((S)-methylcarbamoyl)-propyl]- amide (Compound 667).
Figure imgf000087_0001
The title compound was prepared in a manner similar to that described in Method G using Intermediate 2 and (5)-2-amino-N,3,3-trimethylbutanamide. LCMS m/z = 369.3 [M+H]+; lU NMR (400 MHz, DMSO-i¾) δ ppm 0.41 (td, 7 = 4.4 and 3.5 Hz, 1H), 0.96 (s, 9H), 1.23-1.28 (m, 1H), 2.25-2.34 (m, 1H), 2.60 (d, 7 = 4.5 Hz, 3H), 2.68-2.74 (m, 1H), 2.75 (d, 7 = 16.3 Hz, lH), 2.90 (dd, 7 = 16.2 and 6.4 Hz, 1H), 4.33 (d, 7 = 9.7 Hz, 1H), 7.52 (d, 7 = 9.7 Hz, 1H), 8.10- 8.15 (m, lH), 8.60 (dd, 7 = 2.5 and 1.5 Hz, 1H), 8.66 (d, 7 = 2.6 Hz, 1H), 9.27 (d, 7 = 1.4 Hz, 1H).
Example 1.15: Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl-propyl)- amide (Compound 642).
Figure imgf000087_0002
The title compound was prepared as described in Method G using Intermediate 2 and (5)-2-amino-3,3-dimethylbutan-l-ol. LCMS m/z = 342.3 [M+H]+; lU NMR (400 MHz, DMSO- d6) δ ppm 0.41 (td, 7 = 4.4 and 3.3 Hz, 1H), 0.93 (s, 9H), 1.23-1.28 (m, 1H), 2.25-2.34 (m, 1H),
Ί m.l 1 . im 1 m Ί 7^ (Λ J - 1 1H), 3.62-3.67 (m, 1H), 3.76-3.82 (m, 1H), 4.52 (t, = 5.0 Hz, 1H), 7.54 (d, = 9.8 Hz, 1H), 8.58 (dd, / = 2.5 and 1.5 Hz, 1H), 8.64 (d, = 2.6 Hz, 1H), 9.39 (d, = 1.4 Hz, 1H).
Example 1.16: Preparation of Phosphoric Acid mono-{(S)-3,3-Dimethyl-2-[((la/?,5a/?)-2- pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl)- amino]-butyl} Ester (Compound 683 .
Figure imgf000088_0001
A mixture of (laR,5aR)-2-pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -hydroxymethyl-2,2-dimethyl-propyl)-amide (600 mg, 1.757 mmol) in pyridine (5 mL) was cooled in a dry-ice/acetone bath until it solidified (pyridine mp = -42 °C). The cooling bath was removed and POCl3 (0.819 ml, 8.79 mmol) was added as soon as the mixture was melted. The mixture was stirred at -42 °C for 2 h and an HQ solution (3.0 M, 15 mL) was added. The mixture was filtered and the filtrate was purified by prep-HPLC to give a white solid (260 mg). A solution of the solid (240 mg, 0.570 mmol) in H20/AcCN (4 mL/3 mL) was mixed with a solution of Na2C03 (57.3 mg, 0.541 mmol) in H20 (3 mL). The mixture was dried to give the sodium salt of the title compound (258 mg) as a white solid. LCMS m/z = 422.3 [M+H]+; lU NMR (400 MHz, D20) δ ppm 0.42-0.47 (m, 1H), 0.99 (s, 9H), 1.21-1.27 (m, 1H), 2.29-2.36 (m, 1H), 2.57-2.62 (m, 1H), 2.80 (d, = 16.4 Hz, 1H), 2.92 (dd, = 16.4 and 6.4 Hz, 1H), 3.77-3.83 (m, 1H), 3.98-4.08 (m, 2H), 8.48-8.51 (m, 2H), 9.06 (s, 1H).
Example 1.17: Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 4).
Step A: Preparation of (lS,5/?)-Bicyclo[3.1.0]hexan-2-one.
To a stirred solution of (5)-2-(but-3-enyl)oxirane (100 g, 1019 mmol) and 2,2,6,6- tetramethylpiperidine (86 mL, 509 mmol) in MTBE (1000 mL) cooled in a dry ice/acetone bath, was added dropwise a 2.5 M hexane solution of BuLi (489 mL, 1223 mmol) at a rate to maintain the internal temperature at -12 to -5 °C (time of addition = 1 h). After addition was complete, the reaction was stirred one hour at -5 to 0 °C and quenched with 3 M aqueous HQ (545 mL) dropwise (internal temperature rose to 3 °C). The layers were separated and the organic layer was washed with 3 M HQ (200 mL). The combined aqueous layers were extracted with MTBE (2 x 500 mL). The combined organic layers were washed with brine (3 x 300 mL) and concentrated to .giye a .pale yellow solution (ca. 1000 mL). To this solution in a 5 L 3-neck round bottom flask equipped with an overhead stirrer was added an aqueous solution of dibasic potassium phosphate (216 g, 1240 mmol), monobasic potassium phosphate (12.8 g, 94 mmol), and potassium bromide (18.19 g, 153 mmol) in water (407 mL). The mixture was cooled to -20 °C in a dry-ice/isopropanol bath. TEMPO (4.30 g, 27.5 mmol) was added. The temperature was allowed to warm to 0 °C and aqueous sodium hypochlorite (1.54 M, 1059 mL, 1630 mmol) was added dropwise over 70 min while maintaining the internal temperature between -10 and 0 °C. Stirring was continued at 0 °C for another hour. Sodium sulfite (50 g) was added to quench excess sodium hypochlorite (temperature rose to 12 °C). The layers were separated and the aqueous layer was extracted twice more with MTBE (500 mL then 250 mL). The combined organic layers (total volume ca. 1600 mL) were dried (MgS04) then filtered. The solution was concentrated (ca. 300 mL). The residue was distilled (2 torr/36 °C, note: receveiving flask was cooled in dry ice/acetone bath) to give the title compound (65.8 g) as a light orange oil. !H NMR (400 MHz, CDC13) δ 0.93 (td, / = 4.6, 3.3 Hz, 1H), 1.20 (td, = 8.0, 4.8 Hz, 1H), 1.74-1.79 (m, 1H), 1.98-2.19 (m, 5H).
Step B: Preparation of 2-Hydrazinylpyrazine.
Under nitrogen atmosphere, 2-chloropyrazine (96 mL, 1073 mmol) was added dropwise to 35 wt aqueous hydrazine (544 mL, 6009 mmol) at 65 °C over 1 h. After the addition, stirring was continued at 63-67 °C for 16 h and the reaction mixture was let stand at room temperature for two days. The mixture was filtered to remove a small amount of precipitate, then extracted with 10% iPrOH/dichloromethane (5 x 250 mL). The combined organic extracts were dried (MgS04), filtered, then concentrated under reduced pressure. The resulting solid was triturated with isopropyl acetate (600 mL). The solid was collected by filtration, rinsed with isopropyl acetate, then dried in vacuo to give the title compound (60 g) as a pale yellow solid. LCMS m/z = 111.2 [M+H]+; lU NMR (400 MHz, DMSO-i ) δ 4.21 (s, 2H), 7.70 (d, = 2.8 Hz, 1H), 7.89 (s, 1H), 7.93 (dd, = 2.8, 1.5 Hz, 1H), 8.10 (d, = 1.5 Hz, 1H).
Step C: Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester. Method KKK
To a solution of (15,5R)-bicyclo[3.1.0]hexan-2-one (52.9 g, 539 mmol) and diethyl oxalate (0.073 L, 539 mmol) in absolute ethanol (0.9 L) (not denatured with methanol) was added a THF solution of potassium tert-butoxide (1.0 M, 0.539 L, 539 mmol) over 15 min
(maintaining the temperature below 43 °C). The resulting yellow solution was stirred at 40 °C for 3.5 h. 2-Hydrazinylpyrazine (59.4 g, 539 mmol) was added followed by a 6.0 M aqueous solution of hydrogen chloride (0.270 L, 1618 mmol). The reaction was stirred at 50 °C for 1.5 h. The mixture was poured into ice -water (5 L). A precipitate appeared immediately. After sitting for 30 minutes in an ice bath, the solid was collected by filtration, rinsed with water (5 x 1 L), and dried to give the title compound (106 g) as an off-white solid !H NMR. LCMS m/z = 271.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, = 4.7, 3.3 Hz, 1H), 1.27 (td, = 8.0, 4.9 Hz, 1H), 1.41 (t, 7 = 7.1 Hz, 3H), 2.26-2.32 (m, 1H), 2.77-2.82 (m, 1H), 2.88 (dd, 7 = 16.7, 1.4 Hz, 1H), 2.99 (dd, 7 = 16.6, 6.4 Hz, 1H), 4.40 (q, 7 = 7.1 Hz, 2H), 8.41 (dd, 7 = 2.5, 1.5 Hz, 1H), 8.52 (d, 7 = 2.5 Hz, 1H), 9.40 (d, 7 = 1.5 Hz, 1H).
Step D: Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid (Intermediate 4). Method LLL
To a suspension of (laS,5aS)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (106 g, 392 mmol) in MeOH (300 mL) and THF (300 mL) was added a 2.0 M aqueous solution of NaOH (235 mL, 471 mmol). The reaction was stirred at 23 °C for 20 h. The organic solvents were removed on rotovap. The remaining aqueous solution was diluted to -1.5 L with H20 then acidified to pH ~2 with 6 M
HCl (ca. 95 mL). The resulting fine precipitate was collected by filtration, rinsed with water, and dried to give the title compound (95 g) as a white solid. LCMS m/z = 243.1 [M+H]+; H NMR (400 MHz, DMSO-i ) δ 0.43 (td, 7 = 4.6, 3.2 Hz, 1H), 1.26 (td, 7 = 8.0, 4.4 Hz, 1H), 2.27-2.33 (m, 1H), 2.71-2.75 (m, 1H), 2.76 (d, 7 = 16.8 Hz, 1H), 2.89 (dd, 7 = 16.4, 6.4 Hz, 1H), 8.61 (dd, 7 = 2.7, 1.5 Hz, 1H), 8.67 (d, 7 = 2.5 Hz, 1H), 9.17 (d, 7 = 1.5 Hz, 1H), 13.02 (s, 1H).
Example 1.18: Preparation of (laS,5aS)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid N-Oxide (Intermediate 5).
To a suspension of (laS,5aS)-2-(pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (68.8 g, 284 mmol) in formic acid (688 mL) at room temperature was added a 50 wt aqueous solution of hydrogen peroxide (82 mL, 1420 mmol). The mixture was heated to 64 °C. The reaction was stirred at 58 to 64 °C for 3 h. Another 8 mL 50% H202 was added and stirring continued another hour at 60 °C. The mixture was cooled to room temperature and diluted with water (1 L). After cooling in an ice -bath for 1 h, the precipitate was collected by filtration, rinsed with water, and dried in vacuo to give a pale yellow solid (56.7 g) which contains about 2% starting material. The material was re-subjected to reaction conditions aforementioned to give the title compound (45 g). LCMS m/z = 259.2 [M+H]+; lU NMR (400 MHz, DMSO-i ) δ 0.42 (td, 7 = 4.4, 3.3 Hz, 1H), 1.27 (td, 7 = 7.8, 4.7 Hz, 1H), 2.27-2.33 (m, 1H), 2.68-2.73 (m, 1H), 2.75 (dd, 7 = 16.9, 1.5 Hz, 1H), 2.88 (dd, 7 = 16.4, 6.4 Hz, 1H), 8.33 (dd, 7 = 4.2, 1.5 Hz, 1H), 8.50 (dd, 7 = 4.2, 0.6 Hz, 1H), 8.54 (dd, 7 = 1.5, 0.6 Hz, 1H), 13.08 (s, 1H).
Example 1.19: Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
The title compound was prepared in a manner similar to that described in Example 1.17 using (R)-2-(but-3-enyl)oxirane. LCMS m/z = 243.3 [M+H]+; lU NMR (400 MHz, DMSO-i ) 0.43 (td, 7 = 4.5 and 3.4 Hz, 1H), 1.26 (td, 7 = 7.7 and 4.4 Hz, 1H), 2.26-2.33 (m, 1H), 2.70-2.79 (m, 2H), 2.89 (dd, 7 = 16.6 and 6.3 Hz, 1H), 8.60 (dd, 7 = 2.6 and 1.5 Hz, 1H), 8.67 (d, 7 = 2.6 Hz, 1H), 9.17 (d, 7 = 1.4 Hz, 1H), 13.01 (s, 1H). Example 1.20: Preparation of (la/?,5a/?)-2-(Pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid N-Oxide (Intermediate 6).
The title compound was prepared in a manner similar to that described in Example 1.18 using Intermediate 2. LCMS mJz = 259.3 [M+H]+; lU NMR (400 MHz, DMSO-d6) 0.43 (td, = 4.6 and 3.3 Hz, IH), 1.28 (td, / = 7.9 and 4.8 Hz, IH), 2.27-2.33 (m, IH), 2.68-2.73 (m, IH), 2.75 (d, = 16.7 Hz, IH), 2.88 (dd, / = 16.5 and 6.4 Hz, IH), 8.33 (dd, / = 4.2 and 1.5 Hz, IH), 8.50 (d, = 4.2 Hz, IH), 8.55 (d, = 1.0 Hz, IH), 13.10 (bs, IH).
Example 1.21: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Methyl-cyclobutyl)-amide
(Compound 821). Method U
Figure imgf000091_0001
A solution of Intermediate 6 (200 mg, 0.77 mmol), HATU (300 mg, 0.78 mmol), and Et3N (0.15 mL, 1.17 mmol) in acetonitrile (5 mL) was stirred for 10 min at room temperature. 1- Methylcyclobutanamine (70 mg, 0.82 mmol) was added into the solution, and the mixture was stirred for 2 h at room temperature. The reaction was diluted with DCM, washed with H20 and 1 N HC1, dried with anhydrous MgS04, and concentrated. The residue was purified by column chromatography to give the title compound (120 mg). LCMS m/z = 326.3 [M+H]+; H NMR (400 MHz, CDC13) δ 0.44-0.48 (m, IH), 1.26 (td, = 7.8, 4.8 Hz, IH), 1.56 (s, 3H), 1.83-1.97 (m, 2H), 2.06-2.14 (m, 2H), 2.26-2.33 (m, IH), 2.41-2.50 (m, 2H), 2.69-2.74 (m, IH), 2.92 (d, = 16.6 Hz, IH), 3.00 (dd, = 16.6, 6.0 Hz, IH), 6.87 (s, IH), 7.97 (dd, = 4.0, 1.4 Hz, IH), 8.28 (d, = 4.2 Hz, IH), 8.78 (s, IH).
Example 1.22: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)- amide (Compound 897).
Figure imgf000091_0002
Step A: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
The title compound was prepared in a manner similar to that described in Example 1.18, Step C, using (lS,5R)-bicyclo[3.1.0]hexan-2-one and 4-chloro-2-hydrazinylpyridine. LCMS m/z = 348.0 [M+H]+.
Step B: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
To a solution of (la5,5a5)-2-(4-bromo-pyridin-2-yl)-l a,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (2.1 g, 6.0 mmol) in acetonitrile (30 mL) was added concentrated HCl (1.4 mL, 18.0 mmol). The reaction was stirred for 6 h at 80 °C. The reaction was cooled down and diluted with H20. The solid precipitate was filtered, washed with H20, and dried to give a solid (1.7 g). The solid aforementioned was dissolved in dioxane (10 mL). After addition of 1 N LiOH (9.0 mL), the reaction was stirred at 40 °C for 4 h. The reaction was cooled down to room temperature, diluted with H20, and acidified with 4 N HCl to form a precipitate. The solid was filtered, washed with H20, and dried to give the title compound.
LCMS m/z = 276.1 [M+H]+.
Step C: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)- amide (Compound 897).
The title compound was prepared in a manner similar to that described in Method UU using (la5,5a5)-2-(4-chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and l-fluoro-2-methylpropan-2-amine hydrochloride. LCMS m/z = 349.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.42-0.47 (m, 1H), 1.24 (td, = 7.9, 4.8 Hz, 1H), 1.48 (s, 3H), 1.49 (s, 3H), 2.22-2.29 (m, 1H), 2.76-2.82 (m, 1H), 2.90 (d, = 16.8 Hz, 1H), 2.99 (dd, / = 16.6, 6.2 Hz, 1H), 4.56 (d, = 47 Hz, 2H), 6.80 (s, 1H), 7.20 (dd, / = 5.4, 1.9 Hz, 1H), 7.93 (d, = 1.8 Hz, 1H), 8.35 (d, = 5.4 Hz, 1H).
