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A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib

Two routes toward the synthesis of rucaparib, an FDA-approved drug used for the treatment of ovarian and prostate cancers, have been developed from commercially available starting materials utilizing the cyanide-catalyzed imino-Stetter reaction as the key step for the construction of the indole moti...

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Autores principales: Park, Jinjae, Cheon, Cheol-Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341288/
https://www.ncbi.nlm.nih.gov/pubmed/35975042
http://dx.doi.org/10.1039/d2ra03619c
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author Park, Jinjae
Cheon, Cheol-Hong
author_facet Park, Jinjae
Cheon, Cheol-Hong
author_sort Park, Jinjae
collection PubMed
description Two routes toward the synthesis of rucaparib, an FDA-approved drug used for the treatment of ovarian and prostate cancers, have been developed from commercially available starting materials utilizing the cyanide-catalyzed imino-Stetter reaction as the key step for the construction of the indole motif bearing all the desired substituents in their correct positions. In the first-generation synthesis, meta-fluorobenzoate, the starting material currently used in the process chemistry route of rucaparib, was converted into 4,6-disubstituted 2-aminocinnamic acid derivatives (ester or amide). The cyanide-catalyzed imino-Stetter reaction of aldimines derived from the resulting 2-aminocinnamic acid derivatives and a commercially available aldehyde afforded the desired indole-3-acetic acid derivatives. The final azepinone formation completed the total synthesis of rucaparib in 27% overall yield. To resolve the issues raised in the first-generation synthesis, we further developed a second-generation synthesis of rucaparib. The Heck reaction of a commercially available ortho-iodoaniline derivative with acrylonitrile provided 4,6-disubstituted 2-aminocinnamonitrile, which was subjected to the imino-Stetter reaction with the same aldehyde to provide the desired indole-3-acetonitrile product. Subsequent construction of the azepinone scaffold completed the total synthesis of rucaparib in 59% overall yield over three separation operations. The synthetic strategy reported herein can provide a highly practical route to access rucaparib from commercially available starting materials (5.2% overall yield in the current process chemistry route vs. 59% overall yield in the second-generation synthesis).
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spelling pubmed-93412882022-08-15 A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib Park, Jinjae Cheon, Cheol-Hong RSC Adv Chemistry Two routes toward the synthesis of rucaparib, an FDA-approved drug used for the treatment of ovarian and prostate cancers, have been developed from commercially available starting materials utilizing the cyanide-catalyzed imino-Stetter reaction as the key step for the construction of the indole motif bearing all the desired substituents in their correct positions. In the first-generation synthesis, meta-fluorobenzoate, the starting material currently used in the process chemistry route of rucaparib, was converted into 4,6-disubstituted 2-aminocinnamic acid derivatives (ester or amide). The cyanide-catalyzed imino-Stetter reaction of aldimines derived from the resulting 2-aminocinnamic acid derivatives and a commercially available aldehyde afforded the desired indole-3-acetic acid derivatives. The final azepinone formation completed the total synthesis of rucaparib in 27% overall yield. To resolve the issues raised in the first-generation synthesis, we further developed a second-generation synthesis of rucaparib. The Heck reaction of a commercially available ortho-iodoaniline derivative with acrylonitrile provided 4,6-disubstituted 2-aminocinnamonitrile, which was subjected to the imino-Stetter reaction with the same aldehyde to provide the desired indole-3-acetonitrile product. Subsequent construction of the azepinone scaffold completed the total synthesis of rucaparib in 59% overall yield over three separation operations. The synthetic strategy reported herein can provide a highly practical route to access rucaparib from commercially available starting materials (5.2% overall yield in the current process chemistry route vs. 59% overall yield in the second-generation synthesis). The Royal Society of Chemistry 2022-08-01 /pmc/articles/PMC9341288/ /pubmed/35975042 http://dx.doi.org/10.1039/d2ra03619c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Park, Jinjae
Cheon, Cheol-Hong
A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title_full A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title_fullStr A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title_full_unstemmed A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title_short A cyanide-catalyzed imino-Stetter reaction enables the concise total syntheses of rucaparib
title_sort cyanide-catalyzed imino-stetter reaction enables the concise total syntheses of rucaparib
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9341288/
https://www.ncbi.nlm.nih.gov/pubmed/35975042
http://dx.doi.org/10.1039/d2ra03619c
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AT parkjinjae cyanidecatalyzediminostetterreactionenablestheconcisetotalsynthesesofrucaparib
AT cheoncheolhong cyanidecatalyzediminostetterreactionenablestheconcisetotalsynthesesofrucaparib