Claims
- 1. A method for making a compound of formula I R1 is —(CR4R5)nC(O)O(CR4R5)mR6, —(CR4R5)nC(O)NR4(CR4R5)mR6, —(CR4R5)nO(CR4R5)mR6, or —(CR4R5)rR6 wherein the alkyl moieties may be optionally substituted with one or more halogens; m is 0 to 2; n is 1 to 4; r is 0 to 6; R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is hydrogen, methyl, hydroxyl, aryl, halo substituted aryl, aryloxyC1-3 alkyl, halo substituted aryloxyC1-3 alkyl, indanyl, indenyl, C7-11 polycycloalkyl, tetrahydrofuranyl, furanyl, tetrahydropyranyl, pyranyl, tetrahydrothienyl, thienyl, tetrahydrothiopyranyl, thiopyranyl, C3-6 cycloalkyl, or a C4-6 cycloalkyl containing one or two unsaturated bonds, wherein the cycloalkyl and heterocyclic moieties may be optionally substituted by 1 to 3 methyl groups or one ethyl group; provided that: a) when R6 is hydroxyl, then m is 2; or b) when R6 is hydroxyl, then r is 2 to 6; or c) when R6 is 2-tetrahydropyranyl, 2-tetrahydrothiopyranyl, 2-tetrahydrofuranyl, or 2-tetrahydrothienyl, then m is 1 or 2; or d) when R6 is 2-tetrahydropyranyl, 2-tetrahydrothiopyranyl, 2-tetrahydrofuranyl, or 2-tetrahydrothienyl, then r is 1 to 6; e) when n is 1 and m is 0, then R6 is other than H in —(CR4R5)nO(CR4R5)mR6; X is YR2, halogen, nitro, NH2, or formyl amine; X2 is O or NR8; Y is O or S(O)m′; m′ is 0, 1, or 2; R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R3 is hydrogen, halogen, C1-4 alkyl, CH2NHC(O)C(O)NH2, halo-substituted C1-4 alkyl, —CH═CR8′R8′, cyclopropyl optionally substituted by R8′, CN, OR8, CH2OR8, NR8R10, CH2NR8R10, C(Z′)H, C(O)OR8, C(O)NR8R10, or C≡CR8′R8 is hydrogen or C1-4 alkyl optionally substituted by one to three fluorines; R8′ is R8 or fluorine; R10 is OR8 or R11; R11 is hydrogen, or C1-4 alkyl optionally substituted by one to three fluorines; Z′ is O, NR9, NOR8, NCN, C(—CN)2, CR8CN, CR8NO2, CR8C(O)OR8, CR8C(O)NR8R8, C(—CN)NO2, C(—CN)C(O)OR9, or C(—CN)C(O)NR8R8; R′ and R″ are independently hydrogen or —C(O)OH; which method comprises treating a compound of formula II where R1, R3, X2 and X are the same as for formula (I), with a Lewis acid in a an aqueous solution at a temperature between about 60° and 100° C., optionally under an inert atmosphere for a time sufficient for the reaction to go to completion.
- 2. The method of claim 1 wherein R1X2 is cyclopentyloxy and X is methoxy.
- 3. A compound of formula II R1 is —(CR4R5)nC(O)O(CR4R5)mR6, —(CR4R5)nC(O)NR4(CR4R5)mR6, —(CR4R5)nO(CR4R5)mR6, or —(CR4R5)rR6 wherein the alkyl moieties may be optionally substituted with one or more halogens; m is 0 to 2; n is 1 to 4; r is 0 to 6; R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is hydrogen, methyl, hydroxyl, aryl, halo substituted aryl, aryloxyC1-3 alkyl, halo substituted aryloxyC1-3 alkyl, indanyl, indenyl, C7-11 polycycloalkyl, tetrahydrofuranyl, furanyl, tetrahydropyranyl, pyranyl, tetrahydrothienyl, thienyl, tetrahydrothiopyranyl, thiopyranyl, C3-6 cycloalkyl, or a C4-6 cycloalkyl containing one or two unsaturated bonds, wherein the cycloalkyl and heterocyclic moieties may be optionally substituted by 1 to 3 methyl groups or one ethyl group; provided that: a) when R6 is hydroxyl, then m is 2; or b) when R6 is hydroxyl, then r is 2 to 6; or c) when R6 is 2-tetrahydropyranyl, 2-tetrahydrothiopyranyl, 2-tetrahydrofuranyl, or 2-tetrahydrothienyl, then m is 1 or 2; or d) when R6 is 2-tetrahydropyranyl, 2-tetrahydrothiopyranyl, 2-tetrahydrofuranyl, or 2-tetrahydrothienyl, then r is 1 to 6; e) when n is 1 and m is 0, then R6 is other than H in —(CR4R5)nO(CR4R5)mR6; X is YR2, halogen, nitro, NH2, or formyl amine; X2 is 0 or NR8; Y is O or S(O)m′; m′ is 0, 1, or 2; R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R3 is hydrogen, halogen, C1-4 alkyl, CH2NHC(O)C(O)NH2, halo-substituted C1-4 alkyl, —CH═CR8′R8′, cyclopropyl optionally substituted by R8′, CN, OR8, CH2OR8, NR8R10, CH2NR8R10, C(Z′)H, C(O)OR8, C(O)NR8R10, or C≡CR8′R8 is hydrogen or C1-4 alkyl optionally substituted by one to three fluorines; R8′ is R8 or fluorine; R10 is OR8 or R11; R11 is hydrogen, or C1-4 alkyl optionally substituted by one to three fluorines; Z′ is O, NR9, NOR8, NCN, C(—CN)2, CR8CN, CR8NO2, CR8C(O)OR8, CR8C(O)NR8R8, C(—CN)NO2, C(—CN)C(O)OR9, or C(—CN)C(O)NR8R8, and T is CN or SO2R where R is C1-6alkyl or C0-3alkylphenyl.