Example 1.23: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2,2,2- Trifluoro-l,l-dimethyl-ethyl)- amide (Compound 919).
Figure imgf000092_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l, l ,l-trifluoro-2-methylpropan-2-amine. LCMS m/z = 368.3 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.44-0.49 (m, 1H), 1.27 (td, / = 8.0, 4.8 Hz, 1H), 1.70 (s, 6H), 2.27-2.34 (m, 1H), 2.71-2.76 (m, 1H), 2.91 (d, = 17.0 Hz, 1H), 3.00 (dd, / = 16.7, 6.4 Hz, 1H), 6.81 (s, 1H), 7.99 (dd, = 4.2, 1.6 Hz, 1H), 8.28 (dd, = 4.2, 0.6 Hz, 1H), 8.77 (dd, / = 1.5, 0.7 Hz, 1H).
Example 1.24: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((lS,2S)-2-Hydroxy-indan-l-yl)-amide (Compound 920).
Figure imgf000093_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and (lS,2S)-l -amino-2,3-dihydro-iH-inden-2-ol. LCMS m/z = 390.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.48-0.52 (m, 1H), 1.30 (td, / = 7.9, 5.0 Hz, 1H), 2.30- 2.37 (m, 1H), 2.73-2.79 (m, 1H), 2.96 (d, = 16.9 Hz, 1H), 2.99-3.03 (m, 1H), 3.05 (dd, = 16.7, 6.2 Hz, 1H), 3.37 (dd, = 15.7, 7.7 Hz, 1H), 4.46 (s, 1H), 4.55 (q, = 7.7 Hz, 1H), 5.26 (t, = 5.8 Hz, 1H), 7.26-7.34 (m, 5H), 7.95 (dd, = 4.0, 1.6 Hz, 1H), 8.28 (dd, = 4.2, 0.6 Hz, 1H), 8.75 (dd, = 1.5, 0.7 Hz, 1H).
Example 1.25: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((lS,2/?)-2-Hydroxy-indan-l-yl)-amide (Compound 921).
Figure imgf000093_0002
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and (lS,2R)-l -amino-2,3-dihydro-iH-inden-2-ol. LCMS m/z = 390.3
.r.M+JJ.l+ JJJ. .MB /4.00MHz .C , ^ £1 .6- JU .Cm JJJA J.-28 /..td ..Τ = Άίλ _5.J JHz. JTLY^J- 2.33 (m, IH), 2.67-2.73 (m, IH), 2.96 (d, / = 16.8 Hz, IH), 3.00-3.07 (m, 2H), 3.24 (dd, / = 16.5, 5.4 Hz, IH), 4.76 (td, / = 5.2, 2.2 Hz, IH), 5.55 (dd, / = 8.4, 5.2 Hz, IH), 7.20-7.34 (m, 4H), 7.56 (d, = 8.4 Hz, IH), 7.79 (dd, = 4.2, 1.6 Hz, IH), 8.19 (dd, = 4.0, 0.6 Hz, IH), 8.84 (dd, = 1.4, 0.6 Hz, IH).
Example 1.26: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid [2-Hydroxy-l-(tetrahydro-pyran-4- yl)-ethyl]-amide (Compound 841
Figure imgf000094_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 6 and 2-amino-2-(tetrahydro-2H-pyran-4-yl)ethanol. The crude reaction mixture was purified by preparative HPLC to give a white solid. LCMS m/z = 386.2 [M+H]+; !H NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6 and 3.2 Hz, IH), 1.23-1.29 (m, IH), 1.40-1.54 (m, 2H), 1.65-1.75 (m, 2H), 1.95-2.05 (m, IH), 2.27-2.33 (m, IH), 2.30-2.40 (m, IH), 2.70-2.75 (m, IH), 2.89-3.04 (m, 2H), 3.36-3.45 (m, 2H), 3.82-3.91 (m, 3H), 4.00 (dd, = 11.3 and 3.8 Hz, 2H), 7.05 (d, = 8.3 Hz, IH), 7.99 (d, = 4.1 and 0.9 Hz, IH), 8.28 (d, = 4.1 Hz, IH), 8.80 (d, = 0.5 Hz, IH).
Resolution Via Chiral HPLC
Column: Chiralcel OD preparative column, 5 cm ID x 50 cm L
Injection: ~ 60 mg
Eluent: 50% IPA/Hexanes
Gradient: isocratic
Flow: 60 mL/min
Detector: 280 nm
Retention Time: 1st diastereomer - 37.0 min, 2nd diastereomer - 44.2 min
Example 1.27: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (2,2,2-Trifluoro-l,l-dimethyl-ethyl)-amide (Compound 927).
Figure imgf000095_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 4 and l,l,l-trifluoro-2-methylpropan-2-amine. LCMS mJz = 352.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6 and 3.2 Hz, 1H), 1.23-1.29 (m, 1H), 1.71 (s, 6H), 2.27-2.33 (m, 1H), 2.74-2.80 (m, 1H), 2.93 (d, = 17.1 Hz, 1H), 3.00 (dd, = 16.6 and 6.2 Hz, 1H), 6.94 (s, 1H), 8.42 (dd, / = 2.5 and 1.5 Hz, 1H), 8.52 (d, = 2.5 Hz, 1H), 9.25 (d, = 1.4 Hz, 1H).
Example 1.28: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Trifluoromethyl-cyclobutyl)-amide (Compound 765).
Figure imgf000095_0002
Step A: Preparation of l-(Trifluoromethyl)cyclobutanamine Hydrochloride.
l-(Trifluoromethyl)cyclobutanecarboxylic acid (1 g, 5.95 mmol) and triethylamine (0.912 mL, 6.54 mmol) in anhydrous teri-butanol (20 mL) was stirred at room temperature in the presence of 4A molecular sieves powder. To the mixture was added diphenyl
phosphorazidate (1.801 g, 6.54 mmol). The reaction mixture was refluxed under N2 for 2 days, filtered, then concentrated in vacuo. The oily residue was stirred in ether, ether layer was isolated. The procedure was repeated three times. The combined organics were washed with 5% citric acid, saturated aqueous NaHC03 twice, brine, dried over anhydrous Na2S04, and concentrated to give tert-b tyl l-(trifluoromethyl)cyclobutylcarbamate (713 mg) as a white solid. The solid was dissolved in 1.25 N HC1 in methanol solution (10 mL), stirred at 50 °C overnight, and concentrated to give the title compound (493 mg). !H NMR (400 MHz, DMSO- d6) δ 1.87-1.97 (m, 1H), 2.04-2.15 (m, 1H), 2.44-2.50 (m, 4H), 9.40 (br, 3H).
Step B: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Trifluoromethyl-cyclobutyl)-amide (Compound 765). The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l-(trifluoromethyl)cyclobutanamine hydrochloride. LCMS mJz = 380.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6, 3.2 Hz, 1H), 1.23-1.29 (m, 1H), 2.04-2.14 (m, 2H), 2.27-2.33 (m, 1H), 2.62-2.69 (m, 4H), 2.71-2.76 (m, 1H), 2.92 (d, = 17.1 Hz, 1H), 3.00 (dd, / = 16.8 and 6.2 Hz, 1H), 6.92 (s, 1H), 7.99 (dd, = 4.1 and 1.5 Hz, 1H), 8.29 (dd, = 4.1 and 0.6 Hz, 1H), 8.81 (dd, = 1.5 and 0.6 Hz, 1H).
Example 1.29: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (l-Trifluoromethyl-cyclobutyl)-amide
(Compound 926).
Figure imgf000096_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 4 and l-(trifluoromethyl)cyclobutanamine hydrochloride. LCMS m/z = 364.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6, 3.2 Hz, 1H), 1.23-1.29 (m, 1H), 2.04-2.14 (m, 2H), 2.27-2.33 (m, 1H), 2.64-2.70 (m, 4H), 2.74-2.80 (m, 1H), 2.93 (d, = 16.9 Hz, 1H), 3.02 (dd, = 16.6 and 6.2 Hz, 1H), 6.99 (s, 1H), 8.42 (dd, = 2.5 and 1.5 Hz, 1H), 8.52 (d, = 2.5 Hz, 1H), 9.26 (d, = 1.4 Hz, 1H).
Example 1.30: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Trifluoromethyl-cyclopropyl)- amide (Compound 764).
Figure imgf000096_0002
Step A: Preparation of l-(Trifluoromethyl)cyclopropanamine Hydrochloride.
The title compound was prepared in a manner similar to that described in Example 1.28, Step A, using l-(trifluoromethyl)cyclopropanecarboxylic acid.
Step B: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Trifluoromethyl-cyclopropyl)- amide (Compound 764). The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l-(trifluoromethyl)cyclopropanamine hydrochloride. LCMS m/z = 366.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6, 3.2 Hz, 1H), 1.23-1.29 (m, 3H), 1.39-1.43 (m, 2H), 2.27-2.33 (m, 1H), 2.70-2.75 (m, 1H), 2.92 (d, = 17.0 Hz, 1H), 3.00 (dd, = 16.8 and 6.2 Hz, 1H), 7.28 (s, 1H), 8.00 (dd, = 4.1 and 1.5 Hz, 1H), 8.29 (dd, / = 4.1 and 0.6 Hz, 1H), 8.81 (dd, = 1.5 and 0.6 Hz, 1H).
Example 1.31: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (l-Trifluoromethyl-cyclopropyl)-amide
(Compound 930).
Figure imgf000097_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 4 and l-(trifluoromethyl)cyclopropanamine hydrochloride. LCMS m/z = 350.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.6, 3.2 Hz, 1H), 1.23-1.29 (m, 3H), 1.39-1.43 (m, 2H), 2.27-2.33 (m, 1H), 2.74-2.80 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.02 (dd, = 16.7 and 6.2 Hz, 1H), 7.31 (s, 1H), 8.42 (dd, = 2.5 and 1.5 Hz, 1H), 8.52 (d, = 2.5 Hz, 1H), 9.26 (d, = 1.4 Hz, 1H).
Example 1.32: Preparation of (laR,5aR)-Pentanedioic Acid mono-((S)-3-Methyl-2- {[(la/?,5a/?)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino}-butyl) Ester (Compound 844) and its Sodium
Salt.
Figure imgf000097_0002
To a solution of (laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2-methyl-propyl)-amide
(Compound 690) (100 mg, 0.291 mmol), DMAP (17.79 mg, 0.146 mmol) and triethylamine (79 μΐ,, 0.582 mmol) in DCM (5 mL) was added dihydro-2H-pyran-2,6(3H)-dione (100 mg, 0.874 mmol). The reaction mixture was stirred at room temperature overnight, then concentrated. The residue was purified by preparative HPLC. The combined fractions were extracted with DCM. The organic layers were washed with water twice, dried over anhydrous Na2S04, and concentrated to give the title compound as a white solid (95 mg). LCMS m/z = 458.4 [M+H]+; lU NMR (400 MHz, DMSO- ) δ 0.42 (td, / = 4.6, 3.2 Hz, 1H), 0.91 (d, / = 6.8 Hz, 3H), 0.93 (d, / = 6.8 Hz, 3H), 1.23-1.27 (m, 1H), 1.65-1.72 (m, 2H), 1.85-1.92 (m, 1H), 2.18 (t, / = 7.5 Hz, 2H), 2.30 (t, = 7.4 Hz, 2H), 2.27-2.33 (m, 1H), 2.65-2.70 (m, 1H), 2.75 (d, / = 16.8 Hz, 1H), 2.86 (dd, / = 16.5 and 6.4 Hz, 1H), 3.92-4.02 (m, 1H), 4.08 (dd, / = 11.0 and 8.2 Hz, 1H), 4.25 (dd, / = 11.0 and 4.2 Hz, 1H), 8.05 (d, / = 9.2 Hz, 1H), 8.29 (dd, / = 4.1 and 1.5 Hz, 1H), 8.47 (d, / = 4.1 Hz, 1H), 8.81 (d, / = 1.3, 1H), 12.0 (br, 1H).
(laR,5aR)-Pentanedioic acid mono-((5)-3-methyl-2-{ [(laR,5aR)-2-(4-oxy-pyrazin-2- yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}-butyl) ester (165 mg, 0.36 mmol) was dissolved in THF (5 mL), heated at 40 °C for 5 min, 0.1 N NaOH solution (3.6 mL, 0.36 mmol) was added slowly, stirred for 30 min while cooled down, then concentrated. The residue was lyophilized to give the sodium salt as white solid (165 mg). LCMS m/z = 458.2 [M+H-Na] +; lU NMR (400 MHz, -DMSO) δ 0.42 (td, = 4.6, 3.2 Hz, 1H), 0.91 (d, = 6.8 Hz, 3H), 0.93 (d, = 6.8 Hz, 3H), 1.23-1.27 (m, 1H), 1.55-1.62 (m, 2H), 1.80 (t, = 7.0 Hz, 2H), 1.85-1.92 (m, 1H), 2.24 (t, = 7.4 Hz, 2H), 2.25-2.33 (m, 1H), 2.65- 2.70 (m, 1H), 2.75 (d, = 16.7 Hz, 1H), 2.86 (dd, = 16.5 and 6.5 Hz, 1H), 3.91-3.99 (m, 1H), 4.05 (dd, = 11.0 and 7.6 Hz, 1H), 4.22 (dd, = 11.0 and 4.3 Hz, 1H), 8.15 (d, = 9.1 Hz, 1H), 8.28 (dd, = 4.2 and 1.5 Hz, 1H), 8.47 (d, = 4.1 Hz, 1H), 9.06 (d, = 1.6, 1H).
Example 1.33: Preparation of (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l-hydroxymethyl-l- methyl-ethyl)-amide (Compound
Figure imgf000098_0001
Step A: Preparation of 4-Bromo-2-hydrazinylpyridine.
To a solution of 4-bromo-2-fluoropyridine (23.75 g, 135 mmol) in ethanol (120 mL) was added hydrazine monohydrate (65.5 mL, 1350 mmol). The mixture was stirred at 45 °C for 16 h then concentrated. The resulting solid was triturated with water, collected by filtration, rinsed with water, and dried under vacuum, to give the title compound (23.2 g) as a white solid.
LCMS m/z = 188.0 [M+H]+; !H NMR (400 MHz, DMSO-i ) δ 4.19 (s, 2H), 6.69 (dd,
1.8 Hz, 1H), 6.92 (d, 7 = 1.7 Hz, 1H), 7.69 (s, 1H), 7.84 (d, = 5.3 Hz, 1H). Step B: Preparation of (la/?,5a/?)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
The title compound was prepared as described in Method KKK, using (1R,5S)- bicyclo[3.1.0]hexan-2-one and 4-bromo-2-hydrazinylpyridine. LCMS m/z = 348.2 [M+H]+.
Step C: Preparation of (laR,5aR)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
To a solution of (laR,5aR)-2-(4-bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (9.0 g, 25.8 mmol) in THF (50 mL) and MeOH (50.0 mL) was added a 2.0 M aqueous solution of sodium hydroxide (25.8 mL, 51.7 mmol). The reaction was stirred at 23 °C for 2 h then concentrated to remove the organic solvents. The remaining residue was diluted to 150 mL with water. This solution was filtered to remove trace insoluble impurities then acidified to pH ~3 with 6 M HC1. The resulting precipitate was collected by filtration, rinsed with water, then dried under vacuum to give the title compound (8.3 g) as a white solid. LCMS m/z = 320.0 [M+H]+.
Step D: Preparation of (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
(laR,5aR)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid (1.00 g, 3.12 mmol) was dissolved in DMA (10 mL). 60 wt sodium hydride (0.125 g, 3.12 mmol) was added and the mixture was stirred vigorously for 5 min. Nitrogen was bubbled through the mixture for 10 min. Zinc(II) cyanide (0.734 g, 6.25 mmol) and palladium tetrakistriphenylphosphine (0.180 g, 0.156 mmol) were added. The reaction was microwaved at 120 °C for 1 h. The reaction was diluted with ethyl acetate (20 mL) and methanol (5 mL), filtered, then concentrated. The residue was purified by HPLC to give the title compound (0.557 g) as a white solid. LCMS m/z = 267.2 [M+H]+.
