EP2398323A1 - Novel hetero pyrrole analogs acting on cannapinoid receptors - Google Patents
Novel hetero pyrrole analogs acting on cannapinoid receptorsInfo
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- EP2398323A1 EP2398323A1 EP09841603A EP09841603A EP2398323A1 EP 2398323 A1 EP2398323 A1 EP 2398323A1 EP 09841603 A EP09841603 A EP 09841603A EP 09841603 A EP09841603 A EP 09841603A EP 2398323 A1 EP2398323 A1 EP 2398323A1
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- C07D231/14—Heterocyclic compounds containing 1,2-diazole or hydrogenated 1,2-diazole rings not condensed with other rings having two or three double bonds between ring members or between ring members and non-ring members with hetero atoms or with carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals, directly attached to ring carbon atoms
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Definitions
- the present invention relates generally to biologically active hetero pyrrole analogs such as imidazoles, thiazoles, oxazoles and pyrazoles capable of interacting with the CB 1 and/or the CB2 cannabinoid receptors, including neutral antagonists, inverse-agonists and partial agonists.
- Another aspect of the invention is concerned with such compounds having a range of useful applications including use of certain neutral antagonists, inverse-agonists and partial agonists to treat medical conditions with no or substantially reduced incidence of side-effects.
- aspects of the invention are concerned with new and improved hetero pyrrole analogs acting as neutral antagonists, inverse-agonists and partial agonists selective for the CB 1 and/or the CB2 receptors and use of these new and improved hetero pyrrole analogs as peripherally acting or centrally acting compounds. Also, aspects of the invention are concerned with all isotopic variations of these compounds, combination therapy and pharmaceutical preparations and compositions employing the inventive analogs and methods of administering therapeutically effective amounts of the inventive analogs to provide a physiological effect.
- Marijuana (Cannabis sativa) and derivatives have been used for medicinal and recreational purposes.
- the major active constituent extracted from Cannabis sativa is the classical cannabinoid ⁇ 9 -Tetrahydrocannabinol ( ⁇ 9 -THC).
- ⁇ 9 -THC cannabinoid ⁇ 9 -Tetrahydrocannabinol
- the effects of such cannabinoids are due to an interaction with specific high-affinity receptors.
- CB1 a central receptor found in the mammalian brain and a number of other sites in peripheral tissues
- CB2 a peripheral receptor found principally in cells related to the immune system.
- the CB1 receptor is believed to mediate the psychoactive properties associated with classical cannabinoids.
- cannabinoids such as ⁇ 9 - THC also affect cellular membranes, thereby producing undesirable side effects such as drowsiness, impairment of monoamine oxidase function and impairment of nonreceptor mediated brain function.
- the addictive and psychotropic properties of some cannabinoids also limit their therapeutic value.
- Figures 1A-1B are graphs showing cAMP accumulation with hCB1-HEK292 cells (Compound 2 and 15).
- Figures 2A-2C are graphs showing food intake, weigh change and body weight following administration of Compound 15 to rats.
- one embodiment of the invention is concerned with new and improved cannabimimetic (cannabinoid like) imidazole analogs.
- inventive cannabimimetic imidazole ligands of this embodiment can be represented by general formula I and their enantiomers, diastereomers, geometric isomers, racemates, tautomers, rotamers, atropisomers, metabolites, in vivo hydrolysable esters, N- oxides, salts, solvates, hydrates, polymorphic forms( crystalline or amorphous) or pro-drugs:
- I A comprises a direct bond, O, or -(CH 2 ) ⁇ N(R5)
- B comprises a direct bond, O, N(R5), - (CH 2 ) ⁇ - or -NH-SO 2 -
- R5 is hydrogen, OH, alkyl or substituted alkyl and I is an integer from O to 3.
- R1 and R2 each independently comprise -(CH 2 ) n -Z.
- n is an integer from O to about 7.
- Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CHs) 2 COOX 8 , C(CHs) 2 COOX 8 , Si(alkyl) 3 , O-aroyl, O(CH 2 )jOX 3 , O(CH 2 )jNXiX 2 , alkyl-CN, NH-acyl, NH-aroyl, CHO, C(halogen) 3) COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO2-alkyl, alkoxy, alkyl, alcohol, alkylmer
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, aryl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OXe) 2 .
- PH(O)(OX 8 ) S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 8 comprises H, alkyl, carbocyclic ring, heterocyclic ring, aromatic ring, heteroaromatic ring, or wherein Xg and Xio each independently comprise H or alkyl Wherein m is an integer from 0 to 7 j is an integer from 0 to about 6, or k is an integer from 0 to about 2
- R1 and R2 each independently comprise -(CHz) n -Z.
- n is an integer from 0 to about 7.
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or
- R1 and R2 each independently comprise -(CH 2 )n-Z.
- n is an integer from 0 to about 7.
- Z comprises a 5 member unsaturated ring having 0 to 4 independently selected heteroatoms as ring members, a substituted 5 member unsaturated ring having 0 to 4 independently selected heteroatoms as ring members, a 6 member aromatic ring having 0 to 5 independently selected heteroatoms as ring members or a substituted 6 member aromatic ring having 0 to 5 independently selected heteroatoms; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -(CH 2 )n-Z. n is an integer from 0 to about 7.
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -(CHa) n -Z.
- n is an integer from 0 to about 7.
- Z comprises
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO- alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 ) j OX 3 , O(CH 2 ) j NXiX 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NXiX 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO2-alkyl, alk
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, aryl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl- NX 1 X 2 ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OXs) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X 10 each independently comprise H or alkyl
- n is an integer from O to 7 j is an integer from O to about 6, or
- W comprises H or alkyl k is an integer from O to about 2
- R1 and R2 each independently -(CH 2 ) n -Z.
- n is an integer from O to about 7.
- Z comprises a carbocyclic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, a carbocyclic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, a heterocyclic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, an heterocyclic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms
- R1 and R2 each independently comprise -(CH 2 ) n -Z; n comprises an integer from 0 to about 7;
- Z comprises an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 5 ring atoms and 0 to 4 independently selected heteroatoms as ring members, an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 3 independently selected heteroatoms as ring members or an unsaturated ring having 6 ring atoms and 0 to 4 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members.
- R1 and R2 each independently comprise -(CH 2 )m -Qi-(CH 2 )n-Z;
- m is an integer from 1 to about 7;
- n is an integer from O to about 7;
- Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 ,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members;
- X 3 comprises H, alkyl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ;
- X A , X 5 , and Xe each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6, and k is an integer from O to about 2.
