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当今药物发现中晚期功能化的概述。

An overview of late-stage functionalization in today's drug discovery.

机构信息

School of Chemistry, The University of Sydney , Sydney , Australia.

Research School of Chemistry, The Australian National University , Canberra , Australia.

出版信息

Expert Opin Drug Discov. 2019 Nov;14(11):1137-1149. doi: 10.1080/17460441.2019.1653850. Epub 2019 Aug 14.

Abstract

: Late-stage functionalization (LSF) can introduce important chemical groups in the very last steps of the synthesis. LSF has the potential to speed up the preparation of novel chemical entities and diverse chemical libraries and have a major impact on drug discovery. Functional group tolerance and mild conditions allows access to new molecules not easily accessible by conventional approaches without the need for laborious chemical synthesis. : A historical overview of late-stage functionalization and its applicability to drug discovery is provided. Pioneering methodologies that laid the foundations for the field are briefly covered and archetypal examples of their application to drug discovery are discussed. Novel methodologies reported in the past few years mainly stemming from the recent renaissances of photoredox catalysis and radical chemistry are reviewed and their application to drug discovery considered. : It is envisioned that late-stage functionalization will improve the efficiency and efficacy of drug discovery. There is evidence of the widespread uptake of LSF by the medicinal chemistry community and it is expected that the recent and continuing endeavors of many academic laboratories and pharmaceutical companies will soon have an impact on drug development.

摘要

晚期功能化(LSF)可以在合成的最后几步中引入重要的化学基团。LSF 有可能加快新型化学实体和多样化化学文库的制备速度,并对药物发现产生重大影响。功能基团的耐受性和温和的条件允许获得不易通过传统方法获得的新分子,而无需进行繁琐的化学合成。本文提供了晚期功能化及其在药物发现中的应用的历史概述。简要介绍了为该领域奠定基础的开创性方法,并讨论了将它们应用于药物发现的典型示例。综述了过去几年中报道的新方法,主要源自光氧化还原催化和自由基化学的最近复兴,并考虑了它们在药物发现中的应用。可以预见,晚期功能化将提高药物发现的效率和效果。有证据表明,药物化学界广泛采用 LSF,预计许多学术实验室和制药公司最近和持续的努力将很快对药物开发产生影响。

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