卤化天然产物的研究进展。

IF 2.9 4区 医学 Q3 CHEMISTRY, MEDICINAL
Lijing Zhang, Bing Liu, Ting Zhu, Xue Tian, Ning Chen, Yuxin Wang
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引用次数: 0

摘要

卤化天然产物是一类重要的次生代谢产物,广泛分布于自然界。卤素原子的存在通常会增强化合物的药理活性。因此,卤代天然产物在抗菌、抗肿瘤、抗炎和抗疟原虫等方面显示出良好的药理活性,为开发新药提供了丰富的资源。迄今为止,超过62%的卤化化合物是由海洋生物产生的,主要包括海洋海绵、藻类、珊瑚、真菌和其他生物。此外,包括细菌和真菌在内的陆地微生物也产生卤化代谢物,这些代谢物同样是卤化天然产物的重要来源。卤化天然产物的生物合成涉及多种酶的协同作用,这些酶有效地和选择性地将卤素原子结合到有机分子上,这一过程增强了化合物的生物活性。卤化天然产物作为农业、医药、化工等行业的重要原料,有着广泛的用途。本文综述了近年来卤化化合物及其生物合成的研究进展,为卤化化合物的进一步利用和开发奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in the Study of Halogenated Natural Products.

Halogenated natural products are an important class of secondary metabolites that are widely distributed in nature. The presence of halogen atoms usually enhances the pharmacological activity of the compounds. As a result, halogenated natural products have shown promising pharmacological activities in antibacterial, antitumour, anti-inflammatory and antiplasmodial properties, providing a rich resource for the development of new drugs. To date, more than 62% of halogenated compounds are produced by marine organisms, mainly including marine sponges, algae, corals, fungi and other organisms. In addition, terrestrial microorganisms, including bacteria and fungi, also produce halogenated metabolites, which are equally important sources of halogenated natural products. The biosynthesis of halogenated natural products involves the synergistic action of multiple enzymes that efficiently and selectively bind halogen atoms to organic molecules, a process that enhances the biological activity of the compounds. Halogenated natural products have a wide range of uses as important raw materials in the agricultural, pharmaceutical and chemical industries. This paper reviews the progress of research on halogenated compounds and their biosynthesis in recent years, laying the foundation for further utilisation and development of halogenated compounds.

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来源期刊
CiteScore
6.40
自引率
2.90%
发文量
186
审稿时长
3-8 weeks
期刊介绍: Current Topics in Medicinal Chemistry is a forum for the review of areas of keen and topical interest to medicinal chemists and others in the allied disciplines. Each issue is solely devoted to a specific topic, containing six to nine reviews, which provide the reader a comprehensive survey of that area. A Guest Editor who is an expert in the topic under review, will assemble each issue. The scope of Current Topics in Medicinal Chemistry will cover all areas of medicinal chemistry, including current developments in rational drug design, synthetic chemistry, bioorganic chemistry, high-throughput screening, combinatorial chemistry, compound diversity measurements, drug absorption, drug distribution, metabolism, new and emerging drug targets, natural products, pharmacogenomics, and structure-activity relationships. Medicinal chemistry is a rapidly maturing discipline. The study of how structure and function are related is absolutely essential to understanding the molecular basis of life. Current Topics in Medicinal Chemistry aims to contribute to the growth of scientific knowledge and insight, and facilitate the discovery and development of new therapeutic agents to treat debilitating human disorders. The journal is essential for every medicinal chemist who wishes to be kept informed and up-to-date with the latest and most important advances.
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