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层粘连蛋白及其具有生物活性的相关化合物的合成概述。

An Overview on the Synthesis of Lamellarins and Related Compounds with Biological Interest.

机构信息

Laboratory of Organic Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Molecules. 2024 Aug 26;29(17):4032. doi: 10.3390/molecules29174032.

Abstract

Lamellarins are natural products with a [3,4]-fused pyrrolocoumarin skeleton possessing interesting biological properties. More than 70 members have been isolated from diverse marine organisms, such as sponges, ascidians, mollusks, and tunicates. There is a continuous interest in the synthesis of these compounds. In this review, the synthetic strategies for the synthesis of the title compounds are presented along with their biological properties. Three routes are followed for the synthesis of lamellarins. Initially, pyrrole derivatives are the starting or intermediate compounds, and then they are fused to isoquinoline or a coumarin moiety. Second, isoquinoline is the starting compound fused to an indole moiety. In the last route, coumarins are the starting compounds, which are fused to a pyrrole moiety and an isoquinoline scaffold. The synthesis of isolamellarins, azacoumestans, isoazacoumestans, and analogues is also described. The above synthesis is achieved via metal-catalyzed cross-coupling, [3 + 2] cycloaddition, substitution, and lactonization reactions. The title compounds exhibit cytotoxic, multidrug resistance (MDR), topoisomerase I-targeted antitumor, anti-HIV, antiproliferative, anti-neurodegenerative disease, and anti-inflammatory activities.

摘要

层孔菌素是一类具有[3,4]-稠合吡咯并香豆素骨架的天然产物,具有有趣的生物活性。已从海绵、海鞘、软体动物和被囊动物等多种海洋生物中分离出 70 多种成员。人们对这些化合物的合成一直很感兴趣。本文综述了标题化合物的合成策略及其生物活性。合成层孔菌素有三种途径。最初,吡咯衍生物是起始或中间体化合物,然后与异喹啉或香豆素部分稠合。其次,异喹啉是起始化合物,与吲哚部分稠合。在最后一种途径中,香豆素是起始化合物,与吡咯部分和异喹啉支架稠合。还描述了isolamellarins、azacoumestans、isoazacoumestans 和类似物的合成。上述合成是通过金属催化交叉偶联、[3+2]环加成、取代和内酯化反应实现的。标题化合物具有细胞毒性、多药耐药性(MDR)、拓扑异构酶 I 靶向抗肿瘤、抗 HIV、抗增殖、抗神经退行性疾病和抗炎活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57ce/11396623/7dcd7d347a6f/molecules-29-04032-g001.jpg

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