- 4. The compound of claim 3 wherein R1X2 is cyclopentyloxy and X is methoxy.
- 5. A process for preparing a compound of formula I(a) or I(b) or a mixture thereof whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O; which process comprises treating an acyl nitrile of formula (V) with water wherein X and R1X2 are the same as in formula (Ia) and (Ib).
- 6. The process of claim 5 wherein the compound of formula (V) is that of formula (Va) and results in the formation of a compound of formula (Ia).
- 7. The process of claim 5 wherein the compound of formula (V) is that of formula (Vb) and results in the formation of a compound of formula (Ib).
- 8. A process for preparing a compound of formula (V) whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O; which process comprises maintaining at about room temperature in solution for a time sufficient to effect the conversion, a compound of formula (Z) where X and R1X2 are the same as in formula (V) and M is Li or Mg and the group (H) is hydrogen.
- 9. The process of claim 8 wherein formula (Z) is that of FIG. 1 where M is Li or Mg and (H) is hydrogen.
- 10. A compound of formula (Z) whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O.
- 11. A compound of formula (Z) according to claim 10 which is wherein M is Li or Mg and (H) is hydrogen.
- 12. A process for preparing a compound of formula (Z) whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O; which process comprises treating an epoxide of formula (II) wherein X and R1X2 are the same as in formula (Z) and T is CN or SO2R where R is C1-6alkyl or C0-3alkylphenyl with a Lewis acid under anhydrous conditions.
- 13. The process of claim 12 wherein the Lewis acid is LiBr.
- 14. The process of claim 11 or 12 wherein the epoxide of formula (II) has the structure represented by FIG. 2 where T is CN or p-tolylsulfonyl.
- 15. A compound of formula (IV) whereX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O.
- 16. A compound of formula (IV) according to claim 15 wherein X is methoxy, R1 is cyclopentyl and X2 is oxygen.
- 17. A process for preparing a compound of formula (Ia) or (Ib) whereX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O; which process comprises treating an aldehyde of formula (IV) wherein X and R1X2 are the same as in formula I(a) and I(b) with an alkali metal cyanide.
- 18. The process according to claim 17 wherein the cyanide is LiCN.
- 19. The process according to claim 17 or 18 wherein, in formula (IV), X is methoxy, R1 is cyclopentyl and X2 is oxygen.
- 20. A process for preparing an acyl nitrile of formula (V) whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or more halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O; which process comprises treating an aldehyde of formula (IV) wherein X, and R1X2 are the same as in formula (V) with LiCN and a catalytic amount of dimethyl formamide.
- 21. A compound according to formula (VI) whereinX is OR2, R2 is independently selected from —CH3 or —CH2CH3 optionally substituted by 1 or m ore halogens; R1 is —(CR4R5)rR6, R4 and R5 are independently selected from hydrogen or a C1-2 alkyl; R6 is C3-6 cycloalkyl which may be optionally substituted by 1 to 3 methyl groups or one ethyl group; and X2 is O.
- 22. A compound according to claim 21 wherein X is cyclopentyloxy, and R2 is —CH3.
- 23. A process for enriching the c-4-cyano-4-(3-cyclopentyloxy-4-methoxyphenyl)-r-cyclohexanecarboxylic acid form from a mixture of cis and trans isomers of the acid, which process comprises crystallizing from a hexane/ethyl acetate solution of cis and trans isomers the cis isomer essentially free of the trans isomer.
- 24. The process of claim 23 wherein the cis/trans mixture is dissolved in ethyl acetate and hexanes.
- 25. The process of claim 24 where the cis/trans mixture is dissolved in ethyl acetate and then hexanes are added.
- 26. The process of claim 25 wherein the ethyl acetate solution of cis/trans isomers are heated to reflux, cooled and then hexanes added after which crystallization is carried out.
Parent Case Info
This application is a con of Ser. No. 09/355,786 filed Aug. 4, 1999 now abd, which is a 371 of PCT/US98/02749 filed Feb. 12, 1998 and claims benefit of provisional application Ser. No. 60/037,608 filed Feb. 2, 1997.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
5552438 |
Christensen, IV |
Sep 1996 |
A |
5602173 |
Christensen, IV |
Feb 1997 |
A |
Foreign Referenced Citations (1)
Number |
Date |
Country |
2 144 422 |
Mar 1985 |
GB |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/037608 |
Feb 1997 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09/355786 |
|
US |
Child |
09/533368 |
|
US |