单萜烯及其衍生物制备的含氮杂环化合物:合成及性质

IF 7.1 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Vladimir V. Chernyshov, Irina I. Popadyuk, Olga I. Yarovaya, Nariman F. Salakhutdinov
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引用次数: 5

摘要

利用具有天然生物活性的天然化合物进行定向转化是有机化学和药物化学研究的一个有前途的领域,旨在发现有效的原料药。致力于天然化合物转化及其药理学性质研究的科学出版物的数量,特别是单萜烯及其最接近的衍生物,每年都在增加。与此同时,自从20世纪50年代苯并咪唑核是维生素B12结构的一个组成部分的消息传出后,含氮杂环化合物的化学得到了积极的发展。在撰写本文时,单萜及其最近的衍生物的化学修饰导致含氮杂环核心化合物的形成的数据尚未从化学转化的角度进行总结和系统化。本文综述了2000 - 2021年单萜烯/单萜类及其最近衍生物合成含氮杂环化合物的制备及性质的文献资料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nitrogen-Containing Heterocyclic Compounds Obtained from  Monoterpenes  or Their Derivatives: Synthesis and Properties

Nitrogen-Containing Heterocyclic Compounds Obtained from Monoterpenes or Their Derivatives: Synthesis and Properties

Directed transformation of available natural compounds with native biological activity is a promising area of research in organic and medicinal chemistry aimed at finding effective drug substances. The number of scientific publications devoted to the transformation of natural compounds and investigations of their pharmacological properties, in particular, monoterpenes and their nearest derivatives, increases every year. At the same time, the chemistry of nitrogen-containing heterocyclic compounds has been actively developed since the 1950s after the news that the benzimidazole core is an integral part of the structure of vitamin B12. At the time of writing this review, the data on chemical modifications of monoterpenes and their nearest derivatives leading to formation of compounds with a nitrogen-containing heterocycle core have not been summarized and systematized in terms of chemical transformations. In this review, we tried to summarize the literature data on the preparation and properties of nitrogen-containing heterocyclic compounds synthesized from monoterpenes/monoterpenoids and their nearest derivatives for the period from 2000 to 2021.

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来源期刊
Topics in Current Chemistry
Topics in Current Chemistry Chemistry-General Chemistry
CiteScore
13.70
自引率
1.20%
发文量
48
期刊介绍: Topics in Current Chemistry is a journal that presents critical reviews of present and future trends in modern chemical research. It covers all areas of chemical science, including interactions with related disciplines like biology, medicine, physics, and materials science. The articles in this journal are organized into thematic collections, offering a comprehensive perspective on emerging research to non-specialist readers in academia or industry. Each review article focuses on one aspect of the topic and provides a critical survey, placing it in the context of the collection. Selected examples highlight significant developments from the past 5 to 10 years. Instead of providing an exhaustive summary or extensive data, the articles concentrate on methodological thinking. This approach allows non-specialist readers to understand the information fully and presents the potential prospects for future developments.
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