Claims
- 1. A process for the preparation of a Δ4,6-ketal of formula (I-P)
- 2. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where R3 is C1 alkyl.
- 3. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where R31 and R32 are cyclized to form a group selected from the group consisting of
—CH2—C(CH3)2—CH2— known as 2,2-dimethylpropane-1,3-diyl, —CH2—C(CH3CH2)2—CH2— known as 2,2-diethylpropane-1,3-diyl, —CH2—CH2— known as ethane-1,2-diyl, —CH2—CH2—CH2— known as propane-1,3-diyl.
- 4. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 3 where R31 and R32 are cyclized to form —CH2—CH2-or —CH2—C(CH3)2—CH2—.
- 5. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where the Δ4,6-ketal (I-P) is of the formula
- 6. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 5 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 7. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 6 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 8. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 5 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 9. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 8 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 10. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where the hydride abstractor is selected from the group consisting of
DDQ, p-chloranil, o-chloranil, Mn+3, Mn+7, Pb+4, Pd+2, Ru+8, Cr+6, o-iodoxybenzoic acid, o-iodoxybenzoic acid complex with DMSO, o-iodoxybenzoic acid complex with
4-methoxypyridine-N-oxide, N-methylmorpholine-N-oxide, trimethylamine-N-oxide, iodic acid (HIO3), iodine pentoxide (I2O5), ceric ammonium nitrate, iodosobenzene, iodobenzenebistrifluoroacetate, iodobenzenediacetate, tritylfluoroborate, and by electrochemical oxidation with a catalytic amount of a hydride abstractor,
- 11. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 10 where the hydride abstractor is DDQ, p-chloranil, manganese dioxide, manganic acetate, lead tetraacetate, chromium trioxide-dimethylpyrazole, chromium trioxide-pyridine, palladium acetate and ruthenium trichloride/t-butylhydroperoxide.
- 12. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 10 where the hydride abstractor is DDQ.
- 13. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 10 where the process is performed under essentially anhydrous conditions.
- 14. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where the alcohol is neopentylglycol.
- 15. A process for the preparation of a Δ4,6-ketal of formula (I-P) according to claim 1 where the steroid is selected from the group consisting of
17β-hydroxypregna-4,6,9(11)-trien-3-one-21-carboxylic acid, γ-lactone, cyclic 3-(2′,2′-dimethyl-1′,3′-propanediyl ketal), 17β-hydroxypregna-4,6,9(11)-trien-3-one-21-carboxylic acid, γ-lactone, cyclic 3-ethanediyl ketal.
- 16. A 7α-substituted steroid of formula (II)
- 17. A 7α-substituted steroid (II) according to claim 16 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 18. A 7α-substituted steroid (II) according to claim 17 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 19. A 7α-substituted steroid (II) according to claim 16 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 20. A 7α-substituted steroid (II) according to claim 19 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 21. A 7α-substituted steroid (II) according to claim 16 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 22. A 7α-substituted steroid (II) according to claim 21 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the a-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 23. A 7α-substituted steroid (II) according to claim 16 where R7-1 is (-A1)
- 24. A 7α-substituted steroid (II) according to claim 23 where X1 is —O—.
- 25. A 7α-substituted steroid (II) according to claim 23 where Rb and Rc are —H.
- 26. A 7α-substituted steroid (II) according to claim 23 where Rd is C1 alkyl.
- 27. A 7α-substituted steroid (II) according to claim 23 where R7-1 is furan-2-yl and 5-methylfuran-2-yl.
- 28. A 7α-substituted steroid (II) according to claim 27 where R7-1 is 5-methylfuran-2-yl.
- 29. A 7ax-substituted steroid (II) according to claim 16 where R7-1 is (-A2)
- 30. A 7α-substituted steroid (II) according to claim 29 where X1 is —O—.
- 31. A 7α-substituted steroid (II) according to claim 29 where Rb and Rd are C1 alkyl.
- 32. A 7α-substituted steroid (II) according to claim 29 where Rc is —H.
- 33. A 7α-substituted steroid (II) according to claim 16 where R7-1 is
- 34. A 7α-substituted steroid (II) according to claim 16 where R7-1 is
- 35. A 7α-substituted steroid (II) according to claim 16 where R7-1
- 36. A 7α-substituted steroid (II) according to claim 16 where R7-1
- 37. A 7α-substituted steroid (II) according to claim 16 where R7-1 is
- 38. A 7α-substituted steroid (II) according to claim 16 which is selected from the group consisting of:
17β-hydroxy-7α-(5′-methyl-2′-furyl)-pregna-4,9-dien-3-one-21-carboxylic acid, γ-lactone, 11α,17β-dihydroxy-7α-(5′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 9α,11α-epoxy-17β-hydroxy-7α-(5′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 17β-hydroxy-7α-(5′-t-butyl-2′-furyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 11α,17β-dihydroxy-7α-(5′-t-butyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 11α,17β-dihydroxy-7α-(4′-bromo-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 11α,17β-dihydroxy-7α-(4′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone and 7α-allyl-17β-hydroxypregna-4,9(11)-dien-3-one, 21-carboxylic acid, γ-lactone.
- 39. A cis enedione of the formula (III-cis)
- 40. An enedione (III) according to claim 39 which is the cis isomer (III-cis).
- 41. An enedione (III) according to claim 39 which is the trans isomer (III-trans).
- 42. An dieneone (III) according to claim 28 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 43. An dieneone (III) according to claim 42 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 44. An dieneone (III) according to claim 28 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 45. An enedione (III) according to claim 44 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 46. An enedione (III) according to claim 39 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 47. An enedione (III) according to claim 46 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2—, is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 48. An enedione (III) according to claim 39 where Rb and Rc are —H.
- 49. An enedione (III) according to claim 39 where Rd is C1 alkyl.
- 50. An enedione (III) according to claim 39 which is:
17β-hydroxy-7α-(cis-1′,4′-dioxopent-2′-en-1′yl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 17β-hydroxy-7α-(trans-140 ,4′-dioxopent-2′-en-1′yl)pregna-4,9-dien-3-one-21-carboxylic acid, γ-lactone.
- 51. A hydroxy compound of formula (IV-OH)
- 52. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 which is the hydroxy compound (IV-OH).
- 53. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 which is the hydroperoxy compound (IV-OOH).
- 54. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 55. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 54 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 56. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 is —H, and where R11-2 is —H.
- 57. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 56 where R9 and R11 are:
(a) R11 is R1-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 58. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 59. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 58 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 60. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 where Rb is —H.
- 61. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 where R7-2 is —H, C1 and iso-C3.
- 62. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 61 where R7-2 is —H.
- 63. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 61 where R7-2 is a mixture of —H, C1 and iso-C3.
- 64. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 51 which is:
17β-hydroxy-7α-(1′-oxo-2′-isopropoxy-2′-hydroxyethyl)pregna-4,9-dien-3-one-21-carboxylic acid, γ-lactone, 17β-hydroxy-7α-(1′-oxo-2′-isopropoxy-2′-hydrohydroperoxy-ethyl)pregna-4,9-dien-3-one-21-carboxylic acid, γ-lactone, 17β-hydroxy-7α-(2′-hydroperoxy-2′-methoxyacetyl)pregna-4,9(11)-dien-3-one-21 carboxylic acid, γ-lactone.
- 65. A biscarbonyl compound of the formula (V)
- 66. A biscarbonyl compound (V) according to claim 65 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1,:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31, and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 67. A biscarbonyl compound (V) according to claim 66 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 68. A biscarbonyl compound (V) according to claim 65 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 69. A biscarbonyl compound (V) according to claim 68 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 70. A biscarbonyl compound (V) according to claim 65 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 71. A biscarbonyl compound (V) according to claim 70 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 72. A biscarbonyl compound (V) according to claim 65 where Rb is —H.
- 73. A biscarbonyl compound (V) according to claim 65 which is:
17β-hydroxy-7α-(2′-oxo-acetyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 74. A cis oxyenedione of the formula (X-cis)
- 75. An oxyenedione (X) according to claim 74 which is the cis isomer (X-cis).
- 76. An oxyenedione (X) according to claim 74 which is the trans isomer (X-trans).
- 77. An oxyenedione (X) according to claim 74 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1,:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 78. An oxyenedione (X) according to claim 65 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1 :R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 79. An oxyenedione (X) according to claim 74 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 is —H, and where R11-2 is —H.
- 80. An oxyenedione (X) according to claim 79 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 81. An oxyenedione (X) according to claim 74 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 82. An oxyenedione (X) according to claim 81 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 83. An oxyenedione (X) according to claim 74 where Rb and Rc are —H.
- 84. An oxyenedione (X) according to claim 74 where Rd is C1 alkyl.
- 85. An oxyenedione (X) according to claim 74 which is:
17β-hydroxy-7α-(cis-3′-acetoxyacryloyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone and 17β-hydroxy-7α-(trans-3′-acetoxyacryloyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 86. A 7α-unsaturated steroid of formula (XIV)
- 87. A 7α-unsaturated steroid (XIV) according to claim 86 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1 :R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 88. A 7α-unsaturated steroid (XIV) according to claim 87 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 89. A 7α-unsaturated steroid (XIV) according to claim 86 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R115 or R11-6 is —H, (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 90. A 7α-unsaturated steroid (XIV) according to claim 89 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 91. A 7α-unsaturated steroid (XIV) according to claim 86 where R17 is selected from the group consisting of:
(a) α-R17-7:β—R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 92. A 7α-unsaturated steroid (XIV) according to claim 91 where R17 is:
(a) α—R17-7:β—R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 93. A 7α-unsaturated steroid (XIV) according to claim 86 where Rb and Rc are —H.
- 94. A 7α-unsaturated steroid (XIV) according to claim 86 where Rd is C1 alkyl.