Step E: Preparation of (la/?,5a/?)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l-hydroxymethyl-l- methyl-ethyl)-amide (Compound 820).
To a solution of (laR,5aR)-2-(4-cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (100 mg, 0.376 mmol), 2-amino-2-methylpropane- 1 ,3-diol (39.5 mg, 0.376 mmol), and triethylamine (0.105 mL, 0.751 mmol) in DMF (2 mL) was added HATU (157 mg, 0.413 mmol). The reaction was stirred at 23 °C, for 30 min then concentrated. The residue was purified by silica gel flash column chromatography to give the title compound (125 mg) as a white solid. LCMS m/z = 354.3 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.46 (td, = 4.7, 3.3 Hz, 1H), 1.27 (td, = 8.0, 4.9 Hz, 1H), 1.36 (s, 3H), 2.27-2.33 (m, 1H), 2.78-2.89 (m, 2H), 3.00 (dd, = 16.8, 6.4 Hz, 1H), 3.72-3.77 (m, 4H), 3.87-3.94 (m, 2H), 7.23 (m, 1H), 7.42 (dd, / = 5.1 , 1.0 Hz, 1H), 8.16-8.17 (m, 1H), 8.62 (d, = 5.1 Hz, 1H). Example 1.34: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid N'-tert-Butyl-hydrazide (Compound 902). Method TT
Figure imgf000100_0001
To a solution of Intermediate 5 (129 mg, 0.5 mmol) and HATU (190 mg, 0.500 mmol) in DMF (4 mL) was added triethylamine (126 mg, 1.250 mmol) followed by teri-butylhydrazine (44.1 mg, 0.500 mmol) at room temperature. The reaction was stirred for 16 h. The reaction mixture was diluted with water (100 mL) and extracted with EtOAc (70 mL). The organic layer was concentrated and the residue was purified by silica gel column chromatography to give the title compound (87 mg) as a white solid. LCMS mJz = 329.3 [M+H]+; lU NMR (400 MHz,
CDC13) δ 0.49 (dd, = 8.0 and 4.7 Hz, 1H), 1.17 (s, 9H), 1.25-1.31 (m, 1H), 2.29-2.33 (m, 1H), 2.72-2.77 (m, 1H), 2.93 (d, = 16.8 Hz, 1H), 3.01 (dd, / = 17.0 and 6.2 Hz, 1H), 8.00 (dd, / = 4.1 and 1.4 Hz, 1H), 8.29 (d, = 4.1 Hz, 1H), 8.80 (d, = 1.4 Hz, 1H).
Example 1.35: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2-methyl- propyl)-amide (Compound 896).
Figure imgf000100_0002
The title compound was prepared in a manner similar to that described in Method TT. LCMS m/z = 344.1 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.48 (dd, = 8.0 and 4.7 Hz, 1H), 1.02 (t, = 7.1 Hz, 6H), 1.28 (td, = 8.0 and 5.0 Hz, 1H), 1.98-2.04 (m, 1H), 2.28-2.32 (m, 1H), 2.71-2.75 (m, 1H), 2.93 (d, = 16.8 Hz, 1H), 3.00 (dd, = 16.7 and 6.3 Hz, 1H), 3.74-3.88 (m, 3H), 6.97 (d, = 8.1 Hz, NH, 1H), 7.99 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (d, = 4.1 Hz, 1H), 8.79 (d, = 1.5 Hz, 1H).
Example 1.36: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide (Compound 767). Method AAA
Figure imgf000101_0001
Step A: Preparation of (/?)-N-((S)-2,2-Dimethyl-l-(pyridin-2-yl)propyl)-3,3,3- trifluoro-2-methoxy-2-phenylpropanamide and (l?)-N-((/?)-2,2-Dimethyl-l-(pyridin-2- yl)propyl)-3,3,3-trifluoro-2-methoxy-2-phenylpropanamide.
To an ice -cooled solution of racemic 2,2-dimethyl-l -(pyridin-2-yl)propan-l -amine (1.0 g, 6.09 mmol) and triethylamine (0.849 niL, 6.09 mmol) in dichloromethane (20 niL) was added a dichloromethane (5 niL) solution of (S)-3,3,3-trifluoro-2-methoxy-2-phenylpropanoyl chloride (1.148 mL, 6.09 mmol). The solution was stirred at 23 °C for 30 min then loaded onto a silica column. Purification by silica gel flash column chromatography gave the title compound as diastereomers: First-eluting diastereomer (0.56 g) and second-eluting diastereomer (0.504 g) as yellow oils.
First-eluting diastereomer: LCMS mJz = 381.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.83 (s, 9H), 3.40 (q, 7 = 1.7 Hz, 3H), 4.93 (d, 7 = 9.5 Hz, 1H), 7.16-7.20 (m, 2H), 7.38-7.42 (m, 3H), 7.61 (td, 7 = 7.7, 1.8 Hz, 1H), 7.65-7.68 (m, 2H), 7.96 (d, 7 = 9.5 Hz, 1H), 8.55 (dt, 7 = 4.5, 1.3 Hz, 1H).
Second-eluting diastereomer: LCMS m/z = 381.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.96 (s, 9H), 3.44 (q, 7 = 1.4 Hz, 3H), 4.90 (d, 7 = 9.5 Hz, 1H), 7.14-7.17 (m, 2H), 7.23-7.31 (m, 3H), 7.41 (d, 7 = 7.3 Hz, 2H), 7.59 (td, 7 = 7.7, 1.8 Hz, 1H), 8.16 (d, 7 = 9.4 Hz, 1H), 8.50 (dt, 7 = 5.3, 1.8 Hz, 1H).
Step B: Preparation of (S)-2,2-Dimethyl-l-(pyridin-2-yl)propan-l-amine and (R)-
2,2-Dimethyl-l-(pyridin-2-yl)propan-l-amine.
Solutions of (R)-N-((5)-2,2-dimethyl-l-(pyridin-2-yl)propyl)-3,3,3-trifluoro-2-methoxy- 2-phenylpropanamide (0.56 g, 1.472 mmol) or (R)-N-((R)-2,2-dimethyl-l -(pyridin-2-yl)propyl)- 3,3,3-trifluoro-2-methoxy-2-phenylpropanamide (0.56 g, 1.472 mmol) in 48 wt aqueous hydrogen bromide (5.02 mL, 44.2 mmol) were heated under microwave irradiation at 160 °C for 2 h. The mixtures were diluted with water (25 mL), extracted with dichloromethane (3 x 25 mL), and the dichloromethane extracts discarded. The aqueous solutions were basified with 2 M aqueous NaOH (25 mL) then extracted with dichloromethane (3 x 25 mL). These extracts were dried (MgS04), filtered, then concentrated to give enantiomeric 2,2-dimethyl-l -(pyridin-2- yl)propan-l -amine derived from first-eluting diastereomer (0.175 g) and enantiomeric 2,2- dimethyl- l -(pyridin-2-yl)propan-l -amine derived from second-eluting diastereomer (0.200 g) as yellow oils.
Enantiomer derived from first-eluting Mosher amide: LCMS m/z = 165.3 [M+H]+;
Enantiomer derived from second-eluting Mosher amide: LCMS m/z = 165.3 [M+H]+. Step C: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-
2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide.
To a solution of Intermediate 5 (200 mg, 0.774 mmol), (5)-2,2-dimethyl-l-(pyridin-2- yl)propan-l -amine (127 mg, 0.774 mmol), and triethylamine (0.216 mL, 1.549 mmol) in DMF (3 mL) was added HATU (324 mg, 0.852 mmol). The reaction was stirred at 23 °C for 1 h then diluted with DMSO (2 mL). The mixture was purified by preparative HPLC to give the title compound (183 mg) as a white solid. LCMS m/z = 405.4 [M+H]+. lU NMR (400 MHz, CDC13) δ 0.38 (td, / = 4.7, 3.3 Hz, 1H), 0.99 (s, 9H), 1.23 (td, = 8.0, 4.8 Hz, 1H), 2.24-2.31 (m, 1H), 2.71-2.75 (m, 1H), 2.88 (dd, / = 16.7, 1.8 Hz, 1H), 3.03 (dd, / = 16.7, 6.4 Hz, 1H), 5.02 (d, = 9.5 Hz, 1H), 7.15-7.20 (m, 2H), 7.59 (td, = 7.7, 1.8 Hz, 1H), 7.99 (dd, = 4.0, 1.4 Hz, 1H), 8.18 (d, = 9.5 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.61-8.62 (m, 1H), 8.92-8.93 (m, 1H).
Example 1.37: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((/?)-2,2-Dimethyl-l-pyridin-2-yl- propyl)-amide (Compound 766)
Figure imgf000102_0001
To a solution of Intermediate 5 (200 mg, 0.774 mmol), (R)-2,2-dimethyl-l -(pyridin-2- yl)propan-l -amine (127 mg, 0.774 mmol), and triethylamine (0.216 mL, 1.549 mmol) in DMF (3 mL) was added HATU (324 mg, 0.852 mmol). The reaction was stirred at 23 °C for 1 h then diluted with DMSO (2 mL). The mixture was purified by preparative HPLC to give the title compound (230 mg) as a white solid. LCMS m/z = 405.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.50 (td, = 4.8, 3.3 Hz, 1H), 0.99 (s, 9H), 1.26 (td, = 7.8, 4.9 Hz, 1H), 2.24-2.30 (m, 1H), 2.69-2.74 (m, 1H), 2.94-2.95 (m, 2H), 5.02 (d, = 9.5 Hz, 1H), 7.15-7.20 (m, 2H), 7.59 (td, = 7.7, 1.9 Hz, 1H), 7.99 (dd, = 4.2, 1.5 Hz, 1H), 8.18 (d, = 9.5 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.61-8.63 (m, 1H), 8.92-8.93 (m, 1H). Example 1.38: Preparation of (laS,5aS)-(S)-2-Amino-3-methyl-butyric Acid
Dimethyl-2-{[2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-c ound 848).
Figure imgf000103_0001
Step A: Preparation of (laS,5aS)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
To a solution of Intermediate 4 (1.4 g, 5.78 mmol) and triethylamine (1.611 mL, 11.56 mmol) in DMF (15 mL) was added HATU (2.242 g, 5.90 mmol). The reaction was stirred at 23 °C for 5 min, then (S)-2-amino-3,3-dimethylbutan-l-ol (0.711 g, 6.07 mmol) was added. The reaction was stirred at 23 °C for 15 min then concentrated. The residue was purified by silica gel column chromatography to give the title compound (1.97 g) as a white solid. LCMS m/z = 342.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.48 (td, / = 4.6, 3.4 Hz, 1H), 1.05 (s, 9H), 1.24 (td, / = 8.0, 4.7 Hz, 1H), 2.26-2.32 (m, 1H), 2.74-2.78 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.01 (dd, / = 16.7, 6.1 Hz, 1H), 3.67-3.72 (m, 1H), 3.93-3.98 (m, 2H), 7.08 (d, = 8.5 Hz, 1H), 8.42 (dd, / = 1.4, 0.9 Hz, 1H), 8.51 (d, J = 2.7 Hz, 1H), 9.26 (d, = 1.1 Hz, 1H).
Step B: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide.
To a solution of (laS,5aS)-2-pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide (900 mg, 2.64 mmol) in chloroform (10 mL) was added 3-chlorobenzoperoxoic acid (1772 mg, 7.91 mmol). The reaction was stirred at 23 °C for 3 h. Another 1.2 g mCPBA was added and stirring was continued at room temperature for 18 h. The mixture was purified by silica gel column chromatography to give the title compound (550 mg) as a white solid. LCMS m/z =
358.3 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.49 (td, = 4.6, 3.3 Hz, 1H), 1.03 (s, 9H), 1.27 (td, = 8.0, 4.9 Hz, 1H), 2.08 (bs, 1H), 2.27-2.33 (m, 1H), 2.71-2.76 (m, 1H), 2.93 (d, = 16.8 Hz, 1H), 3.00 (dd, = 16.7, 6.1 Hz, 1H), 3.65-3.71 (m, 1H), 3.92-3.97 (m, 2H), 6.97 (d, = 8.5 Hz, 1H), 7.99 (dd, = 4.0, 1.4 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.78 (dd, = 1.4, 0.8 Hz, 1H). Step C: Preparation of (S)-2-tert-Butoxycarbonylamino-3-methyl-butyric Acid (S)- 3,3-Dimethyl-2-{[(laS,5aS)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino}-butyl Ester.
To a solution of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide
(500 mg, 1.399 mmol), (5)-2-(tert-butoxycarbonylamino)-3-methylbutanoic acid (1003 mg, 4.62 mmol), triethylamine (1.170 mL, 8.39 mmol), and DMAP (68.4 mg, 0.560 mmol) in 1,2- dichloroethane (10 mL) was added Nl-((ethylimino)methylene)-N3,N3-dimethylpropane-l,3- diamine. The mixture was stirred at 60 °C for 2 h. The mixture was purified by silica gel column chromatography to give the title compound (495 mg) as a white solid. LCMS m/z = 557.5.
Step D: Preparation of (laS,5aS)-(S)-2-Amino-3-methyl-butyric Acid (S)-3,3- Dimethyl-2-{[2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl]-amino}-butyl Ester.
To (5)-2-teri-butoxycarbonylamino-3-methyl-butyric acid (5)-3,3-dimethyl-2- { [(la5,5a5)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene- 4-carbonyl] -amino} -butyl ester (495 mg, 0.889 mmol) was added HCl (4 M in dioxane, 5.56 mL, 22.23 mmol). The reaction was stirred at 23 °C for 1 h then concentrated. The off-white solid was taken up in 2: 1 water/acetonitrile (10 mL) then freeze -dried to give the HCl salt of the title compound (437 mg) as a white solid. LCMS m/z = 457.3 [M+H]+; lU NMR (400 MHz, DMSO-i/s) δ 0.44 (td, / = 4.4, 3.4 Hz, 1H), 0.78 (d, = 7.0 Hz, 3H), 0.81 (d, = 7.1 Hz, 3H),
0.97 (s, 9H), 1.27 (td, / = 7.8, 4.7 Hz, 1H), 1.98-2.06 (m, 1H), 2.27-2.33 (m, 1H), 2.65-2.69 (m, 1H), 2.73-2.84 (m, 2H), 3.85 (d, = 4.2 Hz, 1H), 4.12 (td, = 10.2, 2.3 Hz, 1H), 4.33 (dd, / = 8.2, 2.9 Hz, 1H), 4.47 (t, = 10.9 Hz, 1H), 8.08 (d, = 9.7 Hz, 1H), 8.29 (dd, / = 4.2, 1.5 Hz, 1H), 8.33 (s, 3H), 8.48 (d, = 4.2 Hz, 1H), 9.11-9.12 (m, 1H).
Example 1.39: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((/?)-l,2-Dimethyl-propyl)-amide (Compound 912).
Figure imgf000104_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and (R)-3-methylbutan-2-amine. LCMS m/z = 328.3 [M+H]+; !H NMR (400 MHz, CDC13) δ 0.46-0.50 (m, 1H), 0.96 (d, = 6.8 Hz, 3H), 0.97 (d, = 6.7 Hz, 3H), 1.19 (d, = 6.9 Hz, 3H), 1.26 (td, = 8.2, 4.8 Hz, 1H), 1.75-1.87 (m, 1H), 2.26-2.33 (m, 1H), 2.70- 2.75 (m, 1H), 2.94 (d, = 16.8 Hz, 1H), 3.01 (dd, = 16.6, 6.0 Hz, 1H), 3.95-4.05 (m, 1H), 6.64 (d, = 9.0 Hz, 1H), 7.98 (dd, / = 4.0, 1.4 Hz, 1H), 8.28 (d, = 4.0 Hz, 1H), 8.78-8.80 (m, 1H). Example 1.40: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((/?)-l,2-Dimethyl-propyl)-amide (Compound 828).