- R1 and R2 each independently comprise -Q 2 -(CH 2 ) n -Z;
- Q 2 is optionally present and if present comprises -CH 2 -NH, -CH 2 -O, -CH 2 -S, -CH 2 -SO 2 or -CH 2 -OSO 2 ; n is an integer from O to about 7; Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CHs) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , O-aroyl, O(CH 2 )jOX 3 , O(CH 2 )jNXiX 2 , alkyl-CN, NH-acyl, NH-aroyl, CHO,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 J 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R1 and R2 each independently comprise -(CH 2 J 1n - Q 1 -(CH 2 J n -Z;
- R1 and R2 each independently comprise -(CH 2 ) m - Qi -(CHz) n -Z;
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members; a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring or any above group substituted on at least one available ring atom by an alkyl group or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available
- R1 and R2 each independently comprise -(CHz)m - Qi -(CHz) n -Z;
- Z comprises a 5 member unsaturated ring having O to 4 independently selected heteroatoms as. ring members, a substituted 5 member unsaturated ring having O to 4 independently selected heteroatoms as ring members, a 6 member aromatic ring having O to 5 independently selected heteroatoms as ring members or a substituted 6 member aromatic ring having O to 5 independently selected heteroatoms; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -(CH 2 )m - Qi -(CHa) n -Z;
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -(CHz) n ,- Qi -(CH 2 J n -Z;
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NXiX 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO- alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 )jOX 3 , 0(CH 2 )JNX 1 X 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NXiX 2 , CONXiX 2 , NHC(O)O-alkyl, NHSO2-alkyl, alkoxy,
- Xi and X 2 each independently comprise H or alkyl, or
- Xi and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- Xi and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NXiX 2 ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NXiX 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H 1 COX 8 , wherein
- X 9 and Xio each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; k is an integer from O to about 2; and
- W comprises H or alkyl
- R1 and R2 each independently comprise. -(CH 2 ) m - Qi -(CH 2 ) n -Z;
- Z comprises an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 5 ring atoms and 0 to 4 independently selected heteroatoms as ring members, an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members or an unsaturated ring having 6 ring atoms and 0 to 4 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members.
- R1 and R2 each independently comprise
- R1 and R2 each independently comprise -T-(CHz) n -Z; n comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 ,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X ⁇ each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(0) k 0X 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from 0 to 7; j is an integer from 0 to about 6; and k is an integer from 0 to about 2
- R1 and R2 each independently comprise -T-(CHz) n -Z; n comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring; and
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or
- R1 and R2 each independently comprise -T-(CHz) n -Z; n comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring; and
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an a Iky I group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(Ch ⁇ ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -T-(CH 2 J n -Z; n comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 ) j OX 3 , 0(CH 2 )JNX 1 X 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO2-alkyl,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NXiX 2 ,
- X 4 , X 5 , and Xe each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-Xr wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- W comprises H or alkyl.
- R1 and R2 each independently comprise -T-(CHz) n -Z; n comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 5 ring atoms and 0 to 4 independently selected heteroatoms as ring members, an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members or an unsaturated ring having 6 ring atoms and 0 to 3 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members.
- R1 and R2 each independently comprise -T-(CH 2 ) n - Qi -(CHz) n -Z; each n independently comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 ,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from 0 to about 2
- R1 and R2 each independently comprise -T-(CHk) n - Qi -(CHz) n -Z; each n independently comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -T-(CH 2 ) n - each n independently comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 and R2 each independently comprise -T-(CH 2 ) n - Qi -(CH 2 ) n -Z; each n independently comprises an integer from 0 to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO- alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 ) j OX 3 , 0(CH 2 ) J NX 1 X 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO2-alkyl,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or Xi and X 2 together comprise part of an imide ring having about 5 to about 6 members,
- X3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NXiX 2 ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NXiX 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; k is an integer from O to about 2; and
- W comprises H or alkyl.
- R1 and R2 each independently comprise -T-(CH 2 ) n - Q 1 -(CH 2 )n-Z; each n independently comprises an integer from O to about 7;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring;
- Z comprises an unsaturated ring having 5 ring atoms and O to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 5 ring atoms and O to 2 independently selected heteroatoms as ring members, an unsaturated ring having 5 ring atoms and O to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and O to 4 independently selected heteroatoms as ring members or an unsaturated ring having 6 ring atoms and 0 to 3 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members.
- R1 and R2 each independently comprise -T-(CHa) n - Qi -(CH 2 J n -Z;
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring; each n independently comprises an integer from 0 to about 7;
- Z comprises:
- E comprises a C1 to about C4, linear or branched alkyl group, a phenyl group, a substituted phenyl group, a benzyl group or a substituted benzyl group.
- R1 and R2 each independently comprise -T-(CH 2 )n- Qi -(CH 2 )n-Z;
- Ai and A 2 each independently comprise a C1 to about C4 alkyl group, a phenyl group or a substituted phenyl group.
- R3 comprises a carbocyclic ring having about 4 to about 7 members, a heterocyclic ring having about 4 to about 7 members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- R3 comprises G ( — L
- G comprises CH, C(CH 3 ), C(CN) or N;
- M 1 is H, alkyl, C(O)M 2 , wherein
- M 2 is H, alkyl
- M 4 and M 5 are independently H, OH or alkyl
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NXiX 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 )jOX 3 , 0(CH 2 )JNX 1 X 2 , NH-acyl, NH-aroyl, CHO,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X-io each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R3 comprises — / j
- G, L and J each independently comprise CH or N.
- R3 comprises
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO- alkyl, SC(CH 3 ) 2 COOX 8) OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O- aroyl, O(CH 2 ) j OX 3 , 0(CH 2 )JNX 1 X 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO2-alkyl,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X ⁇ each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OXe) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 81 SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from 0 to 7; j is an integer from 0 to about 6; k is an integer from 0 to about 2; and W comprises H or alkyl.
- R3 comprises a carbocyclic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, a carbocyclic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, a heterocyclic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, a heterocyclic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heterocyclic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, an aromatic ring having 6 ring atoms fused to a heteroaromatic ring having from 5 to 7 ring atoms, a heteroaromatic ring having
- R4 comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , phenyl, NXiX 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, 0(CH 2 )PX 3 , O(CH 2 ) j NXiX 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO 2 -
- Xi and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ , X-I, Xs, and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X-io each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R4 comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- R4 comprises
- R4 comprises -(CH 2 ) d -Z; d is an integer from 1 to about 6; comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , phenyl, NXiX 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CHa) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 ) j OX 3 , 0(CH 2 )JNX 1 X 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NXiX 2 , NH-acyl,
- Xi and X 2 each independently comprise H or alkyl, or
- Xi and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- Xi and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NXiX 2 ,
- X 4 , X5, and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X1 0 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R4 comprises -CH 2 OH or -CH 2 Oalkyl.
- R4 comprises -(CH 2 ) d -Z; d is an integer from 1 to about 6; and
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) d - group and the Z group can be any available ring carbon atom or
- R4 comprises -(CH 2 ) d -Z; d is an integer from 1 to about 6; and
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) d - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R4 comprises -(CH 2 ) m - Qi -(CH 2 ) n -Z;
- m is an integer from 1 to about 7;
- n is an integer from O to about 7;
- Z comprises H, halogen, CF 3 , CF 2 H 1 N 3 , NCS, CN, NO 2 , phenyl, NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CHs) 2 COOX 8 , C(CHa) 2 COOX 8 , Si(alkyl) 3) alkyl-CN, O-aroyl, O(CH 2 ),OX 3 , 0(CH 2 ) J
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and X 6 each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R4 comprises -(CH 2 ) m - Q 1 -(CH 2 J n -Z;
- m is an integer from 1 to about 7;
- n is an integer from O to about 7; and
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members; a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or
- R4 comprises -(CH 2 )m - Qi -(CH 2 ) n -Z.
