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非生物模拟的吲哚生物碱全合成方法——基于炔烃的策略。

Nonbiomimetic total synthesis of indole alkaloids using alkyne-based strategies.

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Org Biomol Chem. 2021 Apr 28;19(16):3551-3568. doi: 10.1039/d0ob02577a.

Abstract

Biomimetic natural product synthesis is generally straightforward and efficient because of its established feasibility in nature and utility in comprehensive synthesis, and the cost-effectiveness of naturally derived starting materials. On the other hand, nonbiomimetic strategies can be an important option in natural product synthesis since (1) nonbiomimetic synthesis offers more flexibility and can demonstrate the originality of chemists, and (2) the structures of derivatives accessible by nonbiomimetic synthesis can be considerably different from those that are synthesised in nature. This review summarises nonbiomimetic total syntheses of indole alkaloids using alkyne chemistry for constructing core structures, including ergot alkaloids, monoterpene indole alkaloids (mainly corynanthe, aspidosperma, strychnos, and akuammiline), and pyrroloindole and related alkaloids. To clarify the differences between alkyne-based strategies and biosynthesis, the alkynes in nature and the biosyntheses of indole alkaloids are also outlined.

摘要

仿生天然产物合成通常是直接且高效的,因为它在自然界中的可行性和在综合合成中的实用性,以及天然衍生起始物料的成本效益。另一方面,非仿生策略在天然产物合成中可以是一个重要的选择,因为 (1) 非仿生合成提供了更大的灵活性,可以展示化学家的原创性,和 (2) 非仿生合成可获得的衍生物结构可以与自然界中合成的结构有很大的不同。本综述总结了使用炔烃化学构建核心结构的吲哚生物碱的非仿生全合成,包括麦角生物碱、单萜吲哚生物碱(主要是 Corynanthe、Aspidosperma、Strychnos 和 Akuammiline)以及吡咯并吲哚和相关生物碱。为了阐明基于炔烃的策略与生物合成之间的差异,还概述了自然界中的炔烃和吲哚生物碱的生物合成。

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