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基于汇聚式合成策略的二聚吲哚生物碱的合成研究

Synthetic Studies toward Dimeric Indole Alkaloids Based on Convergent Synthetic Strategy.

作者信息

Ueda Hirofumi

机构信息

Graduate School of Pharmaceutical Sciences, Tohoku University.

出版信息

Chem Pharm Bull (Tokyo). 2020;68(2):117-128. doi: 10.1248/cpb.c19-00706.

DOI:10.1248/cpb.c19-00706
PMID:32009078
Abstract

The total syntheses of dimeric indole alkaloids, haplophytine, and T988s are described. These dimeric compounds comprising two structurally different indole units are ubiquitous in nature, and many possess pharmaceutically important activities. To realize an efficient chemical synthesis of these dimeric indole alkaloids, the establishment of convergent synthetic strategies and development of new coupling methods are indispensable. The linkage of two highly functionalized units at a late stage of the synthesis frequently induces synthetic problems such as chemoselectivity and steric repulsion. Moreover, although transition metal-catalyzed reactions are usually an effective method for the cross-coupling of two units, the application of these cross-coupling reactions to bond formation involving a sterically hindered C(sp) is often difficult. Thus, even with precise modern synthetic methods, it is currently difficult to realize convergent syntheses of dimeric indole alkaloids possessing a quaternary carbon linking two units. To combat these synthetic problems, we developed a synthetic method to link two indole units using an Ag-mediated nucleophilic substitution reaction. In this review, we provide a detailed discussion of convergent synthetic strategies and coupling methods for dimeric indole alkaloids.

摘要

本文描述了二聚吲哚生物碱、单叶豆碱和T988s的全合成。这些由两个结构不同的吲哚单元组成的二聚化合物在自然界中广泛存在,许多具有重要的药学活性。为了实现这些二聚吲哚生物碱的高效化学合成,建立收敛性合成策略和开发新的偶联方法是必不可少的。在合成后期连接两个高度官能化的单元常常会引发化学选择性和空间排斥等合成问题。此外,尽管过渡金属催化反应通常是两个单元交叉偶联的有效方法,但将这些交叉偶联反应应用于涉及空间位阻C(sp)的键形成往往很困难。因此,即使使用精确的现代合成方法,目前也难以实现具有连接两个单元的季碳的二聚吲哚生物碱的收敛合成。为了解决这些合成问题,我们开发了一种使用银介导的亲核取代反应连接两个吲哚单元的合成方法。在这篇综述中,我们对二聚吲哚生物碱的收敛合成策略和偶联方法进行了详细讨论。

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