- m is an integer from 1 to about 7.
- n is an integer from O to about 7.
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an alkyl; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R4 comprises -(CH 2 ) m - Qi -(CH 2 ) n -Z.
- m is an integer from 1 to about 7.
- n is an integer from O to about 7.
- Z comprises wherein X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NXiX 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CH 3 ) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 ) j OX 3 , O(CH 2 ) j NXiX 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NX 1 X 2 , CONX 1 X 2 , NHC(O)O-alkyl, NHSO 2 -al
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX ⁇ ,
- X 4 , X 5 , and Xe each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2 , S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; k is an integer from O to about 2;
- W comprises H or alkyl.
- R1 and R2 is phenyl [optionally substituted with one more halogen atoms, (CrC 6 ) alkyl, (CrC 6 ) alkoxy, trifluoromethyl, cyano, nitro, (CrC 6 ) alkyl sulfonyl, (Cr C 6 ) alkyl sulfonyl amino, (CrC 6 ) alkyl carbonyl-amino, (CrC 6 ) alkyl amino-carbonyl- amino or phenyl], (C 2 -C 6 ) alkyl, cyclohexyl [optionally substituted with (CrC 6 ) alkyl, (CrC 6 ) alkoxy, trifluoromethyl, cyano or one or more fluorine atoms], 1-napthyl or 2- napthyl [optionally
- R1 or R2 is phenyl, thienyl, 2-pyridinyl, 3-pyridinyl, 4-pyridinyl, pyrimidinyl, pyrazinyl, pyridazinyl, triazinyl or any above group substituted with 1 , 2, 3 or 4 substituents which can be the same or different, selected from Ci -3 alkyl, Ci -3 alkoxy, hydroxy, halogen, trifluoromethyl, trifluoromethylthio, trifluoromethoxy, nitro, amino, mono- or dialkyl (Ci -2 )-amino, mono- or dialkyl (Ci ⁇ -amido, (Ci -3 )-alkoxycarbonyl, carboxyl, cyano, carbomyl, acetyl and naphthyl; and R3 is any above described variation; then R4 can not be H,
- Another embodiment of the invention comprises cannabimimetic thiazole and oxazole ligands represented by formula Il and their enantiomers, diastereomers, geometric isomers, racemates, tautomers, rotamers, atropisomers, metabolites, in vivo hydrolysable esters, N-oxides, salts, solvates, hydrates, polymorphic forms( crystalline or amorphous) or pro-drugs:
- W comprises S or O.
- R2 cannot be a phenyl group with one or more substituents selected from branched or unbranched C 1-3 -alkyl, branched or unbranched C 1-3 -alkoxy, hydroxy, halogen, CF 3 , trifluoromethylthio, trifluoromethoxy, nitro, amino, mono-or dialkyl(Ci -2 )-amino, mono- or dialkyl(Ci -2 )-amido, branched or unbranched (Ci -3 )-alkoxycarbonyl, trifluoromethylsulfonyl, sulfamoyl, branched or unbranched (Ci -3 )-sulfonyl, carboxyl, cyano, carbamoyl, branched or unbranched dialkyl(C-i )
- Another embodiment of the invention comprises cannabimimetic triazole ligands represented by formula III and their enantiomers, diastereomers, geometric isomers, racemates, tautomers, rotamers, atropisomers, metabolites, in vivo hydrolysable esters, N-oxides, salts, solvates, hydrates, polymorphic forms( crystalline or amorphous) or pro-drugs:
- R1 and R2 when A is a direct bond; B is NR5; R3 is any above described variation; then either or both of R1 and R2 cannot be a phenyl, naphthyl, thienyl, pyridyl, pyrimidyl, pyrazinyl, pyridazinyl, or triazinyl group, or any above group substituted with 1-4 substituents, which can be same or different, selected from branched or unbranched (C 1-3 )alkyl or alkoxy, hydroxy, halogen, trifluoromethyl, trifluoromethylthio, trifluoromethoxy, nitro, amino, mono- or dialkyl (Ci- 2 )-amino, mono- or dialkyl (Ci -2 )-amido, (C 1-3 )-alkoxycarbonyl, trifluoromethylsulfonyl, sulfomyl, (Ci -3 )-alkyl
- Another embodiment of the invention comprises cannabimimetic pyrazole ligands represented by formula IV and their enantiomers, diastereomers, geometric isomers, racemates, tautomers, rotamers, atropisomers, metabolites, in vivo hydrolysable esters, N-oxides, salts, solvates, hydrates, polymorphic forms( crystalline or amorphous) or pro-drugs: IV
- R1 comprises -T-(CH 2 ) n -Q-(CH 2 ) n -Z. each n independently comprises an integer from 0 to about 7.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- Z comprises H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 ,
- X 1 and X 2 each independently comprise H or alkyl, or
- X 1 and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members and optionally one additional heteroatom selected from O, N or S, or
- X 1 and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , NO, (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NXiX 2 ,
- X 4 , X5, and Xe each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NX 1 X 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 7 comprises H, alkyl, NO 2 , NO, P(O)(OX 8 ) 2 , PH(O)(OX 8 ), S(O) k N(alkyl) 2> S(O) k X 8 , S(O) k OX 8 , COOX 8 , CONX 8 , SO 3 H, COX 8 , wherein
- Xg and X 10 each independently comprise H or alkyl; m is an integer from O to 7; j is an integer from O to about 6; and k is an integer from O to about 2.
- R1 comprises -T-(CH 2 ) n -Q-(CH 2 ) n -Z. each n independently comprises an integer from O to about 7.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- Z comprises a carbocyclic ring having about 4 to about 7 ring members, a heterocyclic ring having about 4 to about 7 ring members, an aromatic ring having about 5 to about 7 ring members, a heteroaromatic ring having about 5 to about 7 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring, a heteropolycyclic ring; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or
- R1 comprises -T-(CH 2 ) n -Q-(CH 2 ) n -Z. each n independently comprises an integer from 0 to about 7.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- Z comprises 1-, 2- or 3-pyrrolidinyl, 1-, 2-, 3- or 4-piperidinyl, 2-, 3- or 4- morpholinyl, 2-, 3- or 4-thiomorpholinyl, 1-, 2- or 3-azetidinyl, 1- or 2-piperazinyl, 2- or 3-tetrahydrofuranyl; or any above group substituted on at least one available ring atom by an alkyl group; or any above group substituted on at least one available ring nitrogen atom by a benzyl group, a substituted benzyl group, an alkoxybenzyl group, a substituted alkoxybenzyl group, a benzhydryl group or a substituted benzhydryl group; and wherein the connecting point between the -(CH 2 ) n - group and the Z group can be any available ring carbon atom or any available ring nitrogen atom.