Figure imgf000105_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 6 and (R)-3-methylbutan-2-amine. LCMS m/z = 328.3 [M+H]+; !H NMR (400 MHz, CDC13) δ 0.44-0.48 (m, 1H), 0.95 (d, = 6.8 Hz, 3H), 0.97 (d, = 6.9 Hz, 3H), 1.18 (d, = 6.9 Hz, 3H), 1.26 (td, = 8.0, 4.9 Hz, 1H), 1.75-1.88 (m, 1H), 2.26-2.33 (m, 1H), 2.70- 2.75 (m, 1H), 2.93 (d, = 17.1 Hz, 1H), 3.02 (dd, = 16.7, 6.2 Hz, 1H), 3.95-4.05 (m, 1H), 6.64 (d, = 8.9 Hz, 1H), 7.98 (dd, = 4.0, 1.4 Hz, 1H), 8.28 (d, = 4.0 Hz, 1H), 8.79-8.80 (m, 1H). Example 1.41: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l,l-dimethyl-ethyl)-amide (Compound 904).
Figure imgf000105_0002
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and l-fluoro-2-methylpropan-2-amine. LCMS m/z = 332.2 [M+H]+; !H NMR (400 MHz, CDC13) δ 0.44-0.48 (m, 1H), 1.27 (td, = 8.0, 5.0 Hz, 1H), 1.46 (s, 3H), 1.47 (s, 3H), 2.26-2.34 (m, 1H), 2.703-2.76 (m, 1H), 2.91 (d, = 16.9 Hz, 1H), 3.00 (dd, = 16.6, 6.2 Hz, 1H), 4.54 (d, = 47.5 Hz, 2H), 6.73 (s, 1H), 7.98 (dd, = 4.0, 1.5 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.78-8.79 (m, 1H).
Example 1.42: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2-Hydroxy-l-phenyl-ethyl)-amide (Compound 913).
Figure imgf000106_0001
The title compound was prepared in a manner similar to that described in Method UU using Intermediate 5 and (S)-2-amino-2-phenylethanol. LCMS m/z = 378.3 [M+H]+; !H NMR (400 MHz, CDC13) δ 0.43-0.47 (m, 1H), 1.26 (td, / = 7.8, 4.9 Hz, 1H), 2.26-2.33 (m, 1H), 2.55 (bs, 1H), 2.70-2.76 (m, 1H), 2.90 (d, = 16.9 Hz, 1H), 3.00 (dd, = 16.7, 6.3 Hz, 1H), 3.95-4.04 (m, 2H), 5.18-5.24 (m, 1H), 7.29-7.35 (m, 1H), 7.36-7.41 (m, 4H), 7.44 (d, = 7.4 Hz, 1H), 7.98 (dd, = 4.2, 1.5 Hz, 1H), 8.28 (d, = 4.2 Hz, 1H), 8.80 (d, = 1.1 Hz, 1H).
Example 1.43: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Fluoromethyl-2,2-dimethyl- propyl)-amide (Compound 918).
Figure imgf000106_0002
The title compound was prepared in a manner similar to that described in Method UU, using Intermediate 6 and (S)-l-fluoro-3,3-dimethylbutan-2-amine hydrochloride. LCMS m/z = 360.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.50 (td, / = 4.6 and 3.2 Hz, 1H), 1.05 (s, 9 H), 1.25-1.30 (m, 1H), 2.27-2.35 (m, 1H), 2.72-2.77 (m, 1H), 2.93 (d, = 16.9 Hz, 1H), 3.01 (dd, = 16.6 and 6.2 Hz, 1H), 4.03-4.15 (m, 1H), 4.48-4.74 (m, 2H), 7.04 (d, = 10.0 Hz, 1H), 7.99 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (d, = 4.1 Hz, 1H), 8.81 (d, = 1.5 Hz, 1H).
Example 1.44: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (l-Fluoromethyl-cyclobutyl)-amide (Compound 924).
Figure imgf000107_0001
The title compound was prepared in a manner similar to that described in Method UU, using Intermediate 5 and l-(fluoromethyl)cyclobutanamine hydrochloride, which was prepared in a similar manner to that described in Example 1.58, Step A to Step E, using (1- aminocyclobutyl)methanol. LCMS mJz = 344.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.48 (td, = 4.6 and 3.2 Hz, 1H), 1.24-1.29 (m, 1H), 1.85-1.95 (m, 1H), 2.00-2.10 (m, 1H), 2.27-2.47 (m, 5H), 2.70-2.75 (m, 1H), 2.91 (d, = 17.3 Hz, 1H), 3.00 (dd, = 16.7 and 6.2 Hz, 1H), 4.68 (d, = 47.8 Hz, 2H), 6.98 (s, 1H), 7.97 (dd, / = 4.1 and 1.5 Hz, 1H), 8.28 (dd, / = 4.1 and 0.7 Hz, 1H), 8.80 (dd, = 1.5 and 0.7 Hz, 1H).
Example 1.45: Preparation of (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide (Compound 931).
Figure imgf000107_0002
Step A: Preparation of 2-Hydrazinyl-4-iodopyridine.
To a solution of 2-fluoro-4-iodopyridine (7.00 g, 31.4 mmol) in ethanol (60 mL) was added hydrazine monohydrate (15.23 mL, 314 mmol). The mixture was stirred at 40 °C for 15 h then concentrated. The resulting residue was triturated with 1 : 1 hexanes/ether. The remaining solid was further triturated with water then dried under vacuum to give the title compound (6.6 g) as a tan solid. LCMS m/z = 235.9 [M+H]+. lU NMR (400 MHz, DMSO-i ) δ 4.15 (s, 2H), 6.86 (dd, 7 = 5.2, 1.5 Hz, 1H), 7.13 (d, = 1.5 Hz, 1H), 7.56 (s, 1H), 7.67 (d, = 5.3 Hz, 1H).
Step B: Preparation of (la/?,5a/?)-2-(4-Iodo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid Ethyl Ester.
To a solution of (lR,55)-bicyclo[3.1.0]hexan-2-one (2.045 g, 21.27 mmol) and diethyl oxalate (2.91 mL, 21.27 mmol) in absolute ethanol (100 mL) was added a 1.0 M THF solution of potassium 2-methylpropan-2-olate (21.27 mL, 21.27 mmol). The mixture was stirred at 40 °C for 4 h. 2-Hydrazinyl-4-iodopyridine (5.00 g, 21.27 mmol) was added followed by a 3.0 M aqueous solution of hydrogen chloride (21.27 mL, 63.8 mmol). The reaction was stirred at 45 °C, for 16 h. Brine (150 mL) was added. The mixture was extracted with dichloromethane (3 x 50 mL). The combined organic extracts were washed with brine (100 mL), dried (MgS04), filtered, and then concentrated. The residue was purified by silica gel flash chromatography to give the title compound (5.8 g) as a white solid. LCMS m/z = 396.1 [M+H]+; lU NMR (400
MHz, CDC13) δ 0.44 (td, = 4.7, 3.5 Hz, 1H), 1.25 (td, = 8.0, 5.1 Hz, 1H), 1.40 (t, = 7.1 Hz, 3H), 2.22-2.29 (m, 1H), 2.80-2.85 (m, 1H), 2.85 (d, = 17.1 Hz, 1H), 2.97 (dd, = 16.9, 6.6 Hz, 1H), 4.39 (q, = 7.1 Hz, 2H), 7.57 (dd, = 5.2, 1.4 Hz, 1H), 8.10 (d, = 5.2 Hz, 1H), 8.48 (s, 1H).
Step C : Preparation of (lafl,5afl)-2-(4-Iodo-pyridin-2-yl)- la,2,5,5a-tetrahydro- 1H-
2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
To a solution of (laR,5aR)-2-(4-iodo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester in MeOH (10.00 mL) and THF (10.00 mL) was added a 2 M aqueous solution of sodium hydroxide (5.20 mL, 10.40 mmol). The mixture was stirred at room temperature for 2 h then concentrated. The remaining solid was dissolved in water (30 mL). The solution was acidified to pH ~2 by addition of 6 M aqueous HC1. The resulting precipitate was collected by filtration, rinsed with water, then dried to give the title compound (190 mg) as a white solid. LCMS m/z = 368.1 [M+H]+.
Step D: Preparation of (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
To a solution of (laR,5aR)-2-(4-iodo-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (174 mg, 0.47 mmol) in DMSO (2.5 mL) was added cesium fluoride (500 mg, 3.29 mmol). The mixture was heated under microwave irradiation at 200 °C for 60 min. The mixture was purified by preparative HPLC to give the title compound as a white solid (85 mg). LCMS m/z = 260.1 [M+H]+.
Step E: Preparation of (la/?,5a/?)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide.
To a solution of (laR,5aR)-2-(4-fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (68 mg, 0.262 mmol), 2-amino-2-methylpropan-l-ol (23.38 mg, 0.262 mmol), and triethylamine (0.073 mL, 0.525 mmol) in DMF (1 mL) was added HATU (105 mg, 0.275 mmol). The reaction was stirred at 23 °C for 20 min then concentrated. The residue was purified by silica gel column chromatography to give the title compound (80 mg) as a white solid. LCMS m/z = 331.3 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.46 (td, = 4.6, 3.4 Hz, 1H), 1.26 (td, = 7.8, 4.9 Hz, 1H), 1.41 (s, 3H), 1.42 (s, 3H), 2.24-2.30 (m, 1H), 2.79-2.84 (m, 1H), 2.91 (d, = 16.8 Hz, 1H), 3.00 (dd, = 16.6, 6.3 Hz, 1H), 3.70 (d, = 6.4 Hz, 2H), 4.69 (t, = 6.3 Hz, 1H), 6.93-6.98 (m, 2H), 7.63 (dd, / = 10.1, 2.4 Hz, 1H), 8.43 (dd, = 8.5, 5.7 Hz, 1H).
Example 1.46: Preparation of l-(2,4-Difluoro-phenyl)-3b,4,4a,5-tetrahydro-lH- cyclopropa[3,4]cyclopenta[l,2-c]pyrazole-3-carboxylic Acid (2-Hydroxy-l,l-dimethyl- ethyl)-amide (Compound 515).
Figure imgf000109_0001
The title compound was prepared in a manner similar to that described in Method X using 2-amino-2-methylpropan-l-ol. LCMS mlz = 348.2 [M+H]+.
Example 1.47: Preparation of (laR,5aR)-2-(5-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide (Compound 151).
Figure imgf000109_0002
The title compound was prepared in a manner similar to that described in Method G using 2-amino-2-methylpropane-l,3-diol and (laR,5aR)-2-(5-Chloropyridin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid. The aforementioned acid was prepared in a similar method as described in Method A and B using (1R,5S)- bicyclo[3,l,0]hexan-2-one and 5-chloro-2-hydrazinylpyridine. LCMS mlz = 347.2 [M+H]+; H NMR (400 MHz, CDC13) δ ppm 0.45 (td, / = 4.7, 3.3 Hz, 1H), 1.25 (td, / = 8.3, 4.4 Hz, 1H), 1.406 (s, 3H), 1.410 (s, 3H), 2.24-2.30 (m, 1H), 2.75-2.80 (m, 1H), 2.90 (d, = 16.6 Hz, 1H), 3.00 (dd, = 16.6, 6.4 Hz, 1H), 3.70 (s, 2H), 4.63 (bs, 1H), 6.92 (s, 1H), 7.78 (dd, = 8.7, 2.5 Hz, 1H), 7.87 (dd, = 8.8, 0.6Hz, 1H), 8.41 (dd, = 2.5, 0.6Hz, 1H).
Example 1.48: Preparation of (laR,5aR)-2-(2,4-Dichloro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (1-Hydroxymethyl-cyclopropyl)- amide (Compound 174).
Figure imgf000110_0001
The title compound was prepared in a manner similar to that described in Method G using (laR,5aR)-2-(2,4-dichloro-phenyl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and (l-hydroxymethyl-cyclopropyl)-amine. LCMS m/z = 378.2 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.51 (td, = 4.6 and 3.4 Hz, 1H), 0.90- 1.03 (m, 4H), 1.14-1.21 (m, 1H), 2.00-2.07 (m, 1H), 2.27-2.37 (m, 1H), 2.97 (d, = 16.6 Hz, 1H), 3.06 (dd, / = 16.6 and 6.3 Hz, 1H), 3.71 (s, 2H), 7.28 (bs, 1H), 7.40 (dd, = 8.5 and 2.1 Hz, 1H), 7.44 (d, = 8.5 Hz, 1H), 7.58 (d, = 2.1 Hz, 1H).
Example 1.49: Preparation of (laR,5aR)-2-Pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic Acid tert-Butylamide (Compound 593).
Figure imgf000110_0002
The title compound was prepared in a manner similar to that described in Method G using Intermediate 2 and tert-butyl amine. LCMS m/z = 298.3 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, = 4.6 and 3.3 Hz, 1H), 1.22-1.27 (m, 1H), 1.48 (s, 9H), 2.25-2.32 (m, 1H), 2.71-2.76 (m, 1H), 2.93 (d, = 16.7 Hz, 1H), 3.02 (dd, = 16.6 and 6.2 Hz, 1H), 6.79 (s, 1H), 8.42 (br, 1H), 8.49 (d, = 2.0 Hz, 1H), 9.25 (s, 1H).
Example 1.50: Preparation of (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Hydroxy-l,l-dimethyl-ethyl)- amide (Compound 644).
Figure imgf000110_0003
The title compound was prepared in a manner similar to that described in Method T using (laR,5aR)-2-(5-bromo-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy- 1,1 -dimethyl -ethyl)-amide and dicyanozinc. LCMS m/z = 338.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.47 (dd, / = 4.6 and 3.4 Hz, IH), 1.25-1.31 (m, IH), 1.45 (s, 6H), 2.26-2.34 (m, IH), 2.78-2.84 (m, IH), 2.93 (d, = 16.1 Hz, IH), 3.02 (dd, / = 16.7 and 6.3 Hz, IH), 3.73 (s, 2H), 6.93-6.97 (bs, IH), 7.43 (dd, = 5.0 and 1.2 Hz, IH), 8.17 (s, IH), 8.63 (d, = 5.0, IH).
Example 1.51: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2-methyl- propyl)-amide (Compound 690).
Figure imgf000111_0001
The title compound was prepared in a manner similar to that described in Method CCC. LCMS m/z = 344.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.47 (dd, = 8.0 and 4.7 Hz, IH), 1.02 (t, = 7.2 Hz, 6H), 1.28 (td, = 8.0 and 5.0 Hz, IH), 2.00-2.05 (m, IH), 2.28-2.32 (m, IH), 2.72-2.77 (m, IH), 2.95 (d, = 17.3 Hz, IH), 3.02 (dd, = 16.7 and 6.3 Hz, IH), 3.73- 3.89 (m, 3H), 6.98 (d, = 8.3 Hz, NH, IH), 7.99 (dd, = 4.1 and 1.5 Hz, IH), 8.28 (d, = 4.1 Hz, IH), 8.80 (s, IH).
Example 1.52: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-2,2-Dimethyl-l-methylcarbamoyl- propyl)-amide (Compound 704).
Figure imgf000111_0002
The title compound was prepared in a manner similar to that described in Method CCC. LCMS m/z = 385.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.44 (dd, = 8.0 and 4.7 Hz, IH), 1.24-1.29 (m, IH), 2.26-2.32 (m, IH), 2.72-2.77 (m, IH), 2.82 (d, = 4.8 Hz, 3H), 2.88 (d, J = 16.1 Hz, 1H), 3.01 (dd, 7" = 16.5 and 6.5 Hz, 1H), 4.30 (d, = 9.5 Hz, 1H), 5.90 (q, = 4.4 Hz, NH, 1H), 7.44 (d, = 9.5 Hz, NH, 1H), 8.00 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (d, = 4.1 Hz, 1H), 8.84 (s, 1H).
Example 1.53: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-Methylcarbamoyl-phenyl- methyl)-amide (Compound 722).
Figure imgf000112_0001
(S)-2-Amino-N-methyl-2-phenylacetamide was prepared in a manner similar to that described in Method ΗΗΗ and III using (5)-2-(teri-butoxycarbonylamino)-2-phenylacetic acid and methylamine. The title compound was prepared in a manner similar to that described in Method G using (laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and (5)-2-amino-N-methyl-2-phenylacetamide. LCMS m/z = 405.3 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.40-0.47 (m, 1H), 1.21-1.29 (m, 1H), 2.23-2.31 (m, 1H), 2.69-2.75 (m, 1H), 2.83 (dd, = 4.9 and 1.9 Hz, 3H), 2.87 (d, = 16.9 Hz, 1H), 2.92-3.00 (m, 1H), 5.50 (d, = 6.8 Hz, 1H), 5.69 (bs, 1H), 7.30-7.41 (m, 3H), 7.43-7.48 (m, 2H), 7.97 (dd, = 4.0 and 1.4 Hz, 1H), 7.98-8.03 (m, 1H), 8.26 (d, = 4.0 Hz, 1H), 8.83- 8,85 (m, 1H).
