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Enantioselective total synthesis of the unnatural enantiomer of quinine

A practical enantioselective total synthesis of the unnatural (+)-quinine and (–)-9-epi-quinine enantiomers, which are important organocatalysts, is reported. The key transformation is a successive organocatalytic formal aza [3 + 3] cycloaddition/Strecker-type cyanation reaction to form an optically...

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Autores principales: Shiomi, Shinya, Misaka, Remi, Kaneko, Mayu, Ishikawa, Hayato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7020653/
https://www.ncbi.nlm.nih.gov/pubmed/32110303
http://dx.doi.org/10.1039/c9sc03879e
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author Shiomi, Shinya
Misaka, Remi
Kaneko, Mayu
Ishikawa, Hayato
author_facet Shiomi, Shinya
Misaka, Remi
Kaneko, Mayu
Ishikawa, Hayato
author_sort Shiomi, Shinya
collection PubMed
description A practical enantioselective total synthesis of the unnatural (+)-quinine and (–)-9-epi-quinine enantiomers, which are important organocatalysts, is reported. The key transformation is a successive organocatalytic formal aza [3 + 3] cycloaddition/Strecker-type cyanation reaction to form an optically active tetrasubstituted piperidine derivative. This organocatalytic reaction proceeded in high yield and gave excellent enantiomeric excess with only 0.5 mol% catalyst loading. In addition, an imidate group, derived from a cyano group, was incorporated in the strategy for site-selective modification of the C4-alkyl chiral piperidine ring of quinine. Furthermore, an efficient coupling between the quinuclidine precursor and dihydroquinoline unit was achieved on a gram scale. The 15-step (LLS) synthetic protocol provided both (+)-quinine and (–)-9-epi-quinine, each with 16% overall yield.
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spelling pubmed-70206532020-02-27 Enantioselective total synthesis of the unnatural enantiomer of quinine Shiomi, Shinya Misaka, Remi Kaneko, Mayu Ishikawa, Hayato Chem Sci Chemistry A practical enantioselective total synthesis of the unnatural (+)-quinine and (–)-9-epi-quinine enantiomers, which are important organocatalysts, is reported. The key transformation is a successive organocatalytic formal aza [3 + 3] cycloaddition/Strecker-type cyanation reaction to form an optically active tetrasubstituted piperidine derivative. This organocatalytic reaction proceeded in high yield and gave excellent enantiomeric excess with only 0.5 mol% catalyst loading. In addition, an imidate group, derived from a cyano group, was incorporated in the strategy for site-selective modification of the C4-alkyl chiral piperidine ring of quinine. Furthermore, an efficient coupling between the quinuclidine precursor and dihydroquinoline unit was achieved on a gram scale. The 15-step (LLS) synthetic protocol provided both (+)-quinine and (–)-9-epi-quinine, each with 16% overall yield. Royal Society of Chemistry 2019-09-27 /pmc/articles/PMC7020653/ /pubmed/32110303 http://dx.doi.org/10.1039/c9sc03879e Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Shiomi, Shinya
Misaka, Remi
Kaneko, Mayu
Ishikawa, Hayato
Enantioselective total synthesis of the unnatural enantiomer of quinine
title Enantioselective total synthesis of the unnatural enantiomer of quinine
title_full Enantioselective total synthesis of the unnatural enantiomer of quinine
title_fullStr Enantioselective total synthesis of the unnatural enantiomer of quinine
title_full_unstemmed Enantioselective total synthesis of the unnatural enantiomer of quinine
title_short Enantioselective total synthesis of the unnatural enantiomer of quinine
title_sort enantioselective total synthesis of the unnatural enantiomer of quinine
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7020653/
https://www.ncbi.nlm.nih.gov/pubmed/32110303
http://dx.doi.org/10.1039/c9sc03879e
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