- R1 comprises -T-(CH 2 ) n -Q-(CH 2 ) n -Z. each n independently comprises an integer from 0 to about 7.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- X and Y each independently comprise, H, halogen, CF 3 , CF 2 H, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , SX 3 , OAc, OSO 2 X 3 , O-acyl, S-acyl, SO 2 -alkyl, SO-alkyl, SC(CH 3 ) 2 COOX 8 , OC(CHa) 2 COOX 8 , C(CH 3 ) 2 COOX 8 , Si(alkyl) 3 , alkyl-CN, O-aroyl, O(CH 2 )jOX 3 , O(CH 2 )jNXiX 2 , NH-acyl, NH-aroyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, SO 2 NXiX 2 , CONXiX 2 , NHC(O)O-alkyl, NHSO 2 -alkyl alkoxy, alk
- Xi and X 2 each independently comprise H or alkyl, or
- Xi and X 2 together comprise part of a heterocyclic ring having about 4 to about 7 ring members. and optionally one additional heteroatom selected from O, N or S 1 or
- Xi and X 2 together comprise part of an imide ring having about 5 to about 6 members
- X 3 comprises H, alkyl, NO 2 , (CH 2 ) m CN, hydroxyloweralkyl, or alkyl-NX-
- X4, X 5 , and X ⁇ each independently comprise H, alkyl, carbocyclic ring, hydroxyloweralkyl, alkyl-OH, halogen, CN, SNO, S(SO 2 )alkyl, NXiX 2 , COOX 3 , CONX 3 , OX 7 , or O-alkyl-X 7 , wherein
- X 9 and X 10 each independently comprise H or alkyl; m is an integer from 0 to 7; j is an integer from 0 to about 6; k is an integer from 0 to about 2; and
- W comprises H or alkyl.
- R1 comprises -T-(CH 2 ) n -Q-(CH 2 ) n -Z. each n independently comprises an integer from 0 to about 7.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- Z comprises an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 5 ring atoms and 0 to 4 independently selected heteroatoms as ring members, an unsaturated ring having 5 ring atoms and 0 to 2 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members or an unsaturated ring having 6 ring atoms and 0 to 3 independently selected heteroatoms as ring members fused to an unsaturated ring having 6 or 7 ring atoms and 0 to 4 independently selected heteroatoms as ring members
- R1 comprises -T-(CH 2 ) n - Q-(CH 2 ) n -Z.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- each n independently comprises an integer from 0 to about 7.
- Z comprises or — N N-E
- E comprises a C1 to about C4, linear or branched alkyl group, a phenyl group, a substituted phenyl group, a benzyl group or a substituted benzyl group.
- R1 comprises -T-(CH 2 ) n - Q-(CH 2 ) n -Z.
- T comprises a carbocyclic ring having 3 to about 8 ring members, an unsaturated ring having 3 to about 8 carbon atoms as ring members, an aromatic ring having 5 to about 8 carbon atoms as ring members, a heterocyclic ring having 3 to about 8 ring members, a heteroaromatic ring having 5 to about 8 ring members, a bicyclic ring, a heterobicyclic ring, a tricyclic ring, a heterotricyclic ring, a polycyclic ring or a heteropolycyclic ring.
- each n independently comprises an integer from 0 to about 7.
- Ai and A 2 each independently comprise a C1 to about C4 alkyl group, a phenyl group or a substituted phenyl group.
- compositions of the invention may be alternately formulated to comprise, consist of, or consist essentially of, any appropriate components herein disclosed.
- compositions of the invention may additionally, or alternatively, be formulated so as to be devoid, or substantially free, of any components, materials, ingredients, adjuvants or species used in the prior art compositions or that are otherwise not necessary to the achievement of the function and/or objectives of the present invention.
- acyl refers to the general formula -C(O)alkyl.
- acyloxy refers to the general formula -O-acyl.
- alcohol refers to the general formula alkyl-OH and includes primary, secondary and tertiary variations.
- alkyl refers to a linear, branched or cyclic alkyl group having from 1 to about 10 carbon atoms, and advantageously 1 to about 7 carbon atoms including, for example, methyl, ethyl, propyl, butyl, hexyl, octyl, isopropyl, isobutyl, tert-butyl, cyclopropyl, cyclohexyl, cyclooctyl, vinyl and allyl.
- the alkyl group can be saturated or unsaturated.
- the alkyl group can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- a cyclic alkyl group includes monocyclic, bicyclic, tricyclic, tetracyclic and polycyclic rings, for example norbornyl, adamantyl and related terpenes.
- alkoxy refers to the general formula -O-alkyl.
- alkylmercapto refers to the general formula -S-alkyl.
- alkylamino refers to the general formula -(NH)-alkyl.
- di-alkylamino refers to the general formula -N-(alkyl) 2 . Unless otherwise specifically limited di-alkylamino includes cyclic amine compounds such as piperidine and morpholine.
- an aromatic ring is an unsaturated ring structure having about 5 to about 7 ring members and including only carbon as ring atoms.
- the aromatic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- aryl refers to an aromatic ring system that includes only carbon as ring atoms, for example phenyl, biphenyl or naphthyl.
- the aryl group can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- a bicyclic ring structure comprises 2 fused or bridged rings that include only carbon as ring atoms.
- the bicyclic ring structure can be saturated or unsaturated.
- the bicyclic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- the individual rings may or may not be of the same type. Examples of bicyclic ring structures include naphthalene and bicyclooctane.
- a carbocyclic ring is a non-aromatic ring structure, saturated or unsaturated, having about 3 to about 8 ring members that includes only carbon as ring atoms, for example, cyclohexadiene or cyclohexane.
- the carbocyclic ring can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- halogen refers to an atom selected from fluorine, chlorine, bromine and iodine.
- a heteroaromatic ring is an unsaturated ring structure having about 5 to about 8 ring members independently selected from carbon atoms and one or more heteroatoms, including oxygen, nitrogen and/or sulfur, for example, pyridine, furan, quinoline, and their derivatives.
- the heteroaromatic ring can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- a heterobicyclic ring structure comprises
- heterobicyclic ring structure can be saturated or unsaturated.
- the heterobicyclic ring can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- the individual rings may or may not be of the same type. Examples of heterobicyclic ring structures include isobenzofuran and indole.
- a heterocyclic ring is a saturated or unsaturated ring structure having about 3 to about 8 ring members independently selected from carbon atoms and one or more heteroatoms, including oxygen, nitrogen and/or sulfur; for example, piperidine, morpholine, piperazine, pyrrolidine, thiomorpholine, 1 ,1-dioxothiomorpholine and their derivatives.
- the heterocyclic ring can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- a heterotricyclic ring structure comprises
- heterotricyclic ring structure may be saturated or unsaturated.