Example 1.54: Preparation of (S)-3,3-Dimethyl-2-{[(la/?,5a/?)-2-(4-oxy-pyrazin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}-butyric Acid Methyl Ester (Compound 746).
Figure imgf000112_0002
The title compound was prepared in a manner similar to that described in Method
CCC, using (laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid and (S)-methyl 2-amino-3,3-dimethylbutanoate.
LCMS m/z = 386.2. ΓΜ+Η.Γ lU NMR (400 MHz, CDCL.) δ .ρριη 0.44 (dd, = 8.0 and 4.7 Hz, 1H), 1.06 (s, 9H), 1.24-1.29 (m, 1H), 2.26-2.32 (m, 1H), 2.72-2.77 (m, 1H), 2.90 (d, 7 = 16.8 Hz, 1H), 3.02 (dd, 7 = 16.7 and 6.4 Hz, 1H), 3.75 (s, 3H), 4.58 (d, 7 = 9.6 Hz, 1H), 7.28 (d, 7 = 9.6 Hz, NH, 1H), 8.00 (dd, 7 = 4.1 and 1.4 Hz, 1H), 8.29 (d, 7 = 4.1 Hz, 1H), 8.83 (d, 7 = 1.3 Hz, 1H).
Example 1.55: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l-fluoromethyl-l- hydroxymethyl-ethyl)-amide (Co
Figure imgf000113_0001
Step A: Preparation of Methyl 2-Aamino-3-fluoro-2-(fluoromethyl)propanoate. The title compound was prepared as described in Synthesis 1994 vol. 7 pp. 701-702.
Step B: Preparation of 2-{[(laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a- tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}-3-fluoro-2- fluoromethyl-propionic Acid Methyl Ester.
To a solution of (la5,5a5)-2-(4-chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (100 mg, 0.363 mmol), methyl 2-amino-3-fluoro-2- (fluoromethyl)propanoate hydrochloride (76 mg, 0.399 mmol) and triethylamine (0.101 mL, 0.725 mmol) in DMF (2 mL) was added HATU (138 mg, 0.363 mmol). The reaction was stirred at 50 °C for 2 h, then concentrated. The residue was purified by silica gel flash chromatography to give the title compound as a white solid. LCMS m/z = 411.2 [M+H]+; H NMR (400 MHz, CDC13) δ 0.46 (td, 7 = 4.7, 3.3 Hz, 1H), 1.25 (td, 7 = 7.8, 4.7 Hz, 1H), 2.24-2.30 (m, 1H), 2.79- 2.84 (m, 1H), 2.89 (d, 7 = 16.8 Hz, 1H), 2.99 (dd, 7 = 16.4, 6.2 Hz, 1H), 3.89 (s, 3H), 4.81-5.12 (m, 4H), 7.22 (dd, 7 = 5.3, 1.8 Hz, 1H), 7.51 (s, 1H), 7.98(d, 7 =1.8 Hz, 1H), 8.36 (d, 7 = 5.3 Hz, 1H).
Step C: Preparation of (laS,5aS)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid (2-Fluoro-l-fluoromethyl-l- hydroxymethyl-ethyl)-amide.
To a solution of 2-{ [(la5,5a5)-2-(4-chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carbonyl]-amino}-3-fluoro-2-fluoromethyl-propionic acid methyl ester (130 mg, 0.316 mmol) in THF (2 mL) and MeOH (0.200 mL) was added sodium borohydride (23.94 mg, 0.633 mmol). The reaction was stirred at 23 °C for 2 h. Saturated aqueous NaHC03 (15 mL) was added. The mixture was extracted with dichloromethane (3 x 15
- I l l - mL). The combined organic extracts were dried (MgS04), filtered, then concentrated. The residue was purified by silica gel flash chromatography to give the title compound (106 mg) as a white solid. LCMS mJz = 383.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.46 (td, / = 4.6, 3.5 Hz, 1H), 1.27 (td, = 8.0, 4.9 Hz, 1H), 2.25-2.31 (m, 1H), 2.80-2.85 (m, 1H), 2.89 (d, = 16.9 Hz, 1H), 2.99 (dd, = 16.6, 6.3 Hz, 1H), 3.96 (d, = 5.9 Hz, 2H), 4.25 (t, = 6.8 Hz, 1H), 4.55- 4.84 (m, 4H), 7.23 (dd, = 5.3, 1.8 Hz, 1H), 7.27 (s, 1H), 7.92 (d, =1.6 Hz, 1H), 8.36 (d, = 5.3 Hz, 1H).
Example 1.56: Preparation of (laS,5aS)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-3,3,3-Trifluoro-l-hydroxymethyl- propyl)-amide (Compound 891).
Figure imgf000114_0001
Step A: Preparation of (laS,5aS)-2-(4-Bromo-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
To a solution of (la5,5a5)-2-(4-bromo-pyridin-2-yl)-l a,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ethyl ester (1.00 g, 2.87 mmol) in methanol (5 mL) and THF (5.00 mL) was added a 2.0 M aqueous solution of sodium hydroxide (2.87 mL, 5.74 mmol). The reaction was stirred at 23 °C for 2 h. The organic solvents were removed by distillation. The remaining aqueous solution was diluted with water (20 mL) then acidified to pH ~2 by addition of 6 M aq. HC1. The resulting precipitate was collected by filtration, rinsed with water, then dried under vacuum to give the title compound (0.87 g) as a white solid. LCMS m/z = 320.0 [M+H]+.
Step B: Preparation of (laS,5aS)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid.
( 1 aS,5aS)-2-(4-Bromo-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3 -diaza- cyclopropa[a]pentalene-4-carboxylic acid (0.87 g, 2.72 mmol) was dissolved in DMA (10 mL). Sodium hydride (0.109 g, 2.72 mmol) was added, and nitrogen was bubbled through the mixture for 10 min. Zinc(II) cyanide (0.638 g, 5.44 mmol) and palladium tetrakistriphenylphosphine (0.157 g, 0.136 mmol) were added. The reaction was stirred under microwave heating in a sealed tube at 120 °C for 2 h. Water (25 mL) and 6 M aqueous HC1 (1 mL) were added. The mixture was extracted with 25% iPrOH/dichloromethane (3 x 25 mL) (The biphasic mixture was filtered after the first extraction to clear up an emulsion). The combined organic extracts were dried (MgS04), filtered, then concentrated. The residue was purified by flash chromatography to give the title compound (0.68 g) as a tan solid. LCMS m z = 267.0 [M+H]+.
Step C: Preparation of (S)-2-Amino-4,4,4-trifluorobutan-l-ol.
To an ice -cooled solution of (S)-2-(tert-butoxycarbonylamino)-4,4,4-trifluorobutanoic acid (1.0 g, 3.89 mmol) and N-ethyl-N-isopropylpropan-2-amine (0.813 mL, 4.67 mmol) in THF (15 mL) was added dropwise ethyl chloroformate (0.409 mL, 4.28 mmol). The cooling bath was removed and the mixture was stirred at 23 °C for 2 h. The mixture was filtered to remove the white precipitate, and the filtrate was treated with a 2 M THF solution of lithium borohydride (1.944 mL, 3.89 mmol) resulting in vigorous gas evolution. The mixture was stirred at room temperature for 2 h. Brine (25 mL) was added. The mixture was extracted with ethyl acetate (3 x 25 mL). The combined organic extracts were dried (MgS04), filtered, then concentrated under vacuum. The residue was purified by silica gel flash chromatography to give (S)-tert-butyl 4,4,4- trifluoro-l-hydroxybutan-2-ylcarbamate (0.80 g) as a white solid. This solid was treated with 4 M HC1 in dioxane (10 mL) for 60 min then concentrated to give the HC1 salt of the title compound (0.54 g) as a white solid. lU NMR (400 MHz, CD3OD) δ 2.55-2.79 (m, 2H), 3.42 (bs, 1H), 3.54 (dd, / = 11.6, 5.6 Hz, 1H), 3.66 (dd, / = 11.6, 3.9 Hz, 1H), 3.53 (bs, 1H), 8.27 (bs, 3H).
Step D: Preparation of (laS,5aS)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro- lH-2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-3,3,3-Trifluoro-l- hydroxymethyl-propyl)-amide.
To a solution of (la5,5a5)-2-(4-cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (75 mg, 0.282 mmol) and triethylamine (0.118 mL, 0.845 mmol) in DMF (1 mL) was added HATU (118 mg, 0.310 mmol). The reaction was stirred at 23 °C, for 5 min, then was added (S)-2-amino-4,4,4-trifluorobutan-l-ol hydrochloride (55.6 mg, 0.310 mmol). The reaction was stirred at 23 °C for 30 min, then concentrated. The residue was purified by silica gel flash chromatography to give the title compound (86 mg) as a white solid. LCMS m/z = 392.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.47 (td, / = 4.7, 3.2 Hz, 1H), 1.27 (td, = 8.1, 4.8 Hz, 1H), 2.26-2.32 (m, 1H), 2.54-2.69 (m, 3H), 2.77-2.82 (m, 1H), 2.93 (d, = 16.8 Hz, 1H), 3.01 (dd, = 16.6, 6.1 Hz, 1H), 3.88 (d, = 2.9 Hz, 2H), 4.33-4.41 (m, 1H), 7.23 (d, = 8.2 Hz, 1H), 7.41 (dd, = 5.1, 1.4 Hz, 1H), 8.17 (t, = 0.8 Hz, 1H), 8.62 (dd, = 5.1, 0.6 Hz, 1H).
Example 1.57: Preparation of (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide (Compound 629).
To a solution of (laR,5aR)-2-pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide (1.024 g, 3.0 mmol) in formic acid (10 mL) was added hydrogen peroxide (35% in water, 0.582 mL, 6.00 mmol). The reaction was stirred at 45 °C for 72 h and concentrated. The residue was dissolved in THF/MeOH (40mL/40mL) and added lithium hydroxide (1.437 g, 60.0 mmol) in water (5 mL). The reaction was stirred at room temperature for 1 h and neutralized with NH4C1 solution. After removal of the organic solvent, the mixture was extracted with EtOAc. The organics were purified by silica gel column chromatography. The resulting oil was treated with ACN (5 mL) and concentrated to give the title compound (0.49 g) as a white solid. LCMS m/z = 358.4 [M+H]+; lU NMR (400 MHz, CDC13) δ ppm 0.47 (dd, / = 8.0 and 4.7 Hz, 1H), 1.05 (s, 9H), 1.28 (td, = 7.9 and 5.0 Hz, 1H), 2.28-2.32 (m, 1H), 2.72-2.76 (m, 1H), 2.92 (d, = 17.0 Hz, 1H), 3.02 (dd, / = 16.7 and 6.4 Hz, 1H), 3.67 (dd, / = 11.9 and 8.8 Hz, 1H), 3.92-3.98 (m, 2H), 6.97 (d, = 8.7 Hz, NH, 1H), 8.00 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (d, = 4.1 Hz, 1H), 8.79 (s, 1H).
Example 1.58: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Fluoromethyl-2,2-dimethyl- propyl)-amide (Compound 916).
Step A: Preparation of (S)-2-(Benzylamino)-3,3-dimethylbutan-l-ol.
(5)-2-Amino-3,3-dimethylbutan-l-ol (4.01 g, 34.2 mmol) was dissolved in benzene (120 mL). Benzaldehyde (3.65 mL, 35.9 mmol) and p-TsOH monohydrate (1.302 mg, 6.84 μιηοΐ) were added. The reaction mixture was heated at reflux for 5 h using Dean-Stark to remove water, the mixture was then concentrated. The residue was dissolved in anhydrous MeOH (100 mL), cooled down in an ice-water bath, and added sodium borohydride (1.942 g, 51.3 mmol) slowly. The reaction mixture was stirred for 30 min, quenched with 1 N NaOH solution, diluted with water, and extracted with ethyl acetate. The combined organics were washed with water, dried over anhydrous Na2S04, filtered, then concentrated to give the title compound (5.77 g) as a colorless oil without further purification. LCMS m/z = 208.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.88 (s, 9H), 2.33 (dd, = 6.4 and 4.7 Hz, 1H), 3.34 (dd, = 10.6 and 6.4 Hz, 1H), 3.59 (dd, = 10.6 and 4.7 Hz, 1H), 3.76 and 3.85 (dd, = 12.8 Hz, 2H), 7.20-7.27 (m, 5H). Step B: Preparation of (4S)-4-(tert-Butyl)-3-(phenylmethyl)-l,2,3-oxathiazolidine-2-oxide.
(5)-2-(Benzylamino)-3,3-dimethylbutan-l -ol (5.77 g, 27.8 mmol) in dry DCM (100 mL) was cooled down to -20 °C, DIEA (19.39 ml, 111 mmol) was added, followed by thionyl chloride (2.228 ml, 30.6 mmol) in DCM (10 mL). The reaction mixture was stirred for 1 h at this temperature, then concentrated. The residue was purified by column chromatography to give the title compound (6.26 g) as a diastereomeric mixture. LCMS m/z = 254.0 [M+H]+. Step C: Preparation of (4S)-4-(¾rt-Butyl)-3-(phenylmethyl)-l,2,3-oxathiazolidine-2,2- dioxide.
To a solution of (45)-4-(teri-butyl)-3-(phenylmethyl)-l ,2,3-oxathiazolidine-2-oxide (6.26 g, 24.71 mmol) in acetonitrile (30 mL) and water (30 mL) at 0 °C was added ruthenium chloride hydrate (5.13 mg, 0.025 mmol), followed by sodium periodate (7.93 g, 37.1 mmol). The reaction mixture was slowly warmed to room temperature and stirred for 3 h, diluted with water, extracted with ethyl acetate. The combined organics were washed with water, dried over anhydrous Na2S04, filtered then concentrated to give the title compound (6.22 g) as an off-white solid. LCMS m/z = 270.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 1.00 (s, 9H), 3.25-3.30 (m, 1H), 4.31-4.40 (m, 2H), 4.47 and 4.55 (dd, = 15.2 Hz, 2H), 7.30-7.48 (m, 5H).
Step D: Preparation of (S)-N-Benzyl-l-fluoro-3,3-dimethylbutan-2-amine.
To a solution of (45)-4-(teri-butyl)-3-(phenylmethyl)-l,2,3-oxathiazolidine-2,2-dioxide (6.22 g, 23.09 mmol) in THF (100 mL) was added a 1 M solution of tetrabutylammonium fluoride in THF (46.2 ml, 46.2 mmol) at 0 °C. The reaction mixture was warmed to room temperature and stirred overnight. Solvent was evaporated, and ether (50 mL) and 20% H2S04 aqueous solution (20 mL) were added. The reaction mixture was stirred for 2 h at room temperature, diluted with water, neutralized with solid NaHC03 slowly then extracted with ethyl acetate. The combined organics were dried over anhydrous Na2S04, filtered, then concentrated. The residue was purified by column chromatography to give the title compound (4.13 g) as a light yellow oil. LCMS m/z = 210.4 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.96 (s, 9H), 2.41 (dt, / = 24.7 and 4.3 Hz, 1H), 3.76 (d, = 13.1 Hz, 1H), 4.01 (d, = 13.1 Hz, 1H), 4.39-4.72 (m, 2H), 7.23-7.38 (m, 5H).
Step E: Preparation of (S)-l-Fluoro-3,3-dimethylbutan-2-amine Hydrochloride.
To a solution of (5)-N-benzyl-l-fluoro-3,3-dimethylbutan-2-amine (4.12 g, 19.68 mmol) in methanol (50 mL) was added 10% palladium on carbon (2.095 g, 1.968 mmol). The reaction mixture was shaken under H2 atmosphere (60 Psi) for 24 h, a 1.25 M solution of HC1 in ethanol (31.5 mL, 39.4 mmol) was added. The reaction mixture was stirred at room temperature for 1 h. The solid was filtered through Celite, washed with methanol. The filtrate was concentrated to give the title compound (3.1 g). lU NMR (400 MHz, DMSO-i ) δ 0.96 (s, 9H), 3.11-3.20 (m, 1H), 4.55-4.82 (m, 2H), 8.26 (s, 3H).
Step F: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3- diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Fluoromethyl-2,2-dimethyl- propyl)-amide.
