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碳环核苷的化学方法。

Chemical Approaches to Carbocyclic Nucleosides.

作者信息

Ojeda-Porras Andrea C, Roy Vincent, Agrofoglio Luigi A

机构信息

ICOA, Univ. Orléans, CNRS UMR 7311, Université d'Orléans, Rue de Chartres, 45067, Orléans Cedex 2, France.

出版信息

Chem Rec. 2022 May;22(5):e202100307. doi: 10.1002/tcr.202100307. Epub 2022 Feb 4.

Abstract

Nucleoside analogues are at the forefront of antiviral therapy for last decades. To circumvent some of their limitations, based on their metabolism, and in order to improve their anti-viral potency and selectivity, several families of nucleoside analogues have been described through structural modifications at the sugar and heterocycles. The replacement of the oxygen of the nucleoside by a methylene has led to the family of carbocyclic (or cyclopentane) nucleoside analogues. Various potent anti-HIV and anti-HBV drugs belong to this family. Main syntheses of carbocyclic analogues of nucleosides used Diels-Alder reactions (in racemic or asymmetric series), but also started from carbohydrates (ribose, glucose), as a source of optically active compounds, which then had to be transformed into carbacycles under various conditions. The growing interest in carbocyclic nucleosides has led several groups, including ours, to develop new analogues and to explore novel routes. This article will review some of the recent chemistry developed on selected five-membered ring carbocyclic nucleosides.

摘要

在过去几十年里,核苷类似物一直处于抗病毒治疗的前沿。为了克服它们的一些局限性,基于其代谢情况,并为了提高其抗病毒效力和选择性,通过对糖和杂环进行结构修饰,已经描述了几个核苷类似物家族。用亚甲基取代核苷的氧原子产生了碳环(或环戊烷)核苷类似物家族。各种有效的抗HIV和抗HBV药物都属于这个家族。核苷碳环类似物的主要合成方法使用狄尔斯-阿尔德反应(外消旋或不对称系列),但也从碳水化合物(核糖、葡萄糖)开始,作为光学活性化合物的来源,然后必须在各种条件下将其转化为碳环。对碳环核苷的兴趣日益浓厚,促使包括我们在内的几个研究小组开发新的类似物并探索新的合成路线。本文将综述最近在选定的五元环碳环核苷上开展的一些化学研究。

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