- the heterotricyclic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- the individual rings may or may not be of the same type.
- heterotricyclic ring structures include carbazole, phenanthroline, phenazine, 2,4,10-trioxaadamantane and tetradecahydro-phenanthroline.
- a heteropolycyclic ring structure comprises more than 3 rings that may be fused, bridged or both fused and bridged and that have ring members independently selected from carbon and one or more heteroatoms, including oxygen, nitrogen and/or sulfur.
- the heteropolycyclic ring structure can be saturated or unsaturated.
- the heteropolycyclic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- the individual rings may or may not be of the same type.
- Examples of heteropolycyclic ring structures include azaadamantine, tropane, homotropane and 5-norbornene-2,3-dicarboximide.
- phenacyl refers to the general formula -phenyl-acyl.
- a polycyclic ring structure comprises more than 3 rings that may be fused, bridged or both fused and bridged, and that includes carbon as ring atoms.
- the polycyclic ring structure can be saturated or unsaturated.
- the polycyclic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position.
- the individual rings may or may not be of the same type.
- Examples of polycyclic ring structures include adamantine, bicyclooctane, norbornane and bicyclononanes.
- a spirocycle refers to a ring system wherein a single atom is the only common member of two rings.
- a spirocycle can comprise a saturated carbocyclic ring comprising about 3 to about 8 ring members, a heterocyclic ring comprising about 3 to about 8 ring atoms wherein up to about 3 ring atoms may be N, S, or O or a combination thereof.
- a tricyclic ring structure comprises 3 rings that may be fused, bridged or both fused and bridged, and that includes carbon as ring atoms.
- the tricyclic ring structure can be saturated or unsaturated.
- the tricyclic ring structure can be unsubstituted, singly substituted or, if possible, multiply substituted, with substituent groups in any possible position, and may be substituted or unsubstituted.
- the individual rings may or may not be of the same type. Examples of tricyclic ring structures include fluorene and anthracene.
- substituted means substituted by a below-described substituent group in any possible position.
- Substituent groups for the above moieties useful in the invention are those groups that do not significantly diminish the biological activity of the inventive compound.
- Substituent groups that do not significantly diminish the biological activity of the inventive compound include, for example, H, halogen, N 3 , NCS, CN, NO 2 , NX 1 X 2 , OX 3 , C(X 3 J 3 , OAc, O-acyl, O-aroyl, NH-acyl, NH-aroyl, NHCOalkyl, CHO, C(halogen) 3 , COOX 3 , SO 3 H, PO 3 H 2 , SO 2 NX 1 X 2 , CONX 1 X 2 , alkyl, alcohol, alkoxy, alkylmercapto, alkylamino, di- alkylamino, sulfonamide, thioalkoxy or methylene dioxy when the
- inventive compounds show a high affinity for at least one of the cannabinoid receptors.
- another aspect of the invention is use of at least one of the inventive compounds to interact with a cannabinoid receptor.
- novel heteropyrrole derivatives show selectivity for the CB1 cannabinoid receptor.
- inventive CB1 selective analogs are able to interact with the CB1 cannabinoid receptors present in the CNS as well as the periphery without affecting the CB2 receptors to the same degree. Therefore, still another aspect of the invention is use of at least one of the inventive compounds to preferentially interact with a CB1 cannabinoid receptors present either in the CNS or the periphery.
- inventive heteropyrrole analogs described herein, and physiologically acceptable salts thereof have pharmacological properties when administered in therapeutically effective amounts for providing a physiological response.
- another aspect of the invention is the administration of a therapeutically effective amount of at least one of the inventive compounds, or a physiologically acceptable salt thereof, to an individual or animal to provide a physiological response.
- a "therapeutically effective amount" of a compound is the quantity of a compound which, when administered to an individual or animal, results in a sufficiently high level of that compound in the individual or animal to cause a physiological response, for example a discernible increase or decrease in stimulation of cannabinoid receptors.
- inventive compounds described herein, and physiologically acceptable salts thereof have pharmacological properties when administered in therapeutically effective amounts individually or in combination for providing a physiological response useful to treat marijuana abuse, obesity, lifestyle choices such as a desire to lose weight, other metabolic disorders including improvement in lipid profiles and insulin related deficiencies, hepatic disease, cardiometabolic diseases, congestive obstructive pulmonary disorders, inflammatory bowel disease, smoking cessation, bone defects, arthritis, inflammation, benign prostatic hypertrophy, asthma, migraine, chronic-intestinal pseudo obstruction, constipation, schizophrenia, epilepsy, stress, memory disorders, migraine, vomiting, thymic disorders, dyskinesia, kinetic disorder, anxiety disorders, psychotic disorders, cognitive disorders, appetite disorders, mood disorders, delirious disorders, neuropathies, Parkinson's disease, Alzheimers disease, depression, psychosomatic- induced disease, diabetes, sexual dysfunctions, as well as for alcohol, opioid, nicotine and cocaine addiction, etc. Additionally, these analogs can be useful in cancer chemotherapy. Typically, a "therapeutically effective amount"
- an "individual” refers to a human.
- An “animal” refers to, for example nonhuman-primates such as monkeys and baboons, veterinary animals, such as rodents, dogs, cats, horses and the like, and farm animals, such as cows, pigs and the like
- the compound disclosed in the invention can be used in combination with other acceptable pharmaceutical substances.
- one embodiment provides for a method for reducing unwanted side-effects (one or more of nausea, dizziness, diarrhea, and anxiety) typically associated with administration of SR141716A (AccompliaTM/Rimonabant) or other CB1 antagonists to certain individuals.
- a particular method involves administering a therapeutically effective amount of at least one of the compounds of the disclosure so as to reduce the side-effects in that individual.
- the method can involve reducing the amount of SR141716A (AccompliaTM/Rimonabant) or other CB1 antagonists administered to the individual.
- the compounds of the invention can be used alone or in combination with other CB 1 receptor antagonists or anti-obesity agents known to the field.
- examples of such agents include SR141716A or AccompliaTM/rimonabant(Sanofi-Aventis), Xenical (Roche), Meridia (Abbott, Sibutramine), surinabant (Sanofi-Aventis), AVE1625(Sanofi-Aventis), CP-946,598 or otenabant (Pfizer), rosonabant(Esteve), taranabant (Merck), SLV-319 (Solvay Pharmaceuticals/BMS), V24343 (Vernalis), Qnexa(Vivus), Contrave(Orexigen), Empatic(Orexigen), lorcaserin(Arena), Phentermine.