- 95. A 7α-preacid of the formula (XV)
- 96. A 7α-preacid of formula (XV) according to claim 95 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 97. A 7α-preacid of formula (XV) according to claim 96 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 98. A 7α-preacid of formula (XV) according to claim 95 where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 99. A 7α-preacid of formula (XV) according to claim 98 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 100. A 7α-preacid of formula (XV) according to claim 95 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 101. A 7α-preacid of formula (XV) according to claim 100 where R17 7 is:
(a) α-R17-7:β-R17-8 where R17-2 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 102. A 7α-preacid of formula (XV) according to claim 95 where Rb is —H.
- 103. A process for the preparation of a 7α-substituted steroid (II) of the formula
- 104. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where for the 7α-substituted steroid R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 105. A process for the preparation of a 7α-substituted steroid (II) according to claim 104, where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 106. A process for the preparation of a 7α-substituted steroid (II) according to claim 103, where R9 and R11 are selected from the group consisting of:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 107. A process for the preparation of 7α-substituted steroid (II) according to claim 106 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 108. A process for the preparation of 7α-substituted steroid (II) according to claim 103 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 109. A process for the preparation of a 7α-substituted steroid (II) according to claim 108 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 110. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the adduct is of formula (A1)
- 111. A process for the preparation of a 7α-substituted steroid (II) according to claim 110 where X1 is —O—.
- 112. A process for the preparation of a 7α-substituted steroid (II) according to claim 110 where Rb and Rc are —H.
- 113. A process for the preparation of a 7α-substituted steroid (II) according to claim 110 where Rd is C1 alkyl.
- 114. A process for the preparation of a 7α-substituted steroid (II) according to claim 110 where Ra is —H.
- 115. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the adduct is of formula (A2)
- 116. A process for the preparation of a 7α-substituted steroid (II) according to claim 115 where X1 is —O—.
- 117. A process for the preparation of a 7α-substituted steroid (II) according to claim 115 where Rb and Rd are C1 alkyl.
- 118. A process for the preparation of a 7α-substituted steroid (II) according to claim 115 where Rc is —H.
- 119. A process for the preparation of a 7α-substituted steroid (II) according to claim 115 where Ra is —H.
- 120. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the adduct is (B)
- 121. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the adduct is (C)
- 122. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the adduct is selected from the group consisting of (D1), (D2) and (D3)
- 123. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where L for
—ZnL is —Cl, —Br, —I; —BL is catecholate,
two —OH, HO—CH2—CH2—OH, HO—CH2—CH2—CH2—OH, HO—CH2—C(CH3)2—CH2—OH; —SiL3 is C1 alkyl; —SnL3 is C1 or n-C4 alkyl; —CuL is 2-thienyl or —CN and —AlL2 is C1-C2 alkyl.
- 124. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the process is performed in the presence of a Lewis acid.
- 125. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the Lewis Acid is used in the presence of an alcohol selected from the group consisting of C1-C3 alcohols, ethylene glycol, 1,2- or 1,3-propylene glycol, 2,2-dimethyl- or 2,2-diethyl-1,3-propylene glycol and phenol.
- 126. A process for the preparation of a 7α-substituted steroid (II) according to claim 125 where the alcohol is a C2 alcohol.
- 127. A process for the preparation of a 7α-substituted steroid (II) according to claim 124 where the Lewis Acid is selected from the group consisting of
BX3, AlX3, SnX2, SnX4, SiX4, MgX2, ZnX2, TiX4, Rh(acac)(CH2CH2)2(2,2′-bis(diphenylphosphino)-1,1′-binaphthyl), Rh(CH3—C≡N)2(cyclooctadiene)(BF4), Rh(acac)(CH2CH2)2(dppb), LiClO4, K10 Montmorillonite clay, Yb(OTf)3, LiCo(B9C2H11)2, PdX2, CrX3, FeX3, CoX3, NiX2, SbX5, InX3, Sc(OTf)3, φ3C+X−(R)3SiX where R is C1-C4 alkyl and -φ; where X is selected from the group consisting of F−, Cl−, Br−, I−, —O—SO2CF3−, PF6−, BF4−, and ClO4−; Pd(CH3—CO—O—)2; BF3-diethyletherate complex; BF3-acetic acid complex; BF3-methyl-t-butyl ether complex; BF3-di-n-butyletherate complex; BF3-dimethyletherate complex; BF3-dimethylsulfide complex; BF3-phenol complex; BF3-phosphoric acid complex and BF3-tetrahydrofuran complex.
- 128. A process for the preparation of a 7α-substituted steroid (II) according to claim 127 where the Lewis Acid is used in the presence of an alcohol selected from the group consisting of C1-C3 alcohols, ethylene glycol, 1,2- or 1,3-propylene glycol, 2,2-dimethyl- or 2,2-diethyl-1,3-propylene glycol and phenol.
- 129. A process for the preparation of a 7α-substituted steroid (II) according to claim 127 where the Lewis Acid is selected from the group consisting of
BF3, BF3-diethyletherate complex, BF3-acetic acid complex, BF3-methyl-t-butyl ether complex, BF3-di-n-butyletherate complex, BF3-dimethyletherate complex, BF3-dimethylsulfide complex, BF3-phenol complex, BF3-phosphoric acid complex and BF3-tetrahydrofuran complex.
- 130. A process for the preparation of a 7α-substituted steroid (II) according to claim 129 where the Lewis Acid is BF3-diethyletherate.
- 131. A process for the preparation of a 7α-substituted steroid (II) according to claim 130 where the BF3-diethyletherate is in the presence of C1-C3 alcohol.
- 132. A process for the preparation of a 7α-substituted steroid (II) according to claim 131 where the BF3-diethyletherate is in the presence of C2 alcohol.
- 133. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the acid with a pKa of <about 5 is selected from the group consisting of
formic acid, acetic acid, propionic acid, benzoic acid, sulfurous acid, hydrofluoric acid, fluoroboric acid, p-toluenesulfonic acid, methanesulfonic acid, benzenesulfonic acid, trifluoromethanesulfonic acid, perchloric acid, trifluoroacetic, trichloroacetic.
- 134. A process for the preparation of a 7α-substituted steroid (II) according to claim 133 where the acid is acetic acid.
- 135. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where at least one equivalent of the adduct is used per equivalent of the Δ4,6-3-keto steroid or ketal thereof (I).
- 136. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the temperature of the reaction mixture is from about −78° to about 60°.
- 137. A process for the preparation of a 7α-substituted steroid (II) according to claim 136 where the temperature of the reaction mixture is from about −40° to about −15°.
- 138. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the a salt of a secondary amine is selected from the group consisting of
- 139. A process for the preparation of a 7α-substituted steroid (II) according to claim 138 where the acid of pKa of <about 2 is hydrochloric acid.
- 140. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the process is performed in a solvent/solvent mixture selected from the group consisting of:
C1-C6 alcohols, a solvent mixture of C1-C6 alcohols and a solvent selected from the group consisting of acetonitrile, nitromethane, toluene, methylene chloride and acetic acid.
- 141. A process for the preparation of a 7α-substituted steroid (II) according to claim 140 where the solvent is a mixture of acetonitrile and ethanol.
- 142. A process for the preparation of a 7α-substituted steroid (II) according to claim 103 where the 7-substituted steroid (II) is:
17α-hydroxy-7α-(5′-methyl-2′-furyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 11α, 17β-dihydroxy-7α-(5′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 90,11α-epoxy-17β-hydroxy-7α-(5′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 11α, 17β-dihydroxy-7α-(5′-t-butyl-2′-furyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 11α, 17β-dihydroxy-7α-(5′-t-butyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone, 11α, 17β-dihydroxy-7α-(4′-bromo-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, y-lactone, 11α, 17β-dihydroxy-7α-(4′-methyl-2′-furyl)-pregn-4-en-3-one-21-carboxylic acid, γ-lactone and 7α-allyl-17β-hydroxypregna-4,9(11)-dien-3-one, 21-carboxylic acid, γ-lactone.
- 143. A process for purifying a 70α-substituted steroid of formula (II)
- 144. A process for producing a 7α-substituted steroid of formula (II) according to claim 143 where the 7α-substituted steroid (II) is obtained in greater than 99.8% isomeric purity.
- 145. A process for producing a 7α-substituted steroid of formula (II) according to claim 143 where the solvent is propyl acetate.
- 146. A process for the preparation of a cis-enedione of formula (III-cis)
- 147. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 148. A process for the preparation of a cis-enedione (III-cis) according to claim 147 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 149. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 150. A process for the preparation of a cis-enedoine (III-cis) according to claim 149 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 151. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 152. A process for the preparation of a cis-enedione (III-cis) according to claim 151 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 153. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where R7-1 is furan-2-yl and 5-methylfuran-2-yl.
- 154. A process for the preparation of a cis-enedione (III-cis) according to claim 153 where R7-1 is 5-methylfuran-2-yl.
- 155. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where Rb and Rc are —H.
- 156. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where Rd is C1 alkyl.
- 157. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the oxygen donating agent is selected from the group consisting of:
a peracid, singlet oxygen followed by either phosphite or thiourea, triplet oxygen, hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, and where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members and ketones of the formula: 197hydrogen peroxide in combination with methyltrioxorhenium, trichloroacetonitrile/hydrogen peroxide, trichloroacetamide/hydrogen peroxide, DDQ/water, p-chloranil/water, φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and MO hexacarbonyl.
- 158. A process for the preparation of a cis-enedione (III-cis) according to claim 157 where the oxygen donating agent is a peracid.
- 159. A process for the preparation of a cis-enedione (III-cis) according to claim 158 where the peracid is selected from the group consisting of:
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid and (d) magnesium peroxyphthalate.