The title compound was prepared in a manner similar to that described in Method UU, using Intermediate 5 and (5)-l-fluoro-3,3-dimethylbutan-2-amine hydrochloride. LCMS m/z = 360.2 [M+H]+; lU NMR (400 MHz, CDC13) δ 0.50 (td, = 4.6 and 3.2 Hz, 1H), 1.05 (s, 9 H), 1.25-1.30 (m, 1H), 2.27-2.35 (m, 1H), 2.72-2.77 (m, 1H), 2.95 (dt, = 16.8 and 0.7 Hz, 1H), 3.01 (dd, / = 16.6 and 5.8 Hz, 1H), 4.03-4.15 (m, 1H), 4.48-4.74 (m, 2H), 7.04 (d, = 10.1 Hz, 1H), 7.99 (dd, = 4.1 and 1.5 Hz, 1H), 8.28 (dd, = 4.1 and 0.6 Hz, 1H), 8.80 (dd, = 1.5 and 0.7 Hz, 1H). Example 1.59: Preparation of (laS,5aS)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic Acid ((S)-l-Hydroxymethyl-2,2-dimethyl- propyl)-amide (Compound 699, Anhydrous Form).
To a 4L reactor equipped with an overhead stirrer, chiller/heater, and a dropping funnel was added (laS,5aS)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)-amide (Compound 699, 145 g, 406 mmol), acetonitrile (205 mL, 3925 mmol), and water (290 mL). The mixture was heated to 60°C and then stirred for 60 min. To the resulting reaction was added an additional amount of water (2900 mL), cooled to 0°C, and allowed to stir for 4 h. The mixture was filtered, the solids washed with water and dried under vacuum at 50°C to provide Compound 699 as the anhydrous form, the material was characterized by PXRD (Figure 11), DSC/TGA (Figure 12), and DMS (Figure 13).
Example 2: Homogeneous Time-Resolved Fluorescence (HTRF®) Assay For Direct cAMP Measurement
A: CB2 assay
Compounds were screened for agonists and inverse agonists of CB2 receptor (e.g. , human CB2 receptor) using the HTRF® assay for direct cAMP measurement (Gabriel et al , ASSAY and Drug Development Technologies, 1:291-303, 2003) in recombinant CHO-K1 cells stably transfected with the CB2 receptor. CHO-K1 cells were obtained from ATCC® (Manassas, VA; Catalog # CCL-61). An agonist of the CB2 receptor was detected in the HTRF® assay for direct cAMP measurement as a compound which decreased cAMP concentration. An inverse agonist of the CB2 receptor was detected in the HTRF® assay for direct cAMP measurement as a compound which increased cAMP concentration. The HTRF® assay also was used to determine EC50 values for CB2 receptor agonists and inverse agonists.
B: CBi assay
Compounds were also screened for agonists and inverse agonists of the CBi receptor (e.g. , human CBi receptor) using HTRF® assay for direct cAMP measurement (Gabriel et al , ASSAY and Drug Development Technologies, 1:291-303, 2003) in recombinant CHO-K1 cells stably transfected with the CBi receptor. CHO-K1 cells were obtained from ATCC® (Manassas, VA; Catalog # CCL-61). An agonist of the CBi receptor was detected in the HTRF® assay for direct cAMP measurement as a compound which decreased cAMP concentration. An inverse agonist of the CBi receptor was detected in the HTRF® assay for direct cAMP measurement as a compound which increased cAMP concentration. The HTRF® assay also was used to determine EC50 values for CBi receptor agonists and inverse agonists.
Principle of the assay: The HTRF® assay kit was purchased from Cisbio-US, Inc. (Bedford, MA; Catalog # 62AM4PEC). The HTRF® assay supported by the kit is a competitive immunoassay between endogenous cAMP produced by the CHO-Kl cells and tracer cAMP labeled with the dye d2. The tracer binding is visualized by a monoclonal anti-cAMP antibody labeled with Cryptate. The specific signal (i.e., fluorescence resonance energy transfer, FRET) is inversely proportional to the concentration of unlabeled cAMP in the standard or sample.
Standard curve: The fluorescence ratio (665 nm/620 nm) of the standards (0.17 to 712 nM cAMP) included in the assay was calculated and used to generate a cAMP standard curve according to the kit manufacturer's instructions. The fluorescence ratio of the samples (test compound or compound buffer) was calculated and used to deduce respective cAMP concentrations by reference to the cAMP standard curve.
Setup of the assay: HTRF® assay was carried out using a two-step protocol essentially according to the kit manufacturer's instructions, in 20 μΐ^ total volume per well in 384-well plate format (ProxiPlates; PerkinElmer, Fremont, CA; catalog # 6008280). To each of the experimental wells was transferred 1500 recombinant CHO-Kl cells in 5 μΐ^ phosphate buffered saline containing calcium chloride and magnesium chloride (PBS+; Invitrogen, Carlsbad, CA; catalog # 14040) followed by test compound in 5 μΐ^ assay buffer (PBS+ supplemented with
0.2% BSA, 4 μΜ forskolin and 1 mM IB MX (Sigma-Aldrich, St. Louis, MO; catalog #s A8806, F6886 and 15879 respectively). The plate was then incubated at room temperature for 1 h. To each well was then added 5 cAMP-d2 conjugate in lysis buffer and 5 μΐ^ Cryptate conjugate in lysis buffer according to the kit manufacturer's instructions. The plate was then further incubated at room temperature for 1 h, after which the assay plate was read.
Assay readout: The HTRF® readout was accomplished using a PHERAstar (BMG Labtech Inc., Durham, NC) or an En Vision™ (Perkin Elmer, Fremont CA) microplate reader. Certain compounds described herein had hCBi EC50 values ranging from about 279 pM to about 76.47 μΜ in this assay and hCB2 EC50 values ranging from about 170 pM to about 44.72 μΜ in this assay. Certain other compounds described herein had hCB2 EC50 values ranging from about 94 pM to about 2.7 nM in this assay.
Example 3: PathHunter β-Arrestin Assay
A: CB2 Assay
Compounds were screened for agonists of the human CB2 receptor using the DiscoveRx
PathHunter β-arrestin assay which measures the β-arrestin binding to the CB2 receptor upon its activation. CB2 was cloned into the pCMV-PK vector (DiscoveRx, Fremont, CA; catalog # 93- 0167) and transfected into the CHO-Kl EA-Arrestin parental cell line (DiscoveRx, Fremont, CA; catalog # 93-0164). CHO-Kl positive clones stably expressing the CB2-ProLink fusion protein were identified by their responses to the CB2 agonist CP55,940. Clone # 61 was chosen for its big agonist window and homogenous expression as detected by anti-HA flow cytometry Principle of the assay: The PathHunter -arrestin assay measures the interaction of β- arrestin with activated GPCRs using Enzyme Fragment Complementation (Yan et al. , J. Biomol. Screen. 7: 451-459, 2002). A small, 42 amino acid β-galactosidase fragment, Prolink, is fused to the c-terminus of a GPCR, and β-arrestin is fused to the larger β-galactosidase fragment, EA (Enzyme Acceptor). Binding of β-arrestin to the activated GPCR causes the complementation of the two enzyme fragments, forming an active β-galactosidase enzyme which can be measured using the chemiluminiescent PathHunter Flash Detection Kit (DiscoveRx, Fremont, CA: catalog # 93-0001).
The assay: The stable CHO-K1 cells expressing CB2-Prolink fusion protein were plated over night in 384-well plates (Optiplate 384-Plus, PerkinElmer, Fremont CA; catalog #
6007299) at 5000 cells/5 μΕ/well in the Opti-MEM medium (Invitrogen, Carlsbad, CA; catalog # 31985088) with 1% FBS. 5uL of test compound diluted in Opti-MEM supplemented with 1 % BSA was transferred to each well of the Optiplate. The plates were then incubated at 37 °C/5 C02 for two hours. 12 μΕ of substrate prepared from the PathHunter Flash Detection Kit (DiscoveRx, Fremont, CA: catalog # 93-0001) was transferred to each well of the Optiplate. The plate was then incubated in the dark at room temperature for 2 h, after which the assay plate was read.
Assay readout: β-Arrestin assay readout was accomplished using a PHERAstar (BMG Labtech Inc., Durham, NC) or an En Vision™ (PerkinElmer, Fremont CA) microplate reader.
B: CBi Assay
Compounds were screened for agonists of the human Qi receptor using the DiscoveRx PathHunter β-arrestin assay which measures the β-arrestin binding to the CBi receptor upon its activation. CBi was cloned into the pCMV-PK vector (DiscoveRx, Fremont, CA; catalog # 93- 0167) and transfected into the CHO-K1 EA- Arrestin parental cell line (DiscoveRx, Fremont, CA; catalog # 93-0164). CHO-K1 positive clones stably expressing the CBi-ProLink fusion protein were identified by their responses to the CBi agonist CP55,940. Clone # 3 was chosen for its big agonist window and homogenous expression as detected by anti-HA flow cytometry Principle of the assay: The PathHunter β-arrestin assay measures the interaction of β- arrestin with activated GPCRs using Enzyme Fragment Complementation (Yan et al. , J. Biomol. Screen. 7: 451-459, 2002). A small, 42 amino acid β-galactosidase fragment, Prolink, is fused to the c-terminus of a GPCR, and β-arrestin is fused to the larger β-galactosidase fragment, EA (Enzyme Acceptor). Binding of β-arrestin to the activated GPCR causes the complementation of the two enzyme fragments, forming an active β-galactosidase enzyme which can be measured using the chemiluminiescent PathHunter Flash Detection Kit (DiscoveRx, Fremont, CA: catalog # 93-0001). The assay: The stable CH0-K1 cells expressing CBi-Prolink fusion protein were plated over night in 384-well plates (Optiplate 384-Plus, PerkinElmer, Fremont CA; catalog #
6007299) at 5000 cells/5 μΕ/well in the Opti-MEM medium (Invitrogen, Carlsbad, CA; catalog # 31985088) with 1% FBS. 5uL of test compound diluted in Opti-MEM supplemented with 1% BSA was transferred to each well of the Optiplate. The plates were then incubated at 37 °C/5 C02 for two h. 12 μΕ of substrate prepared from the PathHunter Flash Detection Kit
(DiscoveRx, Fremont, CA: catalog # 93-0001) was transferred to each well of the Optiplate. The plate was then incubated in the dark at room temperature for 2 h, after which the assay plate was read.
Assay readout: β-Arrestin assay readout was accomplished using a PHERAstar (BMG
LABTECH Inc., Durham, NC) or En Vision™ (PerkinElmer, Fremont CA) microplate reader.
Certain compounds described herein had hCBi EC50 values ranging from about 2.6 nM to about 89.06 μΜ in this assay and hCB2 EC50 values ranging from about 643 pM to about 7 μΜ in this assay. Certain other compounds described herein had hCBi EC50 values ranging from about 10.9 nM to about 100 μΜ in this assay and hCB2 EC50 values ranging from about 384 pM to about 100 μΜ in this assay.
Each of Compounds 151, 174, 309, 515, 593, 625, 642, 644, 646, 667, 683, 684, 690, 696, 698, 699, 700, 703, 704, 722, 746, 764, 765, 766, 767, 820, 821, 828, 841, 848, 889, 891, 896, 897, 902, 904, 912, 913, 918, 919, 920, 921, 924, 926, 927, 930, and 931 had an hCB2 EC50 value ranging from about 0.72 nM to about 3 μΜ. Compounds 264, 493, and 844 were not tested in this assay.
Certain compounds described herein and their corresponding hCB2EC50 values are shown below.
Figure imgf000121_0002
Example 4: Radioligand Binding Assay
Preparation of Membranes: HEK293 cells stably expressing human CB2 receptor were collected, washed in ice cold PBS, and centrifuged at 48,000 X g for 20 min at 4 °C. The cell pellet was then collected, resuspended in wash buffer (20 mM HEPES, pH 7.4 and 1 mM
EDTA), homogenized on ice using a Brinkman Polytron, and centrifuged at 48,000 X g for 20
Figure imgf000121_0001
homogenized again on ice, recentrifuged for 20 min at 4 °C, and membrane pellets were then stored at -80 °C until needed.
[3H]CP55,940 and [3H]WIN55,212-2 Radioligand Binding Assays: Radioligand binding assays for human CB2 receptors were performed using two different agonist radioligands, [3H]CP55,940 and [3H]WIN55,212-2 and similar assay conditions. For both assays, nonspecific binding was determined in the presence of 10 μΜ unlabeled compound. Competition experiments consisted of addition of 20 μΐ^ of assay buffer (50 mM Tris, pH 7.4, 2.5 mM EDTA, 5 mM MgCl2, and 0.5 mg/mL of fatty acid free BSA) containing test compound (concentrations ranging from 1 pM to 100 μΜ), 25 μί of radioligand (1 nM final assay concentration for [3H]CP55,904 and [3H]WIN55,212-2), and 50 μΐ. of membranes (20 μg/mL final protein for both assays). Incubations were conducted for 1 h at room temperature, assay plates were filtered under reduced pressure over GF/B filters, washed with assay buffer and dried overnight in a 50 °C oven. Then, 25 μΐ^ of BetaScint scintillation cocktail was added to each well, and plates were read in a Packard TopCount scintillation counter.
Certain compounds described herein had hCBi Kj values ranging from about 124 nM to about 19.36 μΜ in this assay and hCB2 ¾ values ranging from about 3.22 nM to about 4.69 μΜ in this assay.
Example 5: Effect of Compounds on Osteoarthritis pain.
Injection of monosodium iodoacetate (MIA) into a joint (Kalbhen, 1987) inhibits the activity of glyceraldehyde-3-phosphate dehydrogenase in chondrocytes, resulting in disruption of glycolysis and eventually in cell death. The progressive loss of chondrocytes results in histological and morphological changes of the articular cartilage, closely resembling those seen in osteoarthritis patients.
The osteoarthritis was induced in 200 g male Sprague Dawley rats. After brief anaesthesia by isoflurane rats received a single intra-articular injection of MIA (2 mg) (Sigma Aldrich, Saint Louis, MO, USA; Cat # 19148) dissolved in 0.9% sterile saline in a 50 μΐ^ volume administered through the patella ligament into the joint space of the left knee with a 30G needle. Following the injection, animals were allowed to recover from anaesthesia before being returned to the main housing vivarium.
Typically during disease progression, there was an inflammation period of 0-7 days post-intra-articular injection followed by progressive degeneration of the cartilage and subchondral bone from days 14-55. Efficacy studies with a compound described herein for pain development took place from day 14 onwards and were performed twice a week with at least 3 days' wash-out in between each assay. Three different assays were used to measure pain. Tactile allodynia was measured via von Frey assay, hind limb paw weight distribution was monitored using an incapacitence tester (Columbus Instruments, Columbus, OH, USA) and hind limb grip strength was measured using a grip strength meter (Columbus Instruments, Columbus, OH, USA). Briefly, the von Frey assay was performed using the standard up down method with von- Frey filaments. Hind paw weight distribution was determined by placing rats in a chamber so that each hind paw rests on a separate force plate of the incapacitence tester. The force exerted by each hind limb (measured in grams) is averaged over a 3 second period. Three measurements were taken for each rat, and the change in hind paw weight distribution calculated. Peak hind limb grip force was conducted by recoding the maximum compressive force exerted on the hind limb mesh gauge set on the grip strength meter. During the testing, each rat was restrained and the paw of the injected knee was allowed to grip the mesh. The animal was then pulled in an upward motion until their grip was broken. Each rat is tested 3 times, with the contralateral paw used as a control.
Animals were base -lined prior to treatment of the test compound. The MIA treated groups of rats (6 per group) were then dosed with either vehicle (PEG400, orally), Compound 493 (at 3 mg/kg, 10 mg/kg, and 30 mg/kg, orally) or with morphine (3 mg/kg,
subcutaneously). Dosing volume was 500 μΐ^. One hour after dosing, von Frey assay, hind limb weight distribution and/or hind limb grip analysis was performed to measure the efficacy of the test compound. Increase in paw withdrawal threshold (PWT) by Compound 493 in comparison with vehicle shown in Figure 1 was indicative of the test compound exhibiting therapeutic efficacy in the MIA model of osteoarthritis.
Example 6: Evaluation of combination of Compound 699 and morphine in relieving osteoarthritis pain.