- Compounds of the invention can also be used in combination with a a potassium channel opener, opiod antagonist, anticonvulsant agent, contraceptive agent, antipsychotic agent, anticonstipation agent, nicotine receptor agonist or partial agonist, CB2 agonist, melanin-concentrating hormone receptor antagonist, antipsychotic agents, peroxisome proliferator-activated receptors agonists, ghrelin antagonists, GLP-1 agonist, fatty acid amide hydrolase inhibitor, an intestinal-acting microsomal triglyceride transfer protein inhibitor, a dipeptidyl-peptidase IV inhibitor, a statin, a sterol absorption inhibitor ( ⁇ -lactam), Beta-3 adrenergic agonist, a biguanide, Sodium glucose transport (SGLT2) antagonist, cyclooxygenase-2 inhibitor, renin inhibitor, monoamine oxidase inhibitor, CETP inhibitor, ACAT inhibitor, DGAT-1 inhibitor, Mitochondrial Transfer Protein inhibitor, noradrenalin-se
- less than five compounds of the disclosure preferably one or two of same is used in combination with less than five of the known CB 1 antagonists, preferably one or two of same.
- the compound disclosed in the invention could in itself act as a drug with a combination effect.
- compounds disclosed in the invention could dually act as a CB1 antagonist as well as 11 ⁇ -hydroxy steroid dehydrogenase-1 inhibitor.
- the compound could act dually as a CB1 antagonist as well as a nitric oxide donor.
- physiologically acceptable salts salts typically useful for pharmaceutical applications including acid addition salts and basic salts.
- acid addition salts are hydrochloride salts, hydrobromide salts, methane sulfonate salts etc.
- basic salts are salts where the cation is selected from alkali metals, such as sodium and potassium, alkaline earth metals, such as calcium, and ammonium ions.
- alkali metals such as sodium and potassium
- alkaline earth metals such as calcium, and ammonium ions.
- Other examples of physiologically acceptable salts can be found in "Remington's Pharmaceutical Sciences” 17. Ed. Alfonso R. Gennaro (Ed.), Mark Publishing Company, Easton, Pa., U.S.A., 1985 and more recent editions, and in Encyclopedia of Pharmaceutical Technology.
- polymorphic forms show improved physiochemical properties and stability for formulation purposes.
- the compounds disclosed in the invention could exist in various solid forms.
- the solid forms can be crystalline and amorphous forms, but not limited to, solvates, hydrates, hydrolyzable esters and N-oxides of the compounds defined in the specification. These solid forms can be obtained by treating either the free base or their salts at a certain adjusted pH and certain temperature with an solvent or a combination of solvents.
- the solvents can be and not limited to a hydrocarbon solvent such as toluene, xylene, hexanes, heptane, or petroleum ether, alcohol such as methanol, ethanol, n-butanol, n-propanol and 2- propanol, di-isopropyl ether, ethyl-acetate, dichloromethane, acetic acid, acetone, tetrahydrofuran, dichloromethane, and water.
- a hydrocarbon solvent such as toluene, xylene, hexanes, heptane, or petroleum ether
- alcohol such as methanol, ethanol, n-butanol, n-propanol and 2- propanol
- di-isopropyl ether ethyl-acetate
- dichloromethane acetic acid
- acetone tetrahydrofuran
- dichloromethane and water.
- a "pro-drug" of the same in order to improve the dehepaticability of the compound disclosed in the present invention for the required physiological effect, a "pro-drug" of the same can be made available.
- the pro-drug such as an in-vivo hydrolyzable ester can be a obtained by conjugation of the parent drug with a low- molecular weight alcohol or a high molecular weight polyethylene glycol(PEG).
- the compound disclosed in the invention could contain a nitrate ester group.
- the compounds in the present invention could exist as enantiomers, diastereomers, geometric isomers, racemates, tautomers, rotamers, atropisomers or metabolites.
- some compounds disclosed in the invention can be "neutral antagonists". These agents are said to have no effect on intrinsic receptor activity at least in certain test systems. However, these agents may be able to block receptor binding and activation, usually by a competitive agonist.
- the compound disclosed in the present invention may act preferentially at the CB1 receptors located in the periphery.
- the compounds do not penetrate the blood-brain-barrier, have restricted penetration or have slow penetration.
- peripherally acting compounds may have advantages over centrally acting compounds, for example, reduced psychotropic adverse effects.
- a compound acting on the CB1 receptors located in the periphery could be behave either as a neutral antagonist, an inverse agonists or a partial antagonist.
- a compound acting on the CB1 receptors located centrally could behave as a neutral antagonist, an inverse agonists or a partial antagonist.
- the compounds disclosed in the invention could act either as inverse agonists with no or reduced side effects. In other embodiments, the compounds could act as partial agonists with no or reduced side effects.
- the compounds of the present invention can be administered by a variety of known methods, including orally, rectally, or by parenteral routes (e.g., intramuscular, intravenous, subcutaneous, nasal or topical).
- parenteral routes e.g., intramuscular, intravenous, subcutaneous, nasal or topical.
- the form in which the compounds are administered will be determined by the route of administration.
- Such forms include, but are not limited to, capsular and tablet formulations (for oral and rectal administration), liquid formulations (for oral, intravenous, intramuscular, subcutaneous, ocular, intranasal, inhalation-based and transdermal administration) and slow releasing microcarriers (for rectal, intramuscular or intravenous administration).
- the formulations can also contain a physiologically acceptable vehicle and optional adjuvants, flavorings, colorants and preservatives.
- Suitable physiologically acceptable vehicles include, for example, saline, sterile water, Ringer's solution and isotonic sodium chloride solutions.
- the specific dosage level of active ingredient will depend upon a number of factors, including, for example, biological activity of the particular preparation, age, body weight, sex and general health of the individual being treated.
- the compounds of the present disclosure can also comprise isotopes at one or more of their atoms.
- the compounds can be radiolabeled with isotopes, such as 2 H (deuterium written as D) 3 H (tritium written as T), 11 C (carbon-11), 13 C (carbon-13), 14 C (carbon-14), 15 O (oxygen-15), 17 O (oxygen-17), 18 O (oxygen-18), 13 N (nitrogen-13), 15 N (nitrogen-15), 18 F (fluorine- 18), 75 Br (bromine-75), 76 Br (bromine-76), 77 Br (bromine-77), 82 Br (bromine-82), 123 I (iodine-123), 124 I (iodine-124), 125 I (iodine-125) or 131 I (iodine-131), 36 CI (chlorine-36) or 35 S (sulphur-35),
- the present disclosure encompasses all isotopic variations of the described compounds, whether natural or unnatural, radioactive or not
- An isotope is one of two or more species of the same element. Each isotope of an element will have the same number of protons in its nucleus, the same atomic number and the same position in the Periodic Table. However each isotope of that element will have a different number of neutrons in its nucleus and therefore a different mass than other isotopes of that species.
- the term nuclide is sometimes used synonymously with the term isotope.
- a natural isotope has an atomic mass corresponding most closely with the atomic mass shown for that element in the Periodic Table.
- an unnatural isotope has an atomic mass that is further removed from the atomic mass shown for that element in the Periodic Table than the natural isotope.
- protium hydrogen-1 or 1 H
- deuterium hydrogen-2 or 2 H
- tritium hydrogen-3 or 3 H
- some of the halogen containing analogs are potential radioactive probes for imaging in wVo the distribution of cannabinoid receptors.