- 160. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the halogenating agent is selected from the group consisting of:
dibromodimethylhydantoin, dichlorodimethylhydantoin, diiododimethylhydantoin, N-chlorosuccinamide, N-bromosuccinamide, N-iodosuccinamide, trichloroisocyanuric acid, t-butylhypochlorite, 3-bromo-1-chloro-5,5-dinmethylhydantoin.
- 161. A process for the preparation of a cis-enedione (III-cis) according to claim 160 where the halogenating agent is dibromodimethylhydantoin.
- 162. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where at least one equivalent of the halogenating agent is used.
- 163. A process for the preparation of a cis-enedione (III-cis) according to claim 162 where from about 1.0 to about 1.05 equivalents of the halogenating agent are used.
- 164. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the base is selected from the group consisting of acetate, bicarbonate, carbonate, propionate, benzoate, dibasic phosphate and borate.
- 165. A process for the preparation of a cis-enedione (III-cis) according to claim 164 where the base is acetate.
- 166. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the quinone is selected from the group consisting of DDQ, p-chloranil and o-chloranil.
- 167. A process for the preparation of a cis-enedione (III-cis) according to claim 166 where the quinone is p-chloranil.
- 168. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the nonquinone oxidant is selected from the group consisting of Mn+3, Mn+7, Pb′4, Pd+2, Ru+8, Cr+6, ceric ammonium nitrate, iodosobenzene, iodobenzenebistrifluoroacetate, iodobenzenediacetate, tritylfluoroborate.
- 169. A process for the preparation of a cis-enedione (III-cis) according to claim 146 where the cis-enedione (III-cis) is:
17β-hydroxy-7α-(cis-1′,4′-dioxopent-2′-en-1′yl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 170. A process for the preparation of a trans-enedione of formula (III-trans)
- 171. A process for the preparation of a trans-enedione (Ill-trans) according to claim 170 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 172. A process for the preparation of a trans-enedione (III-trans) according to claim 171 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 173. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 174. A process for the preparation of a trans-enedione (III-trans) according to claim 173 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 175. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 176. A process for the preparation of a trans-enedione (III-trans) according to claim 175 where R17 is:
(a) α-R17-7:βR17-8 where R17-2 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 177. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where Rb and Rc are —H.
- 178. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where Rd is C1 alkyl.
- 179. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where the isomerization catalyst is a strong acid.
- 180. A process for the preparation of a trans-enedione (III-trans) according to claim 179 where the strong acid is selected from the group consisting of hydrochloric acid, hydrobromic acid, hydroiodoic acid, hydrofluoroic acid, sulfuric acid, phosphoric acid, nitric acid, trichloroacetic acid and trifluoroacetic acid.
- 181. A process for the preparation of a trans-enedione (III-trans) according to claim 180 where the strong acid is hydrochloric acid.
- 182. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where the tertiary amine is selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine, p-dimethylaminopyridine and pyrrolidinylpyridine.
- 183. A process for the preparation of a trans-enedione (III-trans) according to claim 182 where the tertiary amine is pyridine hydrochloride.
- 184. A process for the preparation of a trans-enedione (III-trans) according to claim 170 where the trans-enedione (III-trans) is:
17β-hydroxy-7α-(trans-1′, 4′-dioxopent-2′-en-1′yl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 185. A process for the preparation of a hydroxy compound of formula (IV-OH)
- 186. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is the hydroxy compound (IV-OH).
- 187. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is the hydroperoxy compound (IV-OOH).
- 188. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is the biscarbonyl compound (V).
- 189. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is the carboxylic acid (VI).
- 190. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is a mixture of two of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound of formula (V) or the carboxylic acid (VI).
- 191. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 190 where the product is a mixture of the hydroxy compound (IV-OH) and the hydroperoxy compound (IV-OOH).
- 192. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is a mixture of three of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound (V) or the carboxylic (VI).
- 193. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is a mixture of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH) and the carboxylic acid (VI).
- 194. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the product is a mixture of all four of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound (V) and the carboxylic acid (VI).
- 195. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 196. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 195 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 197. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where R9, R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 198. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 197 where R9, R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 199. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 200. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 199 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 201. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where Rb and Rc are —H.
- 202. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where where Rd is C1 alkyl.
- 203. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 185 where R7-2 is —H, C1 and iso-C3.
- 204. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 203 where R7-2 is a mixture of —H, C1 and iso-C3.
- 205. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the temperature of the reaction mixture is from about −100° to about 40°.
- 206. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 205 where the temperature of the reaction mixture is from about −78° to about −20.
- 207. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 206 where the temperature of the reaction mixture is about −50.
- 208. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 205 where the cooling is maintained during the ozonolysis.
- 209. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the ozone is used as an ozone/oxygen mixture.
- 210. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the contacting is performed by reacting the cis-enedione (III-cis) or trans-enedione (III-trans) or mixture thereof, (1) with the alcohol R7-2—OH, and (2) contacting the mixture of step (1) with ozone.
- 211. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound (V), or a carboxylic acid (VI) or mixture thereof according to claim 185 where the products produced are:
17β-hydroxy-7α-(1′-oxo-2′-isopropoxy-2′-hydroxy-ethyl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 17β-Hydroxy-7α-(2′-oxo-acetyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone, 17β-hydroxypregna-4,9(11)-dien-3-one-7α,21-dicarboxylic acid, γ-lactone, 17β-hydroxy-7α-(2′-hydroperoxy-2′-methoxyacetyl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 212. A process for the preparation of a hydroxy compound of formula (IV-OH)
- 213. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 214. A process for the preparation of a hydroxy compound (IV-OH) according to claim 213 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 215. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 216. A process for the preparation of a hydroxy compound (IV-OH) according to claim 215 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 217. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where R17 is selected from the group consisting of:
(a) α-R17-7:βR17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 218. A process for the preparation of a hydroxy compound (IV-OH) according to claim 217 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 219. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where Rb is —H.
- 220. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where R7-2 is —H, C1 and iso-C3.
- 221. A process for the preparation of a hydroxy compound (IV-OH) according to claim 220 where R7-2 is a mixture of —H, C1 and iso-C3.
- 222. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and is C1-C4 alkyl or phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, hydrosulfite, thiourea, butyl vinyl ether, (C1-C4 alkyl)3 phosphine, triphenylphosphine, and tetramethylethylene.
- 223. A process for the preparation of a hydroxy compound (IV-OH) according to claim 222 where Q1 and Q2 are both C1 alkyl and the hydroperoxy-deoxygenating agent is dimethylsulfide.
- 224. A process for the preparation of a hydroxy compound (IV-OH) according to claim 212 where the hydroxy compound (IV-OH) is
17β-hydroxy-7α-(1′-oxo-2′-isopropoxy-2′-hydroxy-ethyl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 225. A process for the preparation of a carboxylic acid of formula (VI)
- 226. A process for the preparation of a carboxylic acid (VI) according to claim 225 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 227. A process for the preparation of a carboxylic acid (VI) according to claim 226 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 228. A process for the preparation of a carboxylic acid (VI) according to claim 225 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (b) α-R11-7:βR11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:βR11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 229. A process for the preparation of a carboxylic acid (VI) according to claim 228 where R9 and R11 are:
(a) R11 is R11-5:βR11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 230. A process for the preparation of a carboxylic acid (VI) according to claim 225 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C═C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 231. A process for the preparation of a carboxylic acid (VI) according to claim 230 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 232. A process for the preparation of a carboxylic acid (VI) according to claim 225 where Rb is —H.
- 233. A process for the preparation of a carboxylic acid (VI) according to claim 225 where R7-2 is —H, C1 and iso-C3.
- 234. A process for the preparation of a carboxylic acid (VI) according to claim 225 where R7-2 is —H.
- 235. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the acid forming agent is heat.
- 236. A process for the preparation of a carboxylic acid (VI) according to claim 235 where the heat in the range of from about 30° to about 120°.
- 237. A process for the preparation of a carboxylic acid (VI) according to claim 236 where the heat is from about 80° to about 90°.
- 238. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the acid forming agent is a base.
- 239. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 240. A process for the preparation of a carboxylic acid (VI) according to claim 239 where the is base is bicarbonate.
- 241. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the acid forming agent is an acid.
- 242. A process for the preparation of a carboxylic acid (VI) according to claim 241 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 243. A process for the preparation of a carboxylic acid (VI) according to claim 242 where the acid is formic acid and trifluoroacetic acid.
- 244. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the acid forming agent is an acylating agent.
- 245. A process for the preparation of a carboxylic acid (VI) according to claim 244 where the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is
—H, C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 246. A process for the preparation of a carboxylic acid (VI) according to claim 245 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 247. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the acylating agent is used in the presence of an acylation catalyst.
- 248. A process for the preparation of a carboxylic acid (VI) according to claim 247 where the acylation catalyst is pyridine, DMAP, triethylamine and 4-pyrrolidinylpyridine.
- 249. A process for the preparation of a carboxylic acid (VI) according to claim 225 where the carboxylic acid (VI) is
17β-hydroxypregna-4,9(11)-dien-3-one-7α, 21-dicarboxylic acid, γ-lactone.
- 250. A process for the preparation of a carboxylic acid of formula (VI)
- 251. A process for the preparation of a carboxylic acid (VI) according to claim 250 where the reactant is a hydroxy compound of formula (IV-OH).
- 252. A process for the preparation of a carboxylic acid (VI) according to claim 250 where the reactant is a biscarbonyl compound (V).
