Claims
- 1. A process for preparing 1,4-dihydropyridine compounds which comprises the steps of (a) contacting an enamine compound having a structure of and a compound having a structure of in the presence of a base; and (b) treating the reaction mixture thus obtained in the presence of an acid or a combination of acids.
- 2. A process according to claim 1 for preparing a compound of Formula (I): wherein R1 is hydrogen or (C1-C4)alkyl; R2 is nitrile; —SO3H; —SO2—(C1-C6)alkyl; —SO—(C1-C6)alkyl; —PO[O(C1-C4)alkyl]2; —C(═O)—R7, wherein R7 is hydroxy or its salt, (C1-C6)alkyl-O—, amino, (C1-C6)alkyl-NH— or di[(C1-C6)alkyl-N—; R3 and R5 are independently nitrile or (C1-C5)alkoxy-C(═O)—; R4 is an unsubstituted or a mono-, di-, or tri-, tetra- or penta-substituted phenyl wherein the substituents are independently halo; (C1-C4)alkyl optionally substituted with one to three halo; (C1-C4)alkoxy optionally substituted with one to three halo; nitro; amino; mono(C1-C4)alkylamino or di[(C1-C4)alkyl]amino; R6 is selected from the group consisting of hydrogen; (C1-C10)alkyl; phenyl optionally substituted with one to two substituents independently selected from the group consisting of halo, (C1-C4)alkyl, trihalo(C1-C4)alkyl and (C1-C4)alkoxy; and a 4- to 10-membered heterocyclic ring containing 1 to 4 heteroatoms or heteroatom containing moieties independently selected from the group consisting of —O—, —S—, —NH— and —N[(C1-C4)alkyl]-, wherein said heterocyclic ring is saturated, partially-saturated or aromatic, and said heterocyclic ring is optionally substituted with one halo or (C1-C4)alkyl; and Y is a covalent bond, methylene, oxygen or sulfur; the process comprising the steps of (a) addition reaction of an enamine compound of formula II to a compound of formula III wherein R1, R2, R3, R4, R5, R6 and Y are as defined above1 in the presence of a base under reaction conditions sufficient for the addition reaction of the compounds; and (b) cyclization of the resulting compound of step (a) in the presence of an acid catalyst selected from the group consisting of a protonic acid, and a combination of a protonic acid and a non-protonic Lewis acid.
- 3. A process of claim 1 wherein the base in reaction step (a) is a base capable of promoting a Michael-type reaction.
- 4. A process of claim 1 wherein the base in reaction step (a) is a magnesium (II) base and the acid catalyst in reaction step (b) is a protonic acid.
- 5. A process of claim 1 wherein the base in reaction step (a) is other than magnesium (II) bases and the acid catalyst in step (b) is a combination of a protonic acid and a non-protonic acid Lewis acid.
- 6. A process of claim 1 wherein the reaction step (a) is carried out in a reaction inert solvent at a temperature in the range from −150° C. to the reflux temperature of the reaction mixture for 3 minutes to 2 days, and the reaction step (b) is carried out in a reaction inert solvent in a temperature in the range from −150° C. to the reflux temperature of the reaction mixture for 1 second to 5 days.
- 7. A process of claim 6 wherein the reaction step (a) is carried out in the reaction inert solvent at a temperature in the range from −40° to 80° C. for 1 minute to 40 hours, and the reaction step (b) is carried out in a the reaction inert solvent at a temperature in the range from −40° to 80° C. for 1 minute to 5 days.
- 8. A process of claim 1 wherein the base in reaction step (a) is (C1-C4)alkyllithiums, halomagnesium(C1-C4)alkoxides, (C1-C6)alkylmagnesiumhalides, metalhydrides, metal(C1-C3)alkoxides, magnesium-di[(C1-C3)alkoxides], metal-n-butoxides, metal-sec-butoxides, metal-tert-butoxides, metalcarbonates and metalfluorides.
- 9. A process of claim 1 wherein the acid catalyst in reaction step (b) is hydrochloric acid, p-toluene sulfonic acid, phosphoric acid, sulfuric acid, nitric acid or (C1-C6)alkanoic acid.
- 10. A process according to claim 2 whereinR1 is hydrogen, methyl or ethyl; R2 is —C(═O)—R7, wherein R7 is hydroxy or its salt, (C1-C6)alkyl-O—, amino, (C1-C6)alkyl-NH— or di[(C1-C6)alkyl]-N—; R3 and R5 are independently (C1-C3)alkoxy-C(═O)—; R4 is di-substituted phenyl wherein the substituents are independently halo, (C1-C4)alkyl optionally substituted with one or two halo, or nitro; R6 is hydrogen; (C1-C5)alkyl; phenyl optionally substituted with one to two substituents independently selected from the group consisting of halo, (C1-C4)alkyl, CF3 and (C1-C4)alkoxy; and a 4- to 10-membered heterocyclic ring selected from the group consisting of piperidino, morpholino, thiamorphorino, pyrrolidino, pyrazolino, pyrazolidino, pyrazoryl, piperazinyl, thiryl, thienyl, oxazolyl, tetrazolyl, thiazolyl, imidazolyl, pyrazolyl, pyridyl, pyrimidinyl, pyrrolyl, pyrrolidinyl, quinoyl and quinuclidinyl, and said heterocyclic ring being optionally substituted with one halo or (C1-C4)alkyl; and Y is a covalent bond, methylene, oxygen or sulfur.
- 11. A process according to claim 10 whereinR1 is hydrogen; R2 is COOH, COOCH3 or COOC2H5; R3 and R5 are independently COOH, COOCH3 or COOC2H5; R4 is a mono- or di-substituted phenyl wherein substituents are independently selected from fluoro, chloro and nitro; R6 is selected from hydrogen; (C1-C3)alkyl; phenyl optionally substituted with one to two substituents independently selected from halo, (C1-C3)alkyl, CF3 and (C1-C3)alkoxy; and a 4- to 10-membered heterocyclic ring selected from piperidino, morpholino, thiamorphorino, pyrrolidino, pyrazolino, pyrazolidino, pyrazoryl, piperazinyl, furyl, thienyl, oxazolyl, tetrazolyl, thiazolyl, imidazolyl, pyrazolyl, pyridyl, pyrimidinyl, pyrrolyl, pyrrolidinyl, quinolyl and quinuclidinyl, and said heterocyclic ring being optionally substituted with one halo or (C1-C3)alkyl; and Y is a covalent bond or methylene.
- 12. A process according to claim 5 wherein the non-protonic Lewis acid is a metal halide or a metal trifluoromethanesulfonate.
- 13. A process according to claim 5 wherein the non-protonic Lewis acid is a magnesium (II) salt.
Parent Case Info
The present application is a continuation of U.S. application Ser. No. 09/716,158 filed Nov. 17, 2000, now abandoned and claims priority under 35 USC 119(e) to U.S. Provisional Application 60/170,217, filed Dec. 10, 1999, the complete text of which is incorporated by reference herein, as if fully set forth.
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9625689 |
May 1999 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
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60/170217 |
Dec 1999 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/716158 |
Nov 2000 |
US |
Child |
10/224928 |
|
US |