- 11 C, 18 F, 125 I , 123 I , 124 I , 131 I, 75 Br, 76 Br or 77 Br will generally be most useful.
- radiopharmaceutical analogs Some of the radioactive isotope containing analogs have potential as radiopharmaceutical analogs (disclosed analogs that have been labeled with radioactive isotopes). These radiopharmaceuticals can be administered to individuals or animals and the emitted radiation can be measured. The majority of these diagnostic tests involve the formation of an image using a camera suitable to detect the emitted radiation.
- Positron emission tomography PET is one nuclear medicine tomographic imaging technique, which produces a three-dimensional image or map of functional processes in a patient's body. To conduct the PET scan, a short-lived radiopharmaceutical analog that decays by emitting a positron is administered into the subject (usually by injection into the blood stream).
- SPECT Single photon emission computed tomography
- SPECT Single photon emission computed tomography
- SPECT imaging is another nuclear medicine tomographic imaging technique.
- SPECT imaging is performed by using a gamma camera to acquire multiple two dimensional images from multiple angles.
- a computer is then used to apply an algorithm to the multiple images to provide a three dimensional image.
- step C 500 mg, 0.79 mmol was taken and subjected to the Sonogashira reaction as was performed in example 3F to give compound 12 ( 200 mg, 47.5%).
- Iodobenzene (10Og, 0.49 mol) was taken in a dry 1 L 3 neck flask equipped with a N 2 inlet and to it 200 ml of CS 2 was added. The contents were cooled to 0-5 0 C and then AICI 3 (80 g, 0.6 moles) and subsequently propionyl chloride (60 g, 0.64 mol) were added while keeping the temperature (internal) at 5-10 0 C. The contents were stirred for 24 hrs. The reaction mixture was poured into a 5 liter plastic beaker containing 1 L of 10% HCI + 1 Kg of crushed ice. The resultant slurry was extracted with 1 L of ethyl acetate.
- Step B Lithium-4-ethoxy-1-(4-iodophenyl)-2-methyl-3,4-dioxobut-1-en-1-olate
- 4'-iodopropiophenone obtained from step A was taken in a 2L 3 neck flask equipped with a nitrogen inlet. To that 500 ml of diethyl ether was added and the contents were cooled at -78 0 C using a dry-ice acetone bath. The reaction mixture was stirred for 15 minutes. Subsequently, a 1 M solution of lithium bis(trimethylsilyl)amide in hexanes (222 ml, 0.22 mol) was added drop wise over 1 hour. The contents were stirred at - 78 0 C an additional 1 hour after diethyl oxalate which (32.3 g, 0.22 mol) taken in diethyl ether was added over 30 minutes.
- the contents were stirred for 2 hours at - 78 0 C after which the cooling bath was removed.
- the contents were brought to room temperature over 10 hours.
- the solids were filtered under a stream of nitrogen and then washed with 200 ml of ether.
- the solid obtained was air dried for 1 hour and was taken as such to the next reaction directly (52 g, 76.9%).
- Step C ethyl 1 -(2,4-dichlorophenyl)-5-(4-iodophenyl)-4-methyl-1 H-pyrazole-3-carboxylate
- the lithium salt obtained from step B was taken in a 1 liter 1 neck flask and to that 2,4-dichlorophenylhydrzine hydrochloride (30.3 g, 0.14 mol) and 1.5 liters of anhydrous ethanol were added in on portion. The resulting mixture was stirred at room temperature for 24 hours.
- Step D i- ⁇ -dichlorophenyO- ⁇ - ⁇ -iodophenyO ⁇ -methyl-I H-pyrazole-S-carboxylic acid
- the ester (10 g, 19.9 mmoles) obtained from step C was taken in 500 ml 1 neck flask and to it 300 ml of 7:2:1 mixture of THF-methanol-water along with solid lithium hydroxide (2.5 g, 104.6 mol) was added. The mixture was refluxed for 12 hours. The solvents were removed totally and to the residue 200 ml of DCM was added. To that 100 ml of water was added and the mixture was acidified to pH ⁇ 2 using concentrated HCI. The organic layer was separated, washed with 100 ml of brine, dried over sodium sulphate and concentrated to give the acid. This was taken directly to the next step (9.4 g, 100%).
- the acid (7.5 g, 15.8 mmol) obtained from step D was taken in a 500 ml 1 neck flask equipped with a nitrogen inlet and to it 200 ml of DCM, 4-aminothiomorpholine-1 ,1- dioxide (2.61 g, 17.4 mmol), TBTU (5.59g, 17.4 mmol) and DIPEA (2.25 g, 17.4 mmol) were added and the contents were stirred for 1 hour.
- 100 ml of water was added and the contents were acidified to pH ⁇ 2 using concentrated HCI.
- the organic layer was separated, washed with brine, dried over sodium sulphate and concentrated to give the amide (3 g, 31.2%).
- reaction mixture was re-cooled to -40 0 C and N-methoxy-N-methylpropionamide (9 g, 76.8 mmol) taken in 50 ml of THF was added in one portion.
- the reaction mixture was allowed to warm slowly to O 0 C and then the reaction was quenched with saturated 50 ml of NH 4 CI solution.
- the contents were extracted with 3 x 100 ml of DCM, dried over MgSO 4 and concentrated to give an oily residue. This was purified by flash chromatography to give the title compound (10 g, 49%).
- Step C ethyl1-(2,4-dichlorophenyl)-5-(5-iodothiophen-2-yl)-4-methyl-1 H-pyrazole-3- carboxylate
- Intracellular cAMP levels were measured with a competitive protein-binding assay using intact HEK293 cells expressing hCB1 or hCB2 and a cAMP immunoassay kit from Sigma (St. Louis, MO).
- forskolin stimulated cells were incubated with various concentrations of compound, cAMP anti-body and cAMP conjugate for 2 hours at ambient temperature. The reaction was stopped by emptying the wells followed by the addition of p-NPP substrate and incubation for 1 hour. This reaction was stopped and absorbance intensity, detected at 405 nm, was inversely proportional to the concentration of cAMP produced by the cells. The results were expressed as percent inhibition of forskolin-stimulated cAMP accumulation and EC50 curves were generated with the use of GraphPad Prism software.
- compound 2 and compound 15 did not change the forskolin- stimulated cAMP accumulation in CB1 transfected HEK cells ( Figures 1A and 1B) and are therefore considered to be a CB 1 neutral antagonists.
- the results are from one assay done in triplicate.
- binding affinity is represented by the Kj value which is the inhibition constant correlated with the concentration of an analog required to occupy the 50% of the total number (Bmax) of the receptors. The lower the Ki value the higher the binding affinity.
- an analog is said to have "binding selectivity” if it has higher binding affinity for one receptor compared to the other receptor; e.g. a cannabinoid analog which has a Kj of 0.1 nM for CB1 and 10 nM for CB2, is 100 times more selective for the CB 1 receptor.