- 253. A process for the preparation of a carboxylic acid (VI) according to claim 250 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 and R33 and R4 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 254. A process for the preparation of a carboxylic acid (VI) according to claim 253 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 255. A process for the preparation of a carboxylic acid (VI) according to claim 250 where R9 is:
(1) —H, (2) —OH, (3) —O-(HYDROXY PROTECTING GROUP) where HYDROXY PROTECTING GROUP is selected from the group consisting of:
—Si(—CH3)3, —Si(—CH2—CH3)3, —CO—CH3, —CO—H and —SiH(CH3)2, (4) —F; where R11 is: (1) ═O, (2) —H:—H, (3) α-R11-1:β-R11-2 where R11-1 is:
(a) —H, (b) —O—R11-3 where R11-3 is:
(i) —H, (ii) a HYDROXY PROTECTING GROUP where HYDROXY PROTECTING GROUP is as defined above, and where R11-2 is: (a) —H, (b) —O—R11-4 where R11-4 is:
(i) —H, (ii) a HYDROXY PROTECTING GROUP where HYDROXY PROTECTING GROUP is as defined above, with the proviso that one of R11-1 and R11-2 must be —H, (4) R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H, (5) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H; where R17 is: (1) ═O; (2) α-R17-1:β-R17-2 where R17-1 is:
(a) —H, (b) —C≡C—H, (c) —C≡N, (d) —C≡C—CH2—O—R17-1-1 where R17-1-1 is selected from the group consisting of
(i) —H, (ii) —Si(R17-1-2)3 where R17-1-2 are the same or different and are C1-C4 alkyl, (iii) 1-ethoxyethyl, (iv) 2-tetrahydropyranyl, (e) —C≡C—CH2—O-(HYDROXY PROTECTING GROUP) where HYDROXY PROTECTING GROUP is as defined above, (f) —CH2—CH2—CH2—OH, (g) —CH2—CH2—CH2—O-(HYDROXY PROTECTING GROUP) where HYDROXY PROTECTING GROUP is as defined above, (h) —CH2—CH2—CO—O− and where R17-2 is —OH; (3) α-R17-3:β-R17-4 where R17-3 is —OH and where R17-4 is:
(a) —CO—CH3, (b) —CO—CH2—OH, (c) —CO—CH2—O—CO—(CH2)0-3—CH3; (4) α-R17-5:β-R17-6 where R17-5 and R17-6 are taken with the attached carbon atom to form a three member epoxide containing —O—CH2— where the attachment of the —O is at R17-6 in the β-orientation and the attachment of the CH2— is at R17-5 in the α-orientation; (5) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation; (6) —O—CH(OR17-9)—CH2—CH2 . . . where the bond from the oxygen (—O) is one of the four bonds at C-17 in the β-configuration and the bond from the methylene group (CH2 . . . ) is another of the four bonds at C-17 in the α-configuration to form a 5 member heterocycle containing one oxygen atom, where R17-9 is —H or C1-C3 alkyl; (7) α-R17-11:β-R17-12 where R17-10 is —(CH2)1-2—CH═CH2 and R17-12 is —OH;
- 256. A process for the preparation of a carboxylic acid (VI) according to claim 255 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-15 or R11-6 is —H.
- 257. A process for the preparation of a carboxylic acid (VI) according to claim 250 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O-R17-1-1.
- 258. A process for the preparation of a carboxylic acid (VI) according to claim 257 where R17 is:
(a) α-R17-7:β-R17-8 where R17-2 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-2 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 259. A process for the preparation of a carboxylic acid (VI) according to claim 250 where Rb is —H.
- 260. A process for the preparation of a carboxylic acid (VI) according to claim 250 where R7-2 is —H, C1 and iso-C3.
- 261. A process for the preparation of a carboxylic acid (VI) according to claim 260 where R7-2 is a mixture of —H, C1 and iso-C3.
- 262. A process for the preparation of a carboxylic acid (VI) according to claim 250 where the oxidatively cleaving agent is selected from the group consisting of:
(1) hydrogen peroxide with a carboxylic acid forming agent selected from the group consisting of:
(a) heat, (b) a base whose conjugate acid has a pKa of about 5 or above, (c) an acid which has a pKa of less than about 3, (d) an acylating agent and an acylation catalyst; (2) KHSO5; (3) hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are:
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members, and ketones of the formula: 215(4) hydrogen peroxide in combination with methyltrioxorhenium, (5) φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and Mo hexacarbonyl; (6) peracids selected from the group consisting of
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1-CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid, (d) magnesium peroxyphthalate.
- 263. A process for the preparation of a carboxylic acid (VI) according to claim 262 where the oxidatively cleaving agent is:
(1) hydrogen peroxide with a carboxylic acid forming agent.
- 264. A process for the preparation of a carboxylic acid (VI) according to claim 263 where the carboxylic acid forming agent is a base.
- 265. A process for the preparation of a carboxylic acid (VI) according to claim 264 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 266. A process for the preparation of a carboxylic acid (VI) according to claim 265 where the base is bicarbonate.
- 267. A process for the preparation of a carboxylic acid (VI) according to claim 263 where the carboxylic acid forming agent is an acid .
- 268. A process for the preparation of a carboxylic acid (VI) according to claim 267 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 269. A process for the preparation of a carboxylic acid (VI) according to claim 268 where the acid is formic acid and trifluoroacetic acid.
- 270. A process for the preparation of a carboxylic acid (VI) according to claim 263 where the carboxylic acid forming agent is an acylating agent.
- 271. A process for the preparation of a carboxylic acid (VI) according to claim 270 where the acylating agent is the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is
—H, C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 272. A process for the preparation of a carboxylic acid (VI) according to claim 271 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 273. A process for the preparation of a carboxylic acid (VI) according to claim 250 where when the reactant is a mixture including a hydroperoxy compound of the formula (IV-OOH)
- 274. A process for the preparation of a carboxylic acid (VI) according to claim 250 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and are
C1-C4 alkyl, phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, (C1-C4 alkyl)3 phosphite, (C1-C4 alkyl)3 phosphine, triphenylphosphine, hydrosulfite, thiourea, butyl vinyl ether, tetramethylethylene. zinc and acetic acid, tetramethylethylene and 2-methylfuran.
- 275. A process for the preparation of a carboxylic acid (VI) according to claim 274 where the hydroperoxy-deoxygenating agent is where Q1 and Q2 are both C1 alkyl and the deoxygenating agent is dimethylsulfide.
- 276. A process for the preparation of a carboxylic acid (VI) according to claim 250 where the carboxylic acid (VI) is:
17β-hydroxypregna-4,9(11)-dien-3-one-7α,21-dicarboxylic acid, γ-lactone.
- 277. A process for the preparation of a 5,7-lactone of formula (VII)
- 278. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached.
- 279. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 280. A process for the preparation of a 5,7-lactone (VII) according to claim 279 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 281. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 282. A process for the preparation of a 5,7-lactone (VII) according to claim 281 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 283. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where the reaction medium contains water and has a pH of from about 1 to about 5.
- 284. A process for the preparation of a 5,7-lactone (VII) according to claim 283 where the reaction medium contains either a strong acid of pKa less than about 2 or a catalytic amount of base.
- 285. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where the carboxylic acid (VI) is reacted with substantially anhydrous acid.
- 286. A process for the preparation of a 5,7-lactone (VII) according to claim 285 where the acid is present in an amount from catalytic to excess.
- 287. A process for the preparation of a 5,7-lactone (VII) according to claim 285 where the acid is selected from the group consisting of fluorosulfonic, chlorosulfonic, benzenesulfonic, p-toluenesulfonic, methanesulfonic, trifluoromethanesulfonic, trifluoroacetic, trichloroacetic, hydrochloric, sulfuric, phosphoric and nitric.
- 288. A process for the preparation of a 5,7-lactone (VII) according to claim 287 where the acid is benzenesulfonic, p-toluenesulfonic or methanesulfonic.
- 289. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where the carboxylic acid (VI) is reacted with aqueous acid in a two-phase system.
- 290. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where the carboxylic acid (VI) is reacted with a catalytic amount of base.
- 291. A process for the preparation of a 5,7-lactone (VII) according to claim 292 where the base is selected from the group consisting of hydroxide, bicarbonate, carbonate, DBU, DBN, DABCO, pyridine, p-dimethylaminopyridine, Q7-COO− where Q7 is —H, C1-C3 alkyl or -φ, (Q3)3N where Q3 is C1-C3 alkyl.
- 292. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the base is hydroxide, bicarbonate, carbonate, triethylamine or pyridine.
- 293. A process for the preparation of a 5,7-lactone (VII) according to claim 277 where the 5,7-lactone (VII) is obtained as a solid.
- 294. A process for the preparation of a 5,7-lactone of formula (VII)
- 295. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 296. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 297. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the reaction medium contains an acid which has a pKa of <about 4.
- 298. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the acid is selected from the group consisting of fluorosulfonic, chlorosulfonic, benzenesulfonic, p-toluenesulfonic, methanesulfonic, trifluoromethanesulfonic, trifluoroacetic, trichloroacetic, hydrochloric, sulfuric, phosphoric and nitric.
- 299. A process for the preparation of a 5,7-lactone (VII) according to claim 298 where the acid is benzenesulfonic, p-toluenesulfonic or methanesulfonic.
- 300. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the carboxylic acid (VI) is reacted with the acid in a two-phase system.
- 301. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the carboxylic acid (VI) is reacted with a catalytic amount of base.
- 302. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the base is selected from the group consisting of hydroxide, bicarbonate, carbonate, DBU, DBN, DABCO, pyridine, p-dimethylaminopyridine, Q7-COO− where Q7 is —H, C1-C3 alkyl or -φ, (Q3)3N where Q3 is C1-C3 alkyl.
- 303. A process for the preparation of a 5,7-lactone (VII) according to claim 294 where the 5,7-lactone (VII) is obtained as a solid.
- 304. A process for the preparation of a 5,7-lactone (VII) according to claim 303 where the solid is crystalline.
