芳四联素型木脂素足臼毒素及其衍生物的生物合成、总合成及药理活性研究

IF 10.6 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Siyu Shen , Yuru Tong , Yunfeng Luo , Luqi Huang , Wei Gao
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引用次数: 9

摘要

podophyllotoxin (PTOX, 1)是一种芳基四毒素型木脂素,最早在植物peltatum Podophyllum中被发现,其结构由W. Borsche和J. Niemann于1932年阐明。由于其强大的抗癌和抗病毒活性,它被认为是最有可能开发成现代药物的分子之一。随着市场需求的增加和自然资源储量的不足,扩大PTOXs的来源至关重要。原有的植物提取方法已逐渐不能满足要求,生物合成和全合成已成为前瞻性的替代方法。随着PTOXs生物合成途径中的关键酶及其催化机制的不断揭示,未来实现PTOXs的异质生物合成是可能的。化学和化学酶合成也为严格控制四环核的不对称构型提供了方案。目前,一些PTOX衍生物的药理活性已被广泛研究,为临床候选药物奠定了基础。本文主要综述了PTOX及其衍生物的生物合成、全合成、药理活性等方面的最新研究进展,以期对这些广泛应用的化合物有更全面的认识,并为今后寻找其临床应用提供支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biosynthesis, total synthesis, and pharmacological activities of aryltetralin-type lignan podophyllotoxin and its derivatives

Biosynthesis, total synthesis, and pharmacological activities of aryltetralin-type lignan podophyllotoxin and its derivatives

Covering: up to 2022

Podophyllotoxin (PTOX, 1), a kind of aryltetralin-type lignan, was first discovered in the plant Podophyllum peltatum and its structure was clarified by W. Borsche and J. Niemann in 1932. Due to its potent anti-cancer and anti-viral activities, it is considered one of the molecules most likely to be developed into modern drugs. With the increasing market demand and insufficient storage of natural resources, it is crucial to expand the sources of PTOXs. The original extraction method from plants has gradually failed to meet the requirements, and the biosynthesis and total synthesis have become the forward-looking alternatives. As key enzymes in the biosynthetic pathway of PTOXs and their catalytic mechanisms being constantly revealed, it is possible to realize the heterogeneous biosynthesis of PTOXs in the future. Chemical and chemoenzymatic synthesis also provide schemes for strictly controlling the asymmetric configuration of the tetracyclic core. Currently, the pharmacological activities of some PTOX derivatives have been extensively studied, laying the foundation for clinical candidate drugs. This review focuses primarily on the latest research progress in the biosynthesis, total synthesis, and pharmacological activities of PTOX and its derivatives, providing a more comprehensive understanding of these widely used compounds and supporting the future search for clinical applications.

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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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