异喹啉生物碱的分离、生物活性和合成。

IF 10.2 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xiaorong Yang, Xiaolou Miao, Lixia Dai, Xiao Guo, Janar Jenis, Jiyu Zhang, Xiaofei Shang
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引用次数: 0

摘要

覆盖时间:2019 年至 2023 年异喹啉生物碱是一类重要的 N 基杂环化合物,吸引了全世界研究人员的极大关注。为了跟进我们之前的综述(涵盖 2014-2018 年)并介绍该类化合物的研究进展,本综述总结并提供了 2019-2023 年期间分离出的新型异喹啉生物碱的最新文献,以及它们的生物活性和基本作用机制。此外,随着合成修饰策略的快速发展,异喹啉生物碱的合成策略也在不断优化,本文对这一类天然产物的全合成进行了点评。本文分离并讨论了 250 多种具有广泛生物活性的分子,包括抗肿瘤、抗菌、心脏保护、抗炎、神经保护和其他活性。介绍了超过九类异喹啉生物碱的全合成,其中 13 个化合物是首次全合成。这项调查为从原始天然异喹啉生物碱中发现新药提供了新的迹象或可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation, biological activity, and synthesis of isoquinoline alkaloids.

Covering: 2019 to 2023Isoquinoline alkaloids, an important class of N-based heterocyclic compounds, have attracted considerable attention from researchers worldwide. To follow up on our prior review (covering 2014-2018) and present the progress of this class of compounds, this review summarizes and provides updated literature on novel isoquinoline alkaloids isolated during the period of 2019-2023, together with their biological activity and underlying mechanisms of action. Moreover, with the rapid development of synthetic modification strategies, the synthesis strategies of isoquinoline alkaloids have been continuously optimized, and the total synthesis of these classes of natural products is reviewed critically herein. Over 250 molecules with a broad range of bioactivities, including antitumor, antibacterial, cardioprotective, anti-inflammatory, neuroprotective and other activities, are isolated and discussed. The total synthesis of more than nine classes of isoquinoline alkaloids is presented, and thirteen compounds constitute the first total synthesis. This survey provides new indications or possibilities for the discovery of new drugs from the original naturally occurring isoquinoline alkaloids.

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来源期刊
Natural Product Reports
Natural Product Reports 化学-生化与分子生物学
CiteScore
21.20
自引率
3.40%
发文量
127
审稿时长
1.7 months
期刊介绍: Natural Product Reports (NPR) serves as a pivotal critical review journal propelling advancements in all facets of natural products research, encompassing isolation, structural and stereochemical determination, biosynthesis, biological activity, and synthesis. With a broad scope, NPR extends its influence into the wider bioinorganic, bioorganic, and chemical biology communities. Covering areas such as enzymology, nucleic acids, genetics, chemical ecology, carbohydrates, primary and secondary metabolism, and analytical techniques, the journal provides insightful articles focusing on key developments shaping the field, rather than offering exhaustive overviews of all results. NPR encourages authors to infuse their perspectives on developments, trends, and future directions, fostering a dynamic exchange of ideas within the natural products research community.
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