- 305. A process for the preparation of a 5,7-lactone of formula (VII)
- 306. A process for the preparation of a 5,7-lactone (VII) according to claim 305 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 307. A process for the preparation of a 5,7-lactone (VII) according to claim 305 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 308. A process for the preparation of a 5,7-lactone (VII) according to claim 306 where the acid has a pKa of <about 4.
- 309. A process for the preparation of a 5,7-lactone (VII) according to claim 305 where the 5,7-lactone (VII) is a solid.
- 310. A process for the preparation of a methyl ester of formula (VIII)
- 311. A process for the preparation of a methyl ester (VIII) according to claim 310 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 312. A process for the preparation of a methyl ester (VIII) according to claim 311 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 313. A process for the preparation of a methyl ester (VIII) according to claim 310 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the —CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 314. A process for the preparation of a methyl ester (VIII) according to claim 313 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the —CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 315. A process for the preparation of a methyl ester (VIII) according to claim 310 where the amount of the methylating agent is the same as the number of equivalents of base used or a very slight excess over that.
- 316. A process for the preparation of a methyl ester (VIII) according to claim 310 where the methylating agent is selected from the group consisting of dimethylsulfate, methyl iodide, methyl bromide, trimethylphosphate, dimethylcarbonate and methyl chloroformate.
- 317. A process for the preparation of a methyl ester (VIII) according to claim 316 where the methylating agent is dimethylsulfate.
- 318. A process for the preparation of a methyl ester (VIII) according to claim 310 where the amount of base is from about 1 to about 1.5 equivalents.
- 319. A process for the preparation of a methyl ester (VIII) according to claim 310 where the base is selected from the group consisting of bicarbonate, carbonate, hydroxide and RbaseO− where Rbase is C1-C4 alkyl.
- 320. A process for the preparation of a methyl ester (VIII) according to claim 319 where the base is bicarbonate.
- 321. A process for the preparation of a methyl ester (VIII) according to claim 310 where the methyl ester (VIII) is:
17β-Hydroxy-7α-carbomethoxypregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 322. A process for the preparation of a carboxylic acid of the formula (VI)
- 323. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 322 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 324. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 323 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 325. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 322 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 326. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 325 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the —CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 327. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 322 where the pH is kept >7 with a base which is selected from the group consisting of bicarbonate, carbonate, hydroxide and RbaseO− where Rbase is C1-C4 alkyl.
- 328. A process for the preparation of a carboxylic acid (VI) or a pharmaceutically acceptable salts there of according to claim 327 where the base is bicarbonate.
- 329. A process for the preparation of a cis-oxyenedione of the formula (X-cis)
- 330. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 331. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 330 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 332. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H. (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 333. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 332 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 334. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 335. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 334 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 336. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the adduct is of formula (A1)
- 337. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 336 where X1 is —O—.
- 338. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 336 where Rb and Rc are —H.
- 339. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 336 where Rd is C1 alkyl.
- 340. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 336 where Ra is —H.
- 341. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the adduct is of formula (A2)
- 342. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 341 where X1 is —O—.
- 343. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 341 where Rb and Rd are C1 alkyl.
- 344. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 341 where Rc is —H.
- 345. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 341 where Ra is —H.
- 346. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the adduct is (B)
- 347. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the adduct is (C)
- 348. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the adduct is selected from the group consisting of (D1), (D2) and (D3)
- 349. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and are
C1-C4 alkyl, phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, (C1-C4 alkyl)3 phosphite, (C1-C4 alkyl)3 phosphine, triphenylphosphine, hydrosulfite, thiourea, butyl vinyl ether, tetramethylethylene. zinc and acetic acid, tetramethylethylene and 2-methylfuran.
- 350. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 349 where the hydroperoxy-deoxygenating agent is selected from the group consisting of trimethylphosphite, tributylphosphite, triphenylphosphine and tributylphosphine.
- 351. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 350 where the hydroperoxy-deoxygenating agent is trimethylphosphite.
- 352. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the alcohol is C1 and C3 alcohols.
- 353. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 352 where the alcohol is a C1 alcohol.
- 354. A process for the preparation of a cis-oxyenedione (X-cis) according to claim 329 where the cis-oxyenedione (X-cis) is:
17β-hydroxy-7α-(cis-3′-acetoxyacryloyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 355. A process for the preparation of a trans-oxyenedione of the formula (X-trans)
- 356. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 357. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 356 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 358. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 359. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 358 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 360. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 361. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 360 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 362. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where Rb and Rc are —H.
- 363. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where Rd is C1 alkyl.
- 364. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where the isomerization catalyst is a strong acid.
- 365. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 354 where the strong acid is selected from the group consisting of hydrochloric acid, hydrobromic acid, hydroiodoic acid, hydrofluoroic acid, sulfuric acid, phosphoric acid, nitric acid, trichloroacetic acid and trifluoroacetic acid.
- 366. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 365 where the strong acid is hydrochloric acid.
- 367. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where the tertiary amine is selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine, p-dimethylaminopyridine and pyrrolidinylpyridine.
- 368. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 367 where the tertiary amine is pyridine hydrochloride.
- 369. A process for the preparation of a trans-oxyenedione (X-trans) according to claim 355 where the trans-oxyenedione (X-trans) is
17β-hydroxy-7α-(trans-3′-acetoxyacryloyl)-pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 370. A process for the preparation of a hydroxy compound of formula (IV-OH)
- 371. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic (VI) or mixture thereof according to claim 370 where the product is the hydroxy compound (IV-OH).
- 372. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic (VI) or mixture thereof according to claim 370 where the product is the hydroperoxy compound (IV-OOH).
- 373. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic (VI) or mixture thereof according to claim 370 where the product is the biscarbonyl compound (V).
- 374. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic (VI) or mixture thereof according to claim 370 where the product is the carboxylic acid (VI).
- 375. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic (VI) or mixture thereof according to claim 370 where the product is a mixture of two of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound of formula (V) or the carboxylic (VI).
- 376. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 375 where the product is a mixture of the hydroxy compound (IV-OH) and the hydroperoxy compound (IV-OOH).
- 377. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the product is a mixture of three of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound of formula (V) or the carboxylic (VI).
- 378. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 377 where the product is a mixture of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH) and the carboxylic (VI).
- 379. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the product is a mixture of all four of the hydroxy compound (IV-OH), the hydroperoxy compound (IV-OOH), the biscarbonyl compound of formula (V) and the carboxylic (VI).
- 380. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 381. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 380 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 382. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H, (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 383. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 382 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 384. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 385. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 384 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 386. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where Rb and Rc are —H.
- 387. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where Rd is C1 alkyl.
- 388. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 370 where R7-2 is —H, C1 and iso-C3.
- 389. A hydroxy compound (IV-OH) or hydroperoxy compound (IV-OOH) according to claim 388 where R7-2 is a mixture of —H, C1 and iso-C3.
- 390. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the reaction mixture is cooled to about 0°.
- 391. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 390 where the reaction mixture is cooled to about −100° to about −10°.
- 392. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 391 where the reaction mixture is cooled to about −78° to about −20°.
- 393. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 392 where the reaction mixture is cooled to about −50°.
- 394. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 390 where the cooling is maintained during step (2).
- 395. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the ozone is used as an ozone/oxygen mixture.
- 396. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the contacting is performed by reacting the cis-oxyenedione (X-cis) or trans-oxyenedione (X-trans) or mixture there of, (1) with the alcohol R7-2—OH, and (2) contacting the mixture of step (1) with ozone.
- 397. A process for the preparation of a hydroxy compound (IV-OH), or a hydroperoxy compound (IV-OOH), or a biscarbonyl compound of formula (V), or a carboxylic of formula (VI) or mixture thereof according to claim 370 where the products produced is
17β-hydroxy-7α-(2′-hydroperoxy-2′-methoxyacetyl)pregna-4,9(11)-dien-3-one-21-carboxylic acid, γ-lactone.
- 398. A process to prepare a carboxylic acid of formula (VI)
- 399. A process to prepare a carboxylic acid (VI) according to claim 398 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 400. A process to prepare a carboxylic acid (VI) according to claim 399 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 401. A process to prepare a carboxylic acid (VI) according to claim 398 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H. (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 402. A process to prepare a carboxylic acid (VI) according to claim 401 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 403. A process to prepare a carboxylic acid (VI) according to claim 398 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 404. A process to prepare a carboxylic acid (VI) according to claim 403 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 405. A process to prepare a carboxylic acid (VI) according to claim 403 where the adduct is of formula (A1)
- 406. A process to prepare a carboxylic acid (VI) according to claim 405 where X1 is —O—.
- 407. A process to prepare a carboxylic acid (VI) according to claim 405 where Rb and Rc are —H.
- 408. A process to prepare a carboxylic acid (VI) according to claim 405 where Rd is C1 alkyl.
- 409. A process to prepare a carboxylic acid (VI) according to claim 405 where Ra is —H.
- 410. A process to prepare a carboxylic acid (VI) according to claim 398 where the adduct is of formula (A2)
- 411. A process to prepare a carboxylic acid (VI) according to claim 410 where X1 is —O—.
- 412. A process to prepare a carboxylic acid (VI) according to claim 410 where Rb and Rd are C1 alkyl.
- 413. A process to prepare a carboxylic acid (VI) according to claim 410 where Rc is —H.
- 414. A process to prepare a carboxylic acid (VI) according to claim 410 where Ra is —H.
