Claims
- 1. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) reacting pyrazole 9 with enaminone 8 to yield the corresponding halopyrazolopyrimidine 1026and (b) reacting halopyrazolopyrimidine 10 with either (1) 2-thiophenecarboxylic acid chloride in the presence of zinc or magnesium, or (2) 2-thiophene boronic acid in the presence of carbon monoxide and a palladium catalyst, to yield Compound 1.
- 2. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl} phenyl)acetamide (Compound 1), comprising the following steps:
(a) cyclizing aminopyrazole 7 with enaminone 8 to yield pyrazolopyrimidine 11 27 and (b) reacting pyrazolopyrimidine 11 with 2-thiophenecarboxylic acid chloride in the presence of a Lewis acid to yield Compound 1.
- 3. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) cyclizing cyanoaminopyrazole 15 with enaminone 8 to yield nitrile-pyrazolopyrimidine 16 28(b) reacting nitrile-pyrazolopyrimidine 16 with (1) a Grignard reagent prepared from magnesium and 2-bromothiophene, or (2) with 2-lithium thiophene followed by hydrolysis, to give compound 1.
- 4. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) condensing aminopyrazole 20 with (1) formyl propionic acid methyl ester, or (2) ethyl 3,3-diethoxypropionate, to yield pyrazolopyrimidone 21 29(b) converting pyrazolopyrimidone 21 to halopyrazolopyrimidine 22 30(c) coupling halopyrazolopyrimidine 22 with boronic acid 23 to yield pyrazolopyrimidine 24 31and (d) reacting pyrazolopyrimidine 24 with (1) a Grignard reagent prepared from magnesium and 2-bromothiophene, or (2) with 2-lithium thiophene followed by hydrolysis, to give Compound 1.
- 5. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) alkylating m-acetamidoacetophenone 2 to provide acetophenone 3 32(b) reacting nitrile 4 with acetophenone 3 in the presence of DMFDMA and a solvent until nitrile 4 and acetophenone 3 are consumed 33(c) removing any excess DMFDMA and solvent and, without isolation of the intermediate reaction products from step (b), converting the reaction products upon reaction with aminoguanidine to Compound 1; and (d) isolating Compound 1.
- 6. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-a]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) treating methoxyacrylonitrile 6 with hydrazine to afford 3-aminopyrazole 7; 34(b) reacting 3-aminopyrazole 7 with 2-thiophenecarboxylic acid chloride to yield pyrazole 5 35(c) cyclizing pyrazole 5 with enaminone 8 to yield Compound 136
- 7. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) converting nitrile 12 to (i) enaminone 13 with DMFDMA, or to (ii) ethoxyenolether 14 with triethyl orthoformate 37(b) prparing pyrazole 5 from either enaminone 13 or ethoxyenolether 1438(c) cyclizing pyrazole 5 with enaminone 8 to yield compound 1 39
- 8. A method for making N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl}phenyl)acetamide (Compound 1), comprising the following steps:
(a) treating acetophenone 18 with triethyl orthoformate to yield enol ether 40(b) alkylating enol ether 19 to afford enol ether 17 41and (c) cyclizing enol ether 17 with pyrazole 5 to yield Compound 1 42
- 9. The method of any one of claims 1, 2 or 3 wherein enaminone 8 is made by an alkylation step under phase transfer conditions.
- 10. The method of claim 9 wherein the phase transfer conditions comprise a phase transfer catalyst in a polar organic solvent with an aqueous phase containg a base.
- 11. The method of claim 10 wherein the phase transfer catalyst is a quaternary ammonium or phosphonium salt, a crown ether or a polyethylene glycol ether.
- 12. The method of claim 10 wherein the organic solvent is methylene chloride, benzotrifluoride or toluene.
- 13. The method of claim 10 wherein the base of the aqueous phase is sodium or potassium hydroxide.
- 14. A method for making alkylated enaminone 8, comprising the step of alkylating enaminone 8′ under phase transfer conditions
- 15. The method of claim 14 wherein the phase transfer conditions comprise a phase Transfer catalyst in a polar organic solvent with an aqueous phase containg a base.
- 16. The method of claim 15 wherein the phase transfer catalyst is a quaternary ammonium or phosphonium salt, a crown ether or a polyethylene glycol ether.
- 17. The method of claim 15 wherein the organic solvent is methylene chloride, benzotrifluoride or toluene.
- 18. The method of claim 15 wherein the base of the aqueous phase is sodium or potassium hydroxide.
- 19. The method of claim 14, further comprising the step of utilizing enaminone 8 as an intermediate in the synthesis of N-methyl-N-(3-{3-[2-thienylcarbonyl]-pyrazol-[1,5-α]-pyrimidin-7-yl} phenyl)acetamide (Compound 1).
- 20. The method of claim 19 wherein the step of utilizing enaminone 8 as an intermediate comprises reacting enaminone 8 with a pyrazole to form Compound 1.
- 21. The method of calim 20 wherein the pyrazole has the structure:
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Nos. 60/148,313 filed Aug. 10, 1999 and 60/148,314 filed Aug. 10, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60148313 |
Aug 1999 |
US |
|
60148314 |
Aug 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09636727 |
Aug 2000 |
US |
Child |
10107534 |
Mar 2002 |
US |