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3,5-未取代、4-取代吲哚基于亲核芳香取代反应的环化反应及以亲核芳香取代反应终止的环合反应的区域选择性

Regioselectivity of the SAr-based cyclizations and SAr-terminated annulations of 3,5-unsubstituted, 4-substituted indoles.

作者信息

Das Jonali, Das Sajal Kumar

机构信息

Department of Chemical Sciences, Tezpur University, Napaam, Tezpur-784028, Assam, India.

出版信息

Beilstein J Org Chem. 2022 Mar 8;18:293-302. doi: 10.3762/bjoc.18.33. eCollection 2022.

Abstract

Indole-3,4- and 4,5-fused carbo- and heterocycles are ubiquitous in bioactive natural products and pharmaceuticals, and hence, a variety of synthetic approaches toward such compounds have been developed. Among these, cyclization and annulation of 3,5-unsubstituted, 4-substituted indoles involving an electrophilic aromatic substitution (SAr) as the ring closure are particularly attractive, because they avoid the use of 3,4- or 4,5-difunctionalized indoles as starting materials. However, since 3,5-unsubstituted, 4-substituted indoles have two potential ring-closure sites (indole C3 and C5 positions), such reactions in principle can furnish either or both of the indole 3,4- and 4,5-fused ring systems. This Commentary will briefly highlight the issue by summarizing recent relevant literature reports.

摘要

吲哚-3,4-和4,5-稠合的碳环和杂环在生物活性天然产物和药物中普遍存在,因此,已经开发了多种合成此类化合物的方法。其中,涉及亲电芳香取代(SAr)作为环化反应的3,5-未取代、4-取代吲哚的环化和环合反应特别有吸引力,因为它们避免使用3,4-或4,5-双官能化吲哚作为起始原料。然而,由于3,5-未取代、4-取代吲哚有两个潜在的环化位点(吲哚C3和C5位),此类反应原则上可以生成吲哚3,4-和4,5-稠合环系中的任意一个或两者。本评论将通过总结近期相关文献报道简要突出这一问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9e1/8919422/57838b431738/Beilstein_J_Org_Chem-18-293-g002.jpg

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