- 415. A process to prepare a carboxylic acid (VI) according to claim 398 where the adduct is (B)
- 416. A process to prepare a carboxylic acid (VI) according to claim 398 where the adduct is (C)
- 417. A process to prepare a carboxylic acid (VI) according to claim 398 where the adduct is selected from the group consisting of (D1), (D2) and (D3)
- 418. A process to prepare a carboxylic acid (VI) according to claim 398 where the oxygen donating agent is selected from the group consisting of:
a peracid, singlet oxygen followed by either phosphite or thiourea, triplet oxygen, hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, and where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members and ketones of the formula: 248hydrogen peroxide in combination with methyltrioxorhenium, trichloroacetonitrile/hydrogen peroxide, trichloroacetamide/hydrogen peroxide, DDQ/water, p-chloranil/water, φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and MO hexacarbonyl.
- 419. A process to prepare a carboxylic acid (VI) according to claim 418 where the oxygen donating agent is a peracid.
- 420. A process to prepare a carboxylic acid (VI) according to claim 419 where the peracid is selected from the group consisting of:
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid and (d) magnesium peroxyphthalate.
- 421. A process to prepare a carboxylic acid (VI) according to claim 398 where the halogenating agent is selected from the group consisting of:
dibromodimethylhydantoin, dichlorodimethylhydantoin, diiododimethylhydantoin, N-chlorosuccinamide, N-bromosuccinamide, N-iodosuccinamide, trichloroisocyanuric acid, t-butylhypochlorite, 3-bromo-1-chloro-5,5-dimethylhydantoin.
- 422. A process to prepare a carboxylic acid (VI) according to claim 421 where the halogenating agent is dibromodimethylhydantoin.
- 423. A process to prepare a carboxylic acid (VI) according to claim 398 where at least one equivalent of the halogenating agent is used.
- 424. A process to prepare a carboxylic acid (VI) according to claim 423 where from about 1.0 to about 1.05 equivalents of the halogenating agent are used.
- 425. A process to prepare a carboxylic acid (VI) according to claim 398 where the base is selected from the group consisting of acetate, bicarbonate, carbonate, propionate, benzoate, dibasic phosphate and borate.
- 426. A process to prepare a carboxylic acid (VI) according to claim 425 where the base is acetate.
- 427. A process to prepare a carboxylic acid (VI) according to claim 398 where the quinone is selected from the group consisting of DDQ, p-chloranil and o-chloranil.
- 428. A process to prepare a carboxylic acid (VI) according to claim 427 where the quinone is p-chloranil.
- 429. A process to prepare a carboxylic acid (VI) according to claim 398 where the nonquinone oxidant is selected from the group consisting of Mn+3, Mn+7, Pb+4, Pd+2, Ru+8, Cr+6, ceric ammonium nitrate, iodosobenzene, iodobenzenebistrifluoroacetate, iodobenzenediacetate, tritylfluoroborate.
- 430. A process to prepare a carboxylic acid (VI) according to claim 398 where the temperature of the reaction mixture for step (2) is from about −100° to about 40°.
- 431. A process to prepare a carboxylic acid (VI) according to claim 430 where the temperature of the reaction mixture for step (2) is cooled to about −78° to about −20°.
- 432. A process to prepare a carboxylic acid (VI) according to claim 431 where the temperature of the reaction mixture is cooled to about −50°.
- 433. A process to prepare a carboxylic acid (VI) according to claim 398 where the cooling is maintained during step (2).
- 434. A process to prepare a carboxylic acid (VI) according to claim 398 where the ozone is used as an ozone/oxygen mixture.
- 435. A process to prepare a carboxylic acid (VI) according to claim 398 where the contacting of step (2) is performed by contacting the mixture of step (1), first with the alcohol R7-2—OH, and then with the ozone.
- 436. A process to prepare a carboxylic acid (VI) according to claim 398 where R7-2 is —H, C1 and iso-C3.
- 437. A process to prepare a carboxylic acid (VI) according to claim 436 where R7-2 is a mixture of —H, C1 and iso-C3.
- 438. A process to prepare a carboxylic acid (VI) according to claim 398 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and are
C1-C4 alkyl, phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, (C1-C4 alkyl)3 phosphite, (C1-C4 alkyl)3 phosphine, triphenylphosphine, hydrosulfite, thiourea, butyl vinyl ether, tetramethylethylene. zinc and acetic acid, tetramethylethylene and 2-methylfuran.
- 439. A process to prepare a carboxylic acid (VI) according to claim 438 where Q1 and Q2 are both C1 alkyl and the hydroperoxy-deoxygenating agent is dimethylsulfide.
- 440. A process to prepare a carboxylic acid (VI) according to claim 398 where the oxidatively cleaving agent is selected from the group consisting of:
(1) hydrogen peroxide with a carboxylic acid forming agent selected from the group consisting of:
(a) heat, (b) a base whose conjugate acid has a pKa of about 5 or above, (c) an acid which has a pKa of less than about 3, (d) an acylating agent and an acylation catalyst; (2) KHSO5; (3) hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are:
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members, and ketones of the formula: 249(4) hydrogen peroxide in combination with methyltrioxorhenium, (5) φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and Mo hexacarbonyl; (6) peracids selected from the group consisting of
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid, (d) magnesium peroxyphthalate.
- 441. A process to prepare a carboxylic acid (VI) according to claim 440 where the oxidatively cleaving agent is:
(1) hydrogen peroxide with a carboxylic acid forming agent.
- 442. A process to prepare a carboxylic acid (VI) according to claim 441 where the carboxylic acid forming agent is a base.
- 443. A process to prepare a carboxylic acid (VI) according to claim 442 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 444. A process to prepare a carboxylic acid (VI) according to claim 443 where the base is bicarbonate.
- 445. A process to prepare a carboxylic acid (VI) according to claim 441 where the carboxylic acid forming agent is an acid.
- 446. A process to prepare a carboxylic acid (VI) according to claim 445 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 447. A process to prepare a carboxylic acid (VI) according to claim 446 where the acid is formic acid and trifluoroacetic acid.
- 448. A process to prepare a carboxylic acid (VI) according to claim 441 where the carboxylic acid forming agent is an acylating agent.
- 449. A process to prepare a carboxylic acid (VI) according to claim 448 where the acylating agent is the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is —H, C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 450. A process to prepare a carboxylic acid (VI) according to claim 449 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 451. A process to prepare a carboxylic acid (VI) according to claim 398 where the carboxylic acid (VI) is
17β-hydroxypregna-4,9(11)-dien-3-one-7α,21-dicarboxylic acid, γ-lactone.
- 452. A process to prepare a carboxylic acid of formula (VI)
- 453. A process to prepare a carboxylic acid (VI) according to claim 452 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 454. A process to prepare a carboxylic acid (VI) according to claim 453 where R3, R4, R5 and R6 are:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H.
- 455. A process to prepare a carboxylic acid (VI) according to claim 452 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H. (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 456. A process to prepare a carboxylic acid (VI) according to claim 455 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and other of R11-5 or R11-6 is —H.
- 457. A process to prepare a carboxylic acid (VI) according to claim 452 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 458. A process to prepare a carboxylic acid (VI) according to claim 457 where R17 is:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation.
- 459. A process to prepare a carboxylic acid (VI) according to claim 452 where the adduct is of formula (A1)
- 460. A process to prepare a carboxylic acid (VI) according to claim 459 where X1 is —O—.
- 461. A process to prepare a carboxylic acid (VI) according to claim 459 where Rb and Rc are —H.
- 462. A process to prepare a carboxylic acid (VI) according to claim 459 where Rd is C1 alkyl.
- 463. A process to prepare a carboxylic acid (VI) according to claim 459 where Ra is —H.
- 464. A process to prepare a carboxylic acid (VI) according to claim 452 where the adduct is of formula (A2)
- 465. A process to prepare a carboxylic acid (VI) according to claim 464 where X1 is —O—.
- 466. A process to prepare a carboxylic acid (VI) according to claim 464 where Rb and Rd are C1 alkyl.
- 467. A process to prepare a carboxylic acid (VI) according to claim 464 where Rc is —H.
- 468. A process to prepare a carboxylic acid (VI) according to claim 464 where Ra is —H.
- 469. A process to prepare a carboxylic acid (VI) according to claim 452 where the adduct is (B)
- 470. A process to prepare a carboxylic acid (VI) according to claim 452 where the adduct is (C)
- 471. A process to prepare a carboxylic acid (VI) according to claim 452 where the adduct is selected from the group consisting of (D1), (D2) and (D3)
- 472. A process to prepare a carboxylic acid (VI) according to claim 452 where the temperature of the reaction mixture for step (1) is from about −100° to about 40°.
- 473. A process to prepare a carboxylic acid (VI) according to claim 472 where the temperature of the reaction mixture for step (1) is cooled to about −78° to about −20°.
- 474. A process to prepare a carboxylic acid (VI) according to claim 473 where the temperature of the reaction mixture is cooled to about −50°.
- 475. A process to prepare a carboxylic acid (VI) according to claim 472 where the cooling is maintained during step (1).
- 476. A process to prepare a carboxylic acid (VI) according to claim 452 where the ozone is used as an ozone/oxygen mixture.
- 477. A process to prepare a carboxylic acid (VI) according to claim 452 where the contacting of step (1) is performed by reacting the 7α-substituted steroid (II) first with the alcohol R7-2—OH, and then with the ozone.
- 478. A process to prepare a carboxylic acid (VI) according to claim 452 where R7-2 is —H, C1 and iso-C3.
- 479. A process to prepare a carboxylic acid (VI) according to claim 478 where R7-2 is a mixture of —H, C1 and iso-C3.
- 480. A process to prepare a carboxylic acid (VI) according to claim 452 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and are
C1-C4 alkyl, phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, (C1-C4 alkyl)3 phosphite, (C1-C4 alkyl)3 phosphine, triphenylphosphine, hydrosulfite, thiourea, butyl vinyl ether, tetramethylethylene. zinc and acetic acid, tetramethylethylene and 2-methylfuran.
