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药物研发中杂环化学的现代进展。

Modern advances in heterocyclic chemistry in drug discovery.

作者信息

Taylor Alexandria P, Robinson Ralph P, Fobian Yvette M, Blakemore David C, Jones Lyn H, Fadeyi Olugbeminiyi

机构信息

Worldwide Medicinal Chemistry, Pfizer, Eastern Point Road, Groton, CT 06340, USA.

Worldwide Medicinal Chemistry, Pfizer, 610 Main Street, Cambridge, MA 02139, USA.

出版信息

Org Biomol Chem. 2016 Jul 12;14(28):6611-37. doi: 10.1039/c6ob00936k.

Abstract

New advances in synthetic methodologies that allow rapid access to a wide variety of functionalized heterocyclic compounds are of critical importance to the medicinal chemist as it provides the ability to expand the available drug-like chemical space and drive more efficient delivery of drug discovery programs. Furthermore, the development of robust synthetic routes that can readily generate bulk quantities of a desired compound help to accelerate the drug development process. While established synthetic methodologies are commonly utilized during the course of a drug discovery program, the development of innovative heterocyclic syntheses that allow for different bond forming strategies are having a significant impact in the pharmaceutical industry. This review will focus on recent applications of new methodologies in C-H activation, photoredox chemistry, borrowing hydrogen catalysis, multicomponent reactions, regio- and stereoselective syntheses, as well as other new, innovative general syntheses for the formation and functionalization of heterocycles that have helped drive project delivery. Additionally, the importance and value of collaborations between industry and academia in shaping the development of innovative synthetic approaches to functionalized heterocycles that are of greatest interest to the pharmaceutical industry will be highlighted.

摘要

合成方法学的新进展能够快速获得各种各样的功能化杂环化合物,这对药物化学家至关重要,因为它能够扩展可用的类药化学空间,并推动药物发现项目更高效地开展。此外,开发能够轻松大量生成所需化合物的稳健合成路线有助于加速药物开发过程。虽然在药物发现项目过程中通常会使用已有的合成方法,但开发允许采用不同键形成策略的创新杂环合成方法正在对制药行业产生重大影响。本综述将重点关注新方法在碳氢键活化、光氧化还原化学、借氢催化、多组分反应、区域和立体选择性合成以及其他用于杂环形成和功能化的新型创新通用合成方法中的最新应用,这些方法有助于推动项目进展。此外,还将强调工业界与学术界合作在塑造对制药行业最具吸引力的功能化杂环创新合成方法发展方面的重要性和价值。

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