Monosodium iodoacetate -induced osteoarthritis rats were treated with lOmg/kg dose of Compound 699 as positive control. Sub-efficacious lmpk (mg per kg) doses of Compound 699 or morphine were administered either alone or in combination and allodynic pain response was evaluated as change in paw withdrawal threshold (PWT) using Von Frey test one hour post- dosing. Compound 699 was administered orally and morphine was administered
intraperitoneally. As shown in Figure 10, the increase in PWT by Compound 699 in combination with morphine was greater than that seen by adding the increase in PWT of each compound together.
Figure imgf000123_0001
Example 7: Powder X-ray Diffraction.
Powder X-ray Diffraction (PXRD) data were collected on an X'Pert PRO MPD powder diffractometer (PANalytical, Inc.) with a Cu source set at 45 kV and 40 mA, Cu(Ka) radiation and an X'Celerator detector. Samples were added to the sample holder and smoothed flat with a spatula and weigh paper. With the samples spinning, X-ray diffractograms were obtained by a 12-min scan over the 2-theta range 5-40 °2 Θ. Diffraction data were viewed and analyzed with the X'Pert Data Viewer Software, version 1.0a and X'Pert HighScore Software, version 1.0b.
Example 8: Differential Scanning Calorimetry.
Differential scanning calorimetry (DSC) studies were conducted using a TA
Instruments, Q2000 at a heating rate 10°C/min. The instruments were calibrated for temperature and energy using the melting point and enthalpy of fusion of an indium standard. Thermal events (desolvation, melting, etc.) were evaluated using Universal Analysis 2000 software, version 4.1D, Build 4.1.0.16.
Example 9: Thermal Gravimetric Analysis.
Thermogravimetric analyses (TGA) were conducted using a TA Instruments TGA Q500 or Q5000 at a heating rate 10 °C/min. The instruments were calibrated using a standard weight for the balance, and Alumel and Nickel standards for the furnace (Curie point measurements). Thermal events such as weight-loss are calculated using the Universal Analysis 2000 software, version 4.1D, Build 4.1.0.16.
Example 10: Dynamic Moisture-Sorption Analysis.
A dynamic moisture-sorption (DMS) study was conducted using a dynamic moisture- sorption analyzer, VTI Corporation, SGA-100. The instrument was calibrated using polyvinyl pyrrolidone (PVP) and NaCl. Samples were prepared for DMS analysis by placing 5 mg to 20 mg of a sample in a tared sample holder. The sample was placed on the hang-down wire of the VTI balance. A drying step was run, typically at 40 °C and 0.5-1 % RH for 1 h. The isotherm temperature is 25 °C. Defined % RH holds typically ranged from 10% RH to 90% RH, with intervals of 10 to 20% RH. A% weight change smaller than 0.010% over 10 min, or up to 2 h, whichever occurred first, was required before continuing to the next % RH hold. The water content of the sample equilibrated as described above was determined at each % RH hold.
The DMS profile (adsorption/desorption isotherm) for the anhydrous crystalline form of Compound 699 is shown in Figure 13. The corresponding data in tabular form is provided below: Elapsed
Weight Weight Sample Sample
Time
(mg) ( Change) Temperature RH ( )
(min)
46.6 9.6782 0 25.46 1.1
71.4 9.6928 0.151 25.32 29.94
91.1 9.7055 0.282 25.31 49.86
111.2 9.7248 0.482 25.3 69.77
129.1 9.7344 0.581 25.29 79.70
160.1 9.7519 0.762 25.3 89.72
180.1 9.7291 0.526 25.30 70.1 1
200.1 9.7134 0.364 25.3 50.07
218.6 9.6957 0.181 25.29 29.99
234.4 9.6859 0.080 25.29 10.06
Those skilled in the art will recognize that various modifications, additions, substitutions, and variations to the illustrative examples set forth herein can be made without departing from the spirit of the invention and are, therefore, considered within the scope of the invention.

Claims

A composition comprising a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000126_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9
X is CC(0)N(R8)R9 and Y is NR7
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and R is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
and one or more known pharmaceutical agents selected from osteoarthritis agents.
2. A composition comprising a compound selected from compounds of Formula la and pharmaceutically acceptable salts solvates, hydrates, andN-oxides thereof:
Figure imgf000127_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R 10 is absent; R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
one or more known pharmaceutical agents selected from osteoarthritis agents, and
a pharmaceutically acceptable carrier.
A method for preparing a composition comprising the step of admixing a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000129_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9
X is CC(0)N(R8)R9 and Y is NR7
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent; R is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
and one or more known pharmaceutical agents selected from osteoarthritis agents.
4. A composition obtained by a method of claim 3.
5. A method for preparing a composition comprising the step of admixing a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, andN-oxides thereof:
Figure imgf000130_0001
la
wherein: R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C,
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and C1-C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide,
C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl,
one or more known pharmaceutical agents selected from osteoarthritis agents, and
a pharmaceutically acceptable carrier.
6. A composition obtained by a method of claim 5.
7. A method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual, a therapeutically effective amount of a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000132_0001
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R1 is absent;
R11 is selected from: -C(0)NH- and C1-C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl,
and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents. A method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual, a therapeutically effective amount of a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000134_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9
X is CC(0)N(R8)R9 and Y is NR7
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and R is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
and one or more known pharmaceutical agents selected from analgesic agents and osteoarthritis agents.
The method of claim 7 or 8, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof, and the one or more known pharmaceutical agents are administered to the individual simultaneously, separately, or sequentially.
The method according to claim 9, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof and said one or more known pharmaceutical agents are administered simultaneously.
The method according to claim 9, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof and one or more known pharmaceutical agents are administered separately.
12. The method according to claim 9, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof and said one or more known pharmaceutical agents are administered sequentially.
13. A compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000136_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent; R is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
for use in combination with and one or more known pharmaceutical agents selected from osteoarthritis agents.
A compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000137_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C6
X is NR7 and Y is CC(0)N(R8)R9; or X is CC(0)N(R8)R9 and Y is NR7
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and C C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising administering to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents.
A compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000139_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and C1-C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl,
for use in a method for the treatment of osteoarthritis in an individual in need thereof, comprising prescribing to said individual said compound and one or more known pharmaceutical agents selected from osteoarthritis agents. 16. One or more known pharmaceutical agents selected from osteoarthritis agents for use in combination with a compound selected from compounds of Formula la and
pharmaceutically acceptable salts solvates, hydrates, and N-oxides thereof:
Figure imgf000140_0001
la wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C6
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and C1-C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl.
One or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises administering to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000142_0001
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and Ci-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R1 is absent;
R11 is selected from: -C(0)NH- and C1-C6 alkylene; or R11 is absent;
R12 is C1-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl; R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said Ci-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent;
R16 is C1-C6 alkylene; or R16 is absent; and
R17 is selected from: H, C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxy, Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, Ci-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, Ci-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, C1-C6 alkoxy, halogen, and hydroxyl.
One or more known pharmaceutical agents selected from osteoarthritis agents for use in a method for the treatment of osteoarthritis in an individual in need thereof, said method comprises prescribing to said individual one or more known pharmaceutical agents selected from osteoarthritis agents and a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000144_0001
la
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: Ci-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with C1-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, C1-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl.
19. A pharmaceutical product selected from: a pharmaceutical composition, a formulation, a dosage form, a combined preparation, a twin pack, and a kit; comprising a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, andN-oxides thereof:
Figure imgf000145_0001
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: C1-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, Ci-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, Ci-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said Ci-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-Cn bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, C1-C6 alkoxy, C1-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl, and one or more known pharmaceutical agents selected from osteoarthritis agents; for treating osteoarthritis in an individual.
20. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a pharmaceutical composition.
21. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a formulation.
22. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a dosage form.
23. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a combined preparation.
24. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a twin pack.
25. The pharmaceutical product according to claim 19, wherein said pharmaceutical product comprises a kit.
26. The pharmaceutical product according to claim 25, wherein said kit comprises a first package comprising a compound selected from compounds of Formula la and pharmaceutically acceptable salts solvates, hydrates, and N-oxides thereof:
Figure imgf000147_0001
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R 10 is absent; R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: Ci-C6 alkoxy, Ci-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl and aryl are optionally substituted with one substituent selected from: C1-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-Cn bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, C1-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
or a pharmaceutical composition thereof, and a second package comprising one or more known pharmaceutical agents selected from osteoarthritis agents or a pharmaceutical composition thereof.
Use of a compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof:
Figure imgf000149_0001
wherein:
R1, R2, R3, R4, R5, and R6 are each independently selected from: H and C1-C6 alkyl;
X is NR7 and Y is CC(0)N(R8)R9; or
X is CC(0)N(R8)R9 and Y is NR7 ;
R7 is -R10-Rn-R12-R13; wherein:
R is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: Ci-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7
cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: C1-C6 alkoxycarbonyl, C1-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent; R is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, amino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy, C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C2-C8 dialkylamino, C1-C6 haloalkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: Carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl,
and one or more known pharmaceutical agents selected from osteoarthritis agents in the manufacture of a medicament for treating osteoarthritis in an individual.
The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the amount of the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof alone and the amount of the one or more known pharmaceutical agents alone are
therapeutically ineffective.
The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof and the one or more known pharmaceutical agents are admixed with a pharmaceutically acceptable carrier.
The method according to any one of claims 7 to 12, the compound according to any one of claims 14 to 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the individual is a human.
The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof and the one or more known pharmaceutical agents are each admixed with a different
pharmaceutically acceptable carrier.
The method according to any one of claims 7 to 12, the compound according to claim 14 or 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the osteoarthritis is associated with a joint, hip, knee, back, neck, and/or lower back of the individual.
The method according to any one of claims 7 to 12, the compound according to claim 14 or 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the treatment slows the progression of osteoarthritis.
The method according to any one of claims 7 to 12, the compound according to claim 14 or 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the treatment reverses the progression of osteoarthritis. The method according to any one of claims 7 to 12, the compound according to claim 14 or 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the treatment alleviates one or more of the signs and symptoms of osteoarthritis.
The method according to claim 35, the compound according to claim 35, the one or more known pharmaceutical agents according to claim 35, the pharmaceutical product according to claim 35, or the use according to claim 35, wherein the sign or symptom is chosen from: joint stiffness, pain, swelling, and difficulty in physical function.
The method according to claim 35, the compound according to claim 35, the one or more known pharmaceutical agents according to claim 35, the pharmaceutical product according to claim 35, or the use according to claim 35, wherein the sign or symptom is pain.
The method according to claim 37, the compound according to claim 37, the one or more known pharmaceutical agents according to claim 37, the pharmaceutical product according to claim 37, or the use according to claim 37, wherein the pain is measured as pain intensity.
The method according to claim 35, the compound according to claim 35, the one or more known pharmaceutical agents according to claim 35, the pharmaceutical product according to claim 35, or the use according to claim 35, wherein the sign or symptom is joint stiffness.
The method according to claim 35, the compound according to claim 35, the one or more known pharmaceutical agents according to claim 35, the pharmaceutical product according to claim 35, or the use according to claim 35, wherein the sign or symptom is difficulty in physical function.
The method according to any one of claims 7 to 12, the compound according to claim 14 or 15, the one or more known pharmaceutical agents according to claim 17 or 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the method further comprises assessing disease severity. The method according to claim 41, the compound according to claim 41, the one or more known pharmaceutical agents according to claim 41, the pharmaceutical product according to claim 41, or the use according to claim 41, wherein said treatment results in attenuation of a total score of the individual on at least one index selected from: Western Ontario and McMaster Universities (WOMAC) Arthritis Index,
Australian/Canadian (AUSCAN) Osteoarthritis Hand Index, and the Osteoarthritis Global (OGI) Index.
43. The method according to claim 41, the compound according to claim 41, the one or more known pharmaceutical agents according to claim 41, the pharmaceutical product according to claim 41, or the use according to claim 41, wherein a reduction of signs and symptoms is shown by American College of Rheumatology Criteria ACR20 response or American College of Rheumatology Criteria ACR70 response.
44. The method according to claim 41, the compound according to claim 41, the one or more known pharmaceutical agents according to claim 41, the pharmaceutical product according to claim 41, or the use according to claim 41, wherein disease severity is measured by patient or physician global assessments, patient or physician assessments of joint tenderness, joint swelling stiffness, pain, or physical function, cytokine levels, B-cell or T-cell subtype ratios, erythrocyte sedimentation rate (ESR), or C-reactive protein level.
45. The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from compounds of Formula Ie or a pharmaceutically acceptable salt, solvate, hydrate, and/or N-oxide thereof:
Figure imgf000153_0001
Ie
wherein: R7 is -R10-Rn-R12-R13; wherein:
R10 is selected from: Ci-C6 alkylene, heteroarylene, and heterocyclylene; or R10 is absent;
R11 is selected from: -C(0)NH- and Ci-C6 alkylene; or R11 is absent;
R12 is Ci-C6 alkylene; or R12 is absent; and
R13 is selected from: C1-C6 alkyl, aryl, C3-C7 cycloalkyl, heteroaryl, heterocyclyl, and hydroxyl; wherein said C1-C6 alkyl, aryl, and heteroaryl are each optionally substituted with one or two substituents selected from: C1-C6 alkoxy, C1-C6 alkyl, C1-C6 alkylamino, C1-C6 alkylsulfonyl, amino, C3-C7 cycloalkyl, cyano, C2-C8 dialkylamino, C1-C6 haloalkyl, halogen, and hydroxyl;
R8 is -R14-R15-R16-R17; wherein:
R14 is selected from: C1-C6 alkylene, C3-C7 cycloalkenylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said C1-C6 alkylene and heterocyclylene are each optionally substituted with one or more substituents selected from: Ci-C6 alkoxycarbonyl, Ci-C6 alkyl, C3-C7 cycloalkyl, aryl, carboxy, heteroaryl, heterocyclyl, and hydroxyl; wherein said Ci-C6 alkyl and aryl are optionally substituted with one substituent selected from: Ci-C6 alkoxy, aryl, halogen, heteroaryl, and hydroxyl; or R14 is absent;
R15 is selected from: -C(0)NH-, -C(O)-, -C(0)0-, C C6 alkylene, C3-C7 cycloalkylene, heteroarylene, and heterocyclylene; wherein said heterocyclylene is optionally substituted with Ci-C6 alkyl; or R15 is absent;
R16 is Ci-C6 alkylene; or R16 is absent; and
R17 is selected from: H, Ci-C6 alkoxy, Ci-C6 alkyl, Ci-C6 alkylamino, Ci-C6 alkylcarboxamide, C2-C6 alkynyl, ureyl, amino, aryl, arylamino, arylcarbonyl, aryloxy, carbo-Ci-C6-alkoxy, carboxamide, carboxy, cyano, C3-C7 cycloalkyl, C5-C11 bicycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C2-C8 dialkylsulfonamide, C1-C6 haloalkyl, heteroaryl, heteroaryloxy, heterobicyclyl, heterocyclyl, hydroxyl, and phosphonooxy; wherein said C1-C6 alkylamino, aryl, arylamino, aryloxy, C5-C11 bicycloalkyl, C3-C7 cycloalkyl, heteroaryl, heterobicyclyl, heterocyclyl, and ureyl are each optionally substituted with one or more substituents selected from: C1-C6 alkoxy,
C1-C6 alkoxycarbonyl, C1-C6 alkyl, C1-C6 alkylsulfonyl, amino, aryl, carboxy, cyano, C3-C7 cycloalkyl, C3-C7 cycloalkylamino, C2-C8 dialkylamino, C1-C6 haloalkoxy, C1-C6 haloalkyl, halogen, heteroaryl, heterocyclyl, and hydroxyl; and
R9 is selected from: H, Ci-C6 alkyl, and C3-C7 cycloalkyl; or
R8 and R9 together with the nitrogen atom to which they are both bonded form a group selected from: heterocyclyl and heterobicyclyl, each optionally substituted with one or more substituents selected from: carbo-Ci-C6-alkoxy, Ci-C6 alkoxy, Ci-C6 alkyl, aryl, carbo-Ci-C6-alkoxy, Ci-C6 haloalkyl, halogen, heteroaryl, heteroaryloxy, heterocyclyl, and hydroxyl; wherein said aryl, Ci-C6 alkyl, and heteroaryl are optionally substituted with one substituent selected from: C3-C7 cycloalkyl, Ci-C6 alkoxy, halogen, and hydroxyl.