- 481. A process to prepare a carboxylic acid (VI) according to claim 480 where Q1 and Q2 are both C1 alkyl and the hydroperoxy-deoxygenating agent is dimethylsulfide.
- 482. A process to prepare a carboxylic acid (VI) according to claim 452 where the oxidatively cleaving agent is selected from the group consisting of:
(1) hydrogen peroxide with a carboxylic acid forming agent selected from the group consisting of:
(a) heat, (b) a base whose conjugate acid has a pKa of about 5 or above, (c) an acid which has a pKa of less than about 3, (d) an acylating agent and an acylation catalyst; (2) KHSO5; (3) hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are:
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members, and ketones of the formula: 256(4) hydrogen peroxide in combination with methyltrioxorhenium, (5) φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and Mo hexacarbonyl; (6) peracids selected from the group consisting of
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid, (d) magnesium peroxyphthalate.
- 483. A process to prepare a carboxylic acid (VI) according to claim 482 where the oxidatively cleaving agent is:
(1) hydrogen peroxide with a carboxylic acid forming agent.
- 484. A process to prepare a carboxylic acid (VI) according to claim 483 where the carboxylic acid forming agent is a base.
- 485. A process to prepare a carboxylic acid (VI) according to claim 484 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 486. A process to prepare a carboxylic acid (VI) according to claim 485 where the base is bicarbonate.
- 487. A process to prepare a carboxylic acid (VI) according to claim 483 where the carboxylic acid forming agent is an acid.
- 488. A process to prepare a carboxylic acid (VI) according to claim 487 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 489. A process to prepare a carboxylic acid (VI) according to claim 488 where the acid is formic acid and trifluoroacetic acid.
- 490. A process to prepare a carboxylic acid (VI) according to claim 483 where the carboxylic acid forming agent is an acylating agent.
- 491. A process to prepare a carboxylic acid (VI) according to claim 490 where the acylating agent is the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is —H, C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 492. A process to prepare a carboxylic acid (VI) according to claim 490 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 493. A process to prepare a carboxylic acid (VI) according to claim 452 where the carboxylic acid (VI) is
17β-hydroxypregna-4,9(11)-dien-3-one-7α,21-dicarboxylic acid, γ-lactone.
- 494. A process to prepare a carboxylic acid (VI) according to claim 452 where the carboxylic acid (VI) is subjected to a reaction medium which has a pH of less than about 5 to obtain a bislactone of formula (VII)
- 495. A process to prepare a carboxylic acid (VI) according to claim 494 where the reaction medium contains water and has a pH of less than about 5.
- 496. A process to prepare a carboxylic acid (VI) according to claim 495 where the reaction medium contains either a strong acid of pKa less than about 2 or a catalytic amount of base.
- 497. A process to prepare a carboxylic acid (VI) according to claim 496 where the carboxylic acid (VI) is reacted with aqueous acid.
- 498. A process to prepare a carboxylic acid (VI) according to claim 497 where the acid is present in an amount from catalytic to excess.
- 499. A process to prepare a carboxylic acid (VI) according to claim 497 where the acid is selected from the group consisting of fluorosulfonic, chlorosulfonic, benzenesulfonic, p-toluenesulfonic, methanesulfonic, trifluoromethanesulfonic, trifluoroacetic, trichloroacetic, hydrochloric, sulfuric, phosphoric and nitric.
- 500. A process to prepare a carboxylic acid (VI) according to claim 499 where the benzenesulfonic, p-toluenesulfonic or methanesulfonic.
- 501. A process for the preparation of a carboxylic acid of formula (VI)
- 502. A process for the preparation of a carboxylic acid (VI) according to claim 501 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 503. A process for the preparation of a carboxylic acid (VI) according to claim 501 where R9 and R11 are:
(a) R11 is R11-5:R11-6 where one of R11-5 or R11-6 and R9 are taken together with R9 to form a second bond between C-9 and C-11 and the other of R11-5 or R11-6 is —H; (b) α-R11-7:β-R11-8 where R11-7 and R9 are taken together with —O— to form an epoxide between C-9 and C-11 and R11-8 is —H. (c) R9 is —H and R11 is α-R11-1:β-R11-2 where R11-1 is —O—R11-3 where R11-3 is —H, and where R11-2 is —H.
- 504. A process for the preparation of a carboxylic acid (VI) according to claim 501 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) α-R17-1:β-R17-2 where R17-1 is —C≡C—H and where R17-2 is —OH; (d) —C≡C—CH2—O—R17-1-1.
- 505. A process for the preparation of a carboxylic acid (VI) according to claim 250 where Rb and Rc are —H.
- 506. A process for the preparation of a carboxylic acid (VI) according to claim 250 where Rd is C1 alkyl.
- 507. A process for the preparation of a carboxylic acid (VI) according to claim 501 where the oxidatively cleaving agent is selected from the group consisting of:
(1) hydrogen peroxide with a carboxylic acid forming agent selected from the group consisting of:
(a) heat, (b) a base whose conjugate acid has a pKa of about 5 or above, (c) an acid which has a pKa of less than about 3, (d) an acylating agent and an acylation catalyst; (2) KHSO5; (3) hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are:
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members, and ketones of the formula: 262(4) hydrogen peroxide in combination with methyltrioxorhenium, (5) φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and Mo hexacarbonyl; (6) peracids selected from the group consisting of
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid, (d) magnesium peroxyphthalate.
- 508. A process for the preparation of a carboxylic acid (VI) according to claim 507 where the oxidatively cleaving agent is:
(1) hydrogen peroxide with a carboxylic acid forming agent.
- 509. A process for the preparation of a carboxylic acid (VI) according to claim 508 where the carboxylic acid forming agent is a base.
- 510. A process for the preparation of a carboxylic acid (VI) according to claim 509 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 511. A process for the preparation of a carboxylic acid (VI) according to claim 510 where the base is bicarbonate.
- 512. A process for the preparation of a carboxylic acid (VI) according to claim 508 where the carboxylic acid forming agent is an acid.
- 513. A process for the preparation of a carboxylic acid (VI) according to claim 512 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 514. A process for the preparation of a carboxylic acid (VI) according to claim 513 where the acid is formic acid and trifluoroacetic acid.
- 515. A process for the preparation of a carboxylic acid (VI) according to claim 508 where the carboxylic acid forming agent is an acylating agent.
- 516. A process for the preparation of a carboxylic acid (VI) according to claim 515 where the acylating agent is the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is
—H. C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 517. A process for the preparation of a carboxylic acid (VI) according to claim 516 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 518. A process for the preparation of a Δ9(11)-17-lactone of the formula (CII)
- 519. A process for the preparation of a Δ9(11)-17-lactone (CII) according to claim 518 where Z1 and Z2 are C1-C3 alkyl.
- 520. A process for the preparation of a Δ9(11)-17-lactone (CII) according to claim 519 where Z1 and Z2 are C1 alkyl.
- 521. A process for the preparation of a Δ9(11)-17-lactone (CII) according to claim 519 where Z1 and Z2 are C2 alkyl.
- 522. A process for the preparation of a Δ9(11)-17-lactone (CII) according to claim 521 where the N-fluoroalkylamine (CVI) is N-(1,1,2,3,3,3)hexafluoropropyl)diethylamine.
- 523. A process for the preparation of a Δ9(11)-17-lactone (CII) according to claim 520 where the N-fluoroalkylamine (CVI) is 1,1,2,2-tetrafluoroethyl-N,N-dimethylamine.
- 524. A process for the preparation of a Δ9(11)-steroid (CV)
- 525. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 524 where Z1 and Z2 are C1-C3 alkyl.
- 526. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 525 where Z1 and Z2 are C1 alkyl.
- 527. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 525 where Z1 and Z2 are C2 alkyl.
- 528. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 527 where the N-fluoroalkylamine (CVI) is N-(1,1,2,3,3,3)hexafluoropropyl)diethylamine.
- 529. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 526 where the N-fluoroalkylamine (CVI) is 1,1,2,2-tetrafluoroethyl-N,N-dimethylamine.
- 530. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 524 where the steroid A-ring is
- 531. A process for the preparation of a Δ9(11)-compound (IV) according to claim 530 where the steroid A-ring is
(1) W1 is —H:—H and W2 is —H:—H or W1 is W1-1:W1-2 and W2 is W2-1:W2-2 where one of W1-1 or W1-2 is taken together with one of W2-1 or W2-2 to form a second bond between the carbon atoms to which they are attached and the other or W1-1 or W1-2 and W2-1 or W2-2 is —H; W3 is ═O, W4 is W4-1:W4-2 where one of W4-1 and W4-2 is taken together with W5 to form a second bond between the carbon atoms to which they are attached and the other of W4-1 and W4-2 is —H; (2) W3 is α-W3-9:β-W3-10; where W3-9 is —H and W3-10 is:
(a) —O—CO—O—W3-10A where W3-10A is C1-C3 alkyl, (b) —CO—O—W3-10B where W3-10B is
(i) C1-C4 alkyl, (ii) -φ optionally substituted with one thru three C1-C3 alkyl, —F, —Cl, —Br, —I, C1-C3 alkoxy, (iii) —CH2-φ where φ is optionally substituted with one thru three C1-C3 alkyl, —F, —Cl, —Br, —I, C1-C3 alkoxy; where WR4 is —H:—H; and W5 forms a second bond between the carbon atoms at C5 and C6; and where W1 and W2 are as defined above.