- TME Tris-HCI buffer, 5 mM MgCb and 1 mM EDTA
- the treated membranes were subsequently used in the binding assay described below. Approximately 30 ⁇ g of membranes were incubated in silanized 96-well microtiter plate with TME containing 0.1% essentially fatty acid-free bovine serum albumin (BSA), 0.8 nM [ 3 H] CP-55,940, and various concentrations of test materials in a final volume of 200 ⁇ l_. The assays were incubated for 1 hour at 30 0 C and then immediately filtered using Packard Filtermate 196 harvester and Whatman GF/C filterplates and washed with wash buffer (TME) containing 0.5% BSA.
- BSA essentially fatty acid-free bovine serum albumin
- Radioactivity was detected using MicroScint 20 scintillation cocktail added directly to the dried filterplates, and the filterplates were counted using a Packard Instruments Top-Count. Nonspecific binding was assessed using 100 nM CP-55,940. Data collected from three independent experiments performed with duplicate determinations was normalized between 100% and 0% specific binding for [ 3 H] CP- 55,940, determined using buffer and 100 nM CP-55,940. The normalized data was analyzed using a 4-parameter nonlinear logistic equation to yield IC 5 O values.
- the CB1 cannabinoid receptor binding affinities (Ki) for some of the compounds disclosed in the invention range between 0.5 nM and less than 100 nM .
- the CB2 cannabinoid receptor binding affinities (Ki) for the synthesized analogs range between 60 nM and 5000 nM.
- CB1 cannabinoid receptor binding affinity (Ki) for compound 2 is 7 nM and the CB2 cannabinoid receptor binding affinity (Ki) is 1672 nM.
- the CB1 selectivity for some of the compounds range from 5 to greater than 5000.
- mice (CD-1 , weighing 25-30 g) are dosed intravenously or by oral gavage with 0.1-2 mg/kg of the compound dissolved in appropriate vehicle. Fifteen minutes post- injection or 30 and 60 minutes post-gavage, the animals are sacrificed humanely by decapitation followed by blood collection ( ⁇ 500 ⁇ l_) and tissue dissection; samples are flash frozen with liquid nitrogen to prevent post-mortem degradation of the compounds or endogenous ligands. Tissues (plasma or brain) are extracted and analyzed using a Thermo-Finnigan Quantum Ultra triple quadrupole mass spectrometer with an Agilent 1100 HPLC front-end.
- Chromatographic separation is achieved using a Phenomenex Gemini column (2 x 50 mm, 5 ⁇ ).
- Hardware consists of a Finnigan TSQ Quantum Ultra triple quad mass spectrometer with both an APCI and ESI source and an Agilent 1100 front end.
- the mass spectrometer with mobile phase consisting of 0.1% formic acid in water (A) and 0.1% formic acid in methanol (B).
- SR141716 gets into the brain better at 1.8%/g (% of the total dose per gram brain) at 15 minutes post IV as compared to compound 2 which is 0.6%.
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Abstract
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| Application Number | Priority Date | Filing Date | Title |
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| PCT/US2009/001054 WO2010104488A1 (en) | 2009-02-19 | 2009-02-19 | Novel hetero pyrrole analogs acting on cannapinoid receptors |
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| US10053444B2 (en) * | 2009-02-19 | 2018-08-21 | University Of Connecticut | Cannabinergic nitrate esters and related analogs |
| CA2835835C (en) | 2011-05-13 | 2019-04-02 | Array Biopharma Inc. | Pyrrolidinyl urea and pyrrolidinyl thiourea compounds as trka kinase inhibitors |
| US9822118B2 (en) | 2012-11-13 | 2017-11-21 | Array Biopharma Inc. | Bicyclic heteroaryl urea, thiourea, guanidine and cyanoguanidine compounds as TrkA kinase inhibitors |
| WO2014078372A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | Pyrrolidinyl urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| RS55593B1 (en) | 2012-11-13 | 2017-06-30 | Array Biopharma Inc | BICYCLIC UREA, TIOUREA, GUANIDINE AND CYANOGUANIDINE UNITS USEFUL FOR THE TREATMENT OF PAIN |
| MX374242B (en) | 2012-11-13 | 2025-03-05 | Array Biopharma Inc | N-pyrrolidinyl, n'-pyrazolyl- urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| WO2014078325A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | N-(monocyclic aryl),n'-pyrazolyl-urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| WO2014078331A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | N-(arylalkyl)-n'-pyrazolyl-urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| WO2014078417A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | Pyrazolyl urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| US9981959B2 (en) | 2012-11-13 | 2018-05-29 | Array Biopharma Inc. | Thiazolyl and oxazolyl urea, thiourea, guanidine and cyanoguanidine compounds as TrkA kinase inhibitors |
| WO2014078378A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | Pyrrolidinyl urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| WO2014078328A1 (en) | 2012-11-13 | 2014-05-22 | Array Biopharma Inc. | N-bicyclic aryl,n'-pyrazolyl urea, thiourea, guanidine and cyanoguanidine compounds as trka kinase inhibitors |
| MA40434B1 (en) | 2014-05-15 | 2019-09-30 | Array Biopharma Inc | 1 - ((3s, 4r) -4- (3-fluorophenyl) -1- (2-methoxyethyl) pyrrolidin-3-yl) -3- (4-methyl-3- (2-methylpyrimidin-5-yl) - 1-phenyl-1h-pyrazol-5-yl) urea as inhibitor of trka kinase |
| CA3125847A1 (en) | 2020-07-27 | 2022-01-27 | Makscientific, Llc | Process for making biologically active compounds and intermediates thereof |
| US20230234928A1 (en) * | 2020-07-27 | 2023-07-27 | Makscientific, Llc | Novel Compounds for Treating Fibrosis and Inflammatory Conditions |
| US12054480B2 (en) | 2020-07-31 | 2024-08-06 | Makscientific, Llc | Compounds for treating cannabinoid toxicity and acute cannabinoid overdose |
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| US4256727A (en) * | 1978-09-18 | 1981-03-17 | The University Of Kentucky Research Foundation | Synthesis and use of diagnostic radio-pharmaceuticals comprising radioactive isotopes of bromine with dyes |
| AU2003209388A1 (en) * | 2002-01-29 | 2003-09-02 | Merck And Co., Inc. | Substituted imidazoles as cannabinoid receptor modulators |
| JP2008526887A (en) * | 2005-01-10 | 2008-07-24 | ユニバーシティ オブ コネチカット | Novel heteropyrrole analogs that act on cannabinoid receptors |
| US20070117858A1 (en) * | 2005-11-23 | 2007-05-24 | Mingde Xia | Substituted 5-heteroaryl-1-phenyl-pyrazole cannabinoid modulators |
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- 2009-02-19 EP EP09841603A patent/EP2398323A4/en not_active Withdrawn
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| 18D | Application deemed to be withdrawn |
Effective date: 20140204 |