46. The composition according to claim 1 , 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compounds and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 151 : ( 1 aR,5aR)-2-(5 -Chloro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)- amide;
Compound 174: (laR,5aR)-2-(2,4-Dichloro-phenyl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ( 1 -hydroxymethyl-cyclopropyl)- amide;
Compound 264: (laR,5aR)-2-(5-Cyano-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)- amide;
Compound 309: ( 1 aR,5aR)-2-(5 -Fluoro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)- amide;
Compound 493: ( 1 aR,5aR)-2-(2,4-Difluoro-phenyl)- 1 a,2,5 ,5a-tetrahydro- 1 H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l , l-dimethyl-ethyl)- amide;
Compound 515: l-(2,4-Difluoro-phenyl)-3b,4,4a,5-tetrahydro-lH- cyclopropa[3 ,4] cyclopenta[ 1 ,2-c]pyrazole-3 -carboxylic acid (2-hydroxy- 1 , 1 -dimethyl- ethyl)-amide;
Compound 593: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid teri-butylamide;
Compound 625: ( 1 aR,5aR)-2-(4-Chloro-pyridin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1 H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (cyano-dimethyl-methyl)-amide; Compound 642: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -hydroxymethyl-2,2-dimethyl-propyl)- amide;
Compound 644: (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l J-dimethyl-ethyl)- amide;
Compound 646: Phosphoric acid mono-(2-{ [(laR,5aR)-2-(4-cyano-pyridin-2- yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino} -2- methyl-propyl) ester;
Compound 667: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid [2,2-dimethyl- 1 -((S)-methylcarbamoyl)- propyl] -amide;
Compound 683: Phosphoric acid mono-{ (5)-3,3-dimethyl-2-[((laR,5aR)-2- pyrazin-2-yl-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl)- amino] -butyl} ester;
Compound 684: ( 1 aR,5aR)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-2 -hydroxy- 1 -tetrahydro-pyran-4-yl- ethyl)-amide;
Compound 690: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -hydroxymethyl-2-methyl- propyl)-amide;
Compound 696: (1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)- amide;
Compound 698: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-hydroxymethyl-cyclobutyl)- amide;
Compound 699: ( 1 a5,5a5)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethy 1-pr opyl) - amide ;
Compound 700: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (l-pyridin-2-yl-cyclobutyl)-amide;
Compound 703: Phosphoric acid mono-((5)-3,3-dimethyl-2-{ [(laR,5aR)-2-(4- oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4- carbonyl] -amino} -butyl) ester; Compound 704: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-2,2-dimethyl-l- methylcarbamoyl-propyl)-amide;
Compound 722: ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-methylcarbamoyl-phenyl- methyl) -amide;
Compound 746: (5)-3,3-Dimethyl-2-{ [(laR,5aR)-2-(4-oxy-pyrazin-2-yl)- la,2,5,5a-tetrahydro-lH-2,3-diaza-cyclopropa[a]pentalene-4-carbonyl]-amino }-butyric acid methyl ester;
Compound 764: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-trifluoromethyl-cyclopropyl)- amide;
Compound 765: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-trifluoromethyl-cyclobutyl)- amide;
Compound 766: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((R)-2,2-dimethyl- 1 -pyridin-2-yl- propyl)-amide;
Compound 767: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-2,2-dimethyl-l-pyridin-2-yl- propyl)-amide;
Compound 820: (laR,5aR)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l -hydroxymethyl-l- methyl-ethyl)-amide;
Compound 821 : ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-methyl-cyclobutyl) -amide;
Compound 828: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((R)-l ,2-dimethyl-propyl)-amide;
Compound 841 : ( 1 aR,5aR)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid [(5)-2 -hydroxy- 1 -(tetrahydro- pyr an-4-yl) -ethyl] -amide ;
Compound 844: (laR,5aR)-Pentanedioic acid mono-((5)-3-methyl-2- { [(laR,5aR)-2-(4-oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH-2,3-diaza- cyclopropa[a]pentalene-4-carbonyl] -amino } -butyl) ester;
Compound 848: (laS,5aS)-(S)-2-Amino-3-methyl-butyric acid (S)-3,3- dimethyl-2- { [2-(4-oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- lH-2,3 -diaza- cyclopropa[a]pentalene-4-carbonyl] -amino } -butyl ester; Compound 889: (la5,5a5)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-fluoro-l-fluoromethyl-l- hydroxymethyl-ethyl)-amide;
Compound 891: (la5,5a5)-2-(4-Cyano-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((S)-3,3,3-triiluoro-l- hydroxymethyl-propyl)-amide;
Compound 896: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2-methyl- propyl)-amide;
Compound 897: (la5,5a5)-2-(4-Chloro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-lluoro- 1 , 1 -dimethyl -ethyl)- amide;
Compound 902: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid N'-teri-butyl-hydrazide;
Compound 904: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-lluoro- 1 , 1 -dimethyl -ethyl)- amide;
Compound 912: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((R)-l ,2-dimethyl-propyl)-amide;
Compound 913: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-2-hydroxy-l -phenyl -ethyl)- amide;
Compound 918: (laR,5aR)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l -fluoromethyl-2,2-dimethyl- propyl)-amide;
Compound 919: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trifluoro-l,l-dimethyl-ethyl)- amide;
Compound 920: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((15,25)-2-hydroxy-indan-l-yl)- amide;
Compound 921 : ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((15,2R)-2-hydroxy-indan-l-yl)- amide;
Compound 924: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-lluoromethyl-cyclobutyl) -amide; Compound 926: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trifluoromethyl-cyclobutyl)-amide;
Compound 927: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trifluoro- 1 , 1 -dimethyl-ethyl)-amide;
Compound 930: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid (l-trifluoromethyl-cyclopropyl)-amide; and
Compound 931: (laR,5aR)-2-(4-Fluoro-pyridin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2-hydroxy-l,l-dimethyl-ethyl)- amide.
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 696: (1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2-dimethyl-propyl)- amide.
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 699: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethyl-propyl)-amide.
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides is an anhydrous crystalline form of:
Compound 699: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((5)-l-hydroxymethyl-2,2- dimethyl-propyl)-amide.
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 764: ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-trifluoromethyl-cyclopropyl)- amide.
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 765: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (1-trifluoromethyl-cyclobutyl)- amide;
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 919: (la5,5a5)-2-(4-Oxy-pyrazin-2-yl)-la,2,5,5a-tetrahydro-lH- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid (2,2,2-trifluoro- 1,1-dimethyl-ethyl)- amide;
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 921 : ( 1 aS,5aS)-2-(4-Oxy-pyrazin-2-yl)- 1 a,2,5 ,5a-tetrahydro- 1H- 2,3-diaza-cyclopropa[a]pentalene-4-carboxylic acid ((15,2R)-2-hydroxy-indan-l-yl)- amide; and
The composition according to claim 1, 2, 4 or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the compound selected from compounds of Formula la and pharmaceutically acceptable salts, solvates, hydrates, and N-oxides thereof is selected from the following compound and pharmaceutically acceptable salts, solvates, and hydrates thereof:
Compound 926: ( 1 aS,5aS)-2-Pyrazin-2-yl- 1 a,2,5 ,5a-tetrahydro- 1 H-2,3-diaza- cyclopropa[a]pentalene-4-carboxylic acid ( 1 -trifluoromethyl-cyclobutyl)-amide.
The method according to any one of claims 7 to 12, wherein the analgesic agent is chosen from: non-opioid drugs, opioid drugs, and co-analgesic medications.
The method according to claim 55, the compound according to claim 55, the one or more known pharmaceutical agents according to claim 55, the pharmaceutical product according to claim 55, or the use according to claim 55, wherein the non opioid drug is chosen from: non steroidal anti-inflammatory agents, choline magnesium trisalicylate, sulfasalazine, olsalazin, phenacetin, tenoxicam, phenylbutazone, oxyphenthartazone, tapentadol, celecoxib, etoricoxib, lumiracoxib, rofecoxib, parecoxib, and ziconotide.
The method according to claim 56, the compound according to claim 56, the one or more known pharmaceutical agents according to claim 56, the pharmaceutical product according to claim 56, or the use according to claim 56, wherein the non steroidal antiinflammatory agent is chosen from: acemetacin, acetaminophen, aminoprofen, aspirin, benoxaprofen, bucloxic acid, carprofen, choline magnesium salicylate, choline salicylate, clidanac, diclofenac, diflunisal, diflurisal, etodolac, fenoprofen, fenoprofen calcium, fentiazac, flosulide, flubufen, flufenamic acid, flufenisal, flurbiprofen, fluprofen, ibuprofen, indoprofen, indomethacin, isoxicam, ketoprofen, ketorolac tromethamine, lornoxicam, magnesium salicylate, meclofenamic acid, meclofenamate sodium, mefenamic acid, meloxicam, muroprofen, nabumetone, naproxen, nepafenac, niflumic acid, nimesulide, oxaprozin, oxpinac, piroprofen, piroxicam, pramoprofen, remifenzone, salsalate, salicylsalicylic acid, sodium salicylate, sudoxicam, sulindac, suprofen, tiaprofenic acid, tiopinac, tolfenamic acid, tolmetin, trioxaprofen, zidometacin, and zomepirac.
58. The method according to claim 55, the compound according to claim 55, the one or more known pharmaceutical agents according to claim 55, the pharmaceutical product according to claim 55, or the use according to claim 55, wherein the opioid drug is chosen from: alfentanil, allylprodine, alphaprodine, anileridine, apomorphine, benzylmorphine, bezitramide, buprenorphine, butorphanol, clonitazene, codeine, desomorphine, dextromoramide, dextropropoxyphene, dezocine, diampromide, diamorphone, dihydrocodeine, dihydrocodeinone enol acetate, dihydromorphine, dilaudid, dimenoxadol, dimepheptanol, dimethylthiambutene, dioxaphetyl butyrate, dipipanone, eptazocine, ethoheptazine, ethylmethylthiambutene, ethylmorphine, etonitazene, fentanyl, heroin, hydrocodeine, hydrocodone, hydromorphone, hydroxypethidine, isomethadone, ketobemidone, levallorphan, levorphanol, levophenacylmorphan, lofentanil, meperidine, meptazinol, metazocine, methadone, metopon, 6-monoacetylmorphine, morphine, morphine-6-glucuronide, myrophine, nalbuphine, narceine, nicomorphine, norlevorphanol, normethadone, nalorphine, normorphine, norpipanone, noscapine, opium, oxycodone, oxymorphone, papavereturn, papverine, pentazocine, pethidine, phenadoxone, phenomorphan, phenazocine, phenoperidine, piminodine, piritramide, proheptazine, promedol, properidine, propiram, propoxyphene, sufentanil, tilidine, and tramadol. The method according to claim 56, the compound according to claim 56, the one or more known pharmaceutical agents according to claim 56, the pharmaceutical product according to claim 56, or the use according to claim 56, wherein the at least one analgesic agent comprises an NSAID and an opiod drug.
The method according to claim 59, the compound according to claim 59, the one or more known pharmaceutical agents according to claim 59, the pharmaceutical product according to claim 59, or the use according to claim 59, wherein the at least one analgesic agent is chosen from: vicodin, percocet, norco, lorcet, darvocet, and percodan.
The method according to claim 55, the compound according to claim 55, the one or more known pharmaceutical agents according to claim 55, the pharmaceutical product according to claim 55, or the use according to claim 55, wherein the at least one analgesic agent is at least one co-analgesic medication chosen from: antidepressants, anti-anxiety medications, migraine medications, and gabapentin.
The method according to claim 61, the compound according to claim 61, the one or more known pharmaceutical agents according to claim 61, the pharmaceutical product according to claim 61, or the use according to claim 61, wherein the migraine medication is chosen from: alpiropride, dihydroergotamine, dolasetron, ergocornine, ergocorninine, ergocryptine, ergot, ergotamine, flumedroxone acetate, fonazine, lisuride, lomerizine, methysergide oxetorone, and pizotyline.
The method according to claim 61, the compound according to claim 61, the one or more known pharmaceutical agents according to claim 61, the pharmaceutical product according to claim 61, or the use according to claim 61, wherein the antidepressant is chosen from: escitalopram, binedaline, caroxazone, citalopram, (S)-citalopram, dimethazan, fencamine, indalpine, indeloxazine hydrocholoride, nefopam, nomifensine, oxitriptan, oxypertine, paroxetine, sertraline, thiazesim, trazodone, benmoxine, iproclozide, iproniazid, isocarboxazid, nialamide, octamoxin, phenelzine, cotinine, rolicyprine, rolipram, maprotiline, metralindole, mianserin, mirtazepine, adinazolam, amitriptyline, amitriptylinoxide, amoxapine, butriptyline, clomipramine, demexiptiline, desipramine, dibenzepin, dimetacrine, dothiepin, doxepin, fluacizine, imipramine, imipramine N-oxide, iprindole, lofepramine, melitracen, metapramine, nortriptyline, noxiptilin, opipramol, pizotyline, propizepine, protriptyline, quinupramine, tianeptine, trimipramine, adrafinil, benactyzine, bupropion, butacetin, dioxadrol, duloxetine, etoperidone, febarbamate, femoxetine, fenpentadiol, fluoxetine, fluvoxamine, hematoporphyrin, hypericin, levophacetoperane, medifoxamine, milnacipran, minaprine, moclobemide, nefazodone, oxaflozane, piberaline, prolintane,
pyrisuccideanol, ritanserin, roxindole, rubidium chloride, sulpiride, tandospirone, thozalinone, tofenacin, toloxatone, tranylcypromine, L-tryptophan, venlafaxine, viloxazine, and zimeldine.
The method according to claim 61, the compound according to claim 61, the one or more known pharmaceutical agents according to claim 61, the pharmaceutical product according to claim 61, or the use according to claim 61, wherein the anti-anxiety medication is chosen from: alprazolam, chlordiazepoxide, clonazepam, clorazepate, diazepam, halazepam, lorazepam, oxazepam, and prazepam, buspirone, and barbituates.
The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the osteoarthritis agent is chosen from: localized injections, topical patches, creams and gels, glucosamine, chondroitin sulfate, and vitamins.
The composition according to claim 66, the method according to claim 66, the compound according to claim 66, the one or more known pharmaceutical agents according to claim 66, the pharmaceutical product according to claim 66, or the use according to claim 66, wherein the localized injection is chosen from: a corticosteroid injection and an injection of hyaluronan.
The composition according to claim 66, the method according to claim 66, the compound according to claim 66, the one or more known pharmaceutical agents according to claim 66, the pharmaceutical product according to claim 66, or the use according to claim 66, wherein the topical patches, creams and gels are chosen from: civamide patch, diclofenac patch, topical strontium chloride hexahydrate, diclofenac sodium topical solution, capsaicin cream and methylsalicylate cream.
The composition according to claim 1, 2, 4, or 6, the method according to any one of claims 7 to 12, the compound according to any one of claims 13 to 15, the one or more known pharmaceutical agents according to any one of claims 16 to 18, the
pharmaceutical product according to any one of claims 19 to 26, or the use according to claim 27, wherein the osteoarthritis agent is chosen from: valdecoxib, meloxicam, etodolac, naproxen sodium, diacerhein, tetracycline, antimalarial therapies, JNJ- 42160443 (a monoclonal antibody against nerve growth factor (NGF)), JNS013 (combination of tramadol and acetaminophen), ABT-102 (N-[5-teri-butyl-2,3-dihydro- lH-inden-l(R)-yl]-N-(lH-indazol-4-yl)urea), BEMA buprenorphine (CA Index Name: 6,14-ethenomorphinan-7-methanol, 17-(cyclopropylmethyl)-a-(l , l-dimethylethyl)-4,5- epoxy-18,19-dihydro-3-hydroxy-6-methoxy-a-methyl-, (aS,5a,7a)- hydrochloride), ΡΗ- 797804 (CA Index Name: benzamide, 3-[3-bromo-4-[(2,4-difluorophenyl)methoxy]-6- methyl-2-oxo-l(2H)-pyridinyl]-N,4-dimethyl-), ELI-216 (combination of oxycodone and naltrexone), NT-11624 (CA Index Name: lH-pyrrolo[l ,2-a]imidazole-2,5(3H,6H)- dione, dihydro-), diractin, XEN 402 (a voltage-gated Na(V) 1.7 sodium channel blocker), CRB 0022 (a monoclonal antibody against nerve growth factor (NGF)), apitoxin, and etoricoxib
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