- 532. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 531 where the steroid A-ring is
(1) W1 is —H:—H and W2 is —H:—H or W1 is W1-1:W1-2 and W2 is W2-1:W2-2 where one of W1-1 or W1-2 is taken together with one of W2-1 or W2-2 to form a second bond between the carbon atoms to which they are attached and the other or W1-1 or W1-2 and W2-1 or W2-2 is —H; W3 is ═O, W4 is W4-1:W4-2 where one of W4-1 and W4-2 is taken together with W5 to form a second bond between the carbon atoms to which they are attached and the other of W4-1 and W4-2 is —H;
- 533. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 524 where the steroid D-ring is
- 534. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 533 where W17 is:
(1) ═O, (2) α-W17-1:β-W17-2 where:
(a) W17-1 and W17-2 are taken together with the attached carbon atom to form an epoxide of the formula . . . CH2—O—, (b) W17-1 and W17-2 are taken together with the attached carbon atom to form a lactone of the formula . . . CH2—CH2—CO—O—.
- 535. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 534 where W17 is:
(1) ═O, (2) α-W17-1:β-W17-2 where:
(b) W17-1 and W17-2 are taken together with the attached carbon atom to form a lactone of the formula . . . CH2—CH2—CO—O—.
- 536. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 533 where W17 is:
(3) α-W17-3:β-W17-4 where
(a) W17-3 is:
(i) —H, (ii) —O—CO—W17-3A where W17-3A is —H or —CO—W17-3B where W17-3B is C1-C4 alkyl or -φ and (b) W17-4 is —CO—CH3.
- 537. A process for the preparation of a Δ9(11)-compound (IV) according to claim 533 where W17 is:
(4) α-W17-5:β-W17-6 where
(a) W17-5 is:
(i) —O—CO—W17-5A where W17-5A is C1-C4 alkyl or -φ, (b) W17-6 is:
(i) —CO—CH2—O—W17-6A where W17-6A is C1-C4 alkyl or -φ.
- 538. A process for the preparation of a Δ9(11)-steroid (CV) according to claim 524 where the Δ9(11)-steroid (CV) is
17β-hydroxypregna-4,9(11)-dien-3-one-7α,21-dicarboxylic acid, γ-lactone, methyl ester.
- 539. A process for the preparation of a Δ9(11)-7α-substituted steroid of the formula (II)
- 540. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 539 where Z1 and Z2 are C1-C3 alkyl.
- 541. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 540 where Z1 and Z2 are C1 alkyl.
- 542. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 540 where Z1 and Z2 are C2 alkyl.
- 543. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 542 where the N-fluoroalkylamine (CVI) is N-(1,1,2,3,3,3)hexafluoropropyl)diethylamine.
- 544. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 541 where the N-fluoroalkylamine (CVI) is 1,1,2,2-tetrafluoroethyl-N,N-dimethylamine.
- 545. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 539 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 546. A process for the preparation of a Δ9(11)-7α-substituted steroid (II) according to claim 539 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation. (b) ═O; (c) —C≡C—CH2—O—R17-1-1.
- 547. A process for the preparation of a Δ9(11)-7α-substituted steroid (TI) according to claim 539 where the Δ9(11)-7α-substituted steroid (11) is 17β-hydroxy-7α-(5′-methyl-2′-furyl)-pregna-4,9-dien-3-one-21-carboxylic acid, γ-lactone.
- 548. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans)
- 549. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 548 where Z1 and Z2 are C1-C3 alkyl.
- 550. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 549 where Z1 and Z2 are C1 alkyl.
- 551. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 549 where Z1 and Z2 are C2 alkyl.
- 552. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 551 where the N-fluoroalkylamine (CVI) is N-(1,1,2,3,3,3)hexafluoropropyl)diethylamine.
- 553. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 550 where the N-fluoroalkylamine (CVI) is 1,1,2,2-tetrafluoroethyl-N,N-dimethylamine.
- 554. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 548 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 555. A process for the preparation of a Δ9(11)-trans enedione of the formula (III-trans) according to claim 548 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation; (b) ═O; (c) —C≡C—CH2—O—R17-1-1.
- 556. A process to prepare a Δ9(11)-carboxylic acid of the formula (VI)
- 557. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 556 where Z1 and Z2 are C1-C3 alkyl.
- 558. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 557 where Z1 and Z2 are C1 alkyl.
- 559. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 557 where Z1 and Z2 are C2 alkyl.
- 560. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 559 where the N-fluoroalkylamine (CVI) is N-(1,1,2,3,3,3)hexafluoropropyl)diethylamine.
- 561. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 558 where the N-fluoroalkylamine (CVI) is 1,1,2,2-tetrafluoroethyl-N,N-dimethylamine.
- 562. process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 556 where R3, R4, R5 and R6 are selected from the group consisting of:
(I) R3 is ═O; R4 is R4-1:R4-2 where one of R4-1 and R4-2 is —H and the other of R4-1 and R4-2 is taken together with R5 to form a second bond between the carbon atoms to which they are attached; R6 is —H:—H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 5 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 0; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H; (III) R3 is α-R3-5:β-R3-6 where R3-5 is —O—R31 and R3-6 is —O—R32 where R31 and R32 are taken with the attached —O—C—O— to form a cyclic ketal of 6 atoms of the formula —(CH2)—(CR33R34)n1—(CH2)— where n1 is 1 and R33 and R34 are both C1 alkyl; R4 is —H:—H; R6 is R6-5:R6-6 where one of R6-5 and R6-6 is taken together with R5 to form a second bond between the carbon atoms to which they are attached and the other of R6-5 and R6-6 is —H.
- 563. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 556 where R17 is selected from the group consisting of:
(a) α-R17-7:β-R17-8 where R17-7 and R17-8 are taken with the attached carbon atom to form a five member lactone containing —O—CO—CH2—CH2— where the attachment of the CH2— is at R17-7 in the α-orientation and the attachment of the —O is at R17-8 in the β-orientation; (b) ═O; (c) —C≡C—CH2—O—R17-1-1.
- 564. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 556 where the oxidatively cleaving agent is selected from the group consisting of:
(1) hydrogen peroxide with a carboxylic acid forming agent selected from the group consisting of:
(a) heat, (b) a base whose conjugate acid has a pKa of about 5 or above, (c) an acid which has a pKa of less than about 3, (d) an acylating agent and an acylation catalyst; (2) KHSO5; (3) hydrogen peroxide with a ketone selected from the group consisting of Q4-CO-Q5 where Q4 and Q5 are the same or different and are:
C1-C4 alkyl optionally substituted with 1 thru 9 —Cl or —F, where the Q4 and Q5 are taken together with the attached carbon atom to form a cyclic ketone of 5 thru 7 members, and ketones of the formula: 286(4) hydrogen peroxide in combination with methyltrioxorhenium, (5) φ-C(CH3)2—O—OH or an alkylhydroperoxide in combination with a metal containing activator, where alkyl is from C4-C10 alkyl and metal containing activator is selected from the group consisting of Ti(isopropoxide)4, peroxotungstophosphate, VO(acetylacetonate)2 and Mo hexacarbonyl; (6) peracids selected from the group consisting of
(a) perbenzoic acid optionally substituted with 1 or 2 —Cl or —NO2, (b) percarboxylic acids of the formula Cn2(Q6)2n2+1—CO3H where n2 is 1 thru 4 and Q6 is —H, —Cl or —F, (c) perphthalic acid, (d) magnesium peroxyphthalate.
- 565. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 564 where the oxidatively cleaving agent is:
(1) hydrogen peroxide with a carboxylic acid forming agent.
- 566. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 565 where the carboxylic acid forming agent is a base.
- 567. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 566 where the is base is an inorganic base selected from the group consisting of hydroxide, bicarbonate, and carbonate and organic bases selected from the group consisting of (Q3)3N were Q3 is C1-C3 alkyl, DBU, DBN, DABCO, pyridine and p-dimethylaminopyridine.
- 568. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 557 where the base is bicarbonate.
- 569. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 565 where the carboxylic acid forming agent is an acid.
- 570. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 569 where the acid is selected from the group consisting of hydrochloric acid, sulfuric acid, phosphoric acid, nitric acid and organic acids of the formula of Racid-1—COOH where Racid-1 is —H and C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F.
- 571. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 570 where the acid is formic acid and trifluoroacetic acid.
- 572. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 565 where the carboxylic acid forming agent is an acylating agent.
- 573. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 572 where the acylating agent is the acylating agent is selected from the group consisting of Racid-2—CO—O—CO—Racid-2 where Racid-2 is
—H, C1-C3 alkyl optionally substituted with 1 thru 3 —Cl and —F and -φ.
- 574. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 573 where the acylating agent is acetic anhydride or trifluoracetic anhydride.
- 575. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 556 where when the reactant is a mixture including a 11α-hydroxy-hydroperoxy compound, the mixture is first treated with a hydroperoxy-deoxygenating agent.
- 576. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 575 where the hydroperoxy-deoxygenating agent is selected from the group consisting of:
Q1Q2S where Q1 and Q2 are the same or different and are
C1-C4 alkyl, phenyl, bisulfite, sulfite, thiosulfate, tetrahydrothiophene, (C1-C4 alkyl)3 phosphite, (C1-C4 alkyl)3 phosphine, triphenylphosphine, hydrosulfite, thiourea, butyl vinyl ether, tetramethylethylene. zinc and acetic acid, tetramethylethylene and 2-methylfuran.
- 577. A process to prepare a Δ9(11)-carboxylic acid (VI) according to claim 576 where the hydroperoxy-deoxygenating agent is where Q1 and Q2 are both C1 alkyl and the deoxygenating agent is dimethylsulfide.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims the benefit of the following U.S. provisional patent applications: Ser. No. 60/366,784, filed Mar. 22, 2002, Ser. No. 60/411,874, filed Sept. 19, 2002, and Ser. No. 60/425,596, filed Nov. 12, 2002, under 35 U.S.C. § 119(e)(i).
Provisional Applications (3)
|
Number |
Date |
Country |
|
60425596 |
Nov 2002 |
US |
|
60411874 |
Sep 2002 |
US |
|
60366784 |
Mar 2002 |
US |