片藻素,从A到Z:一类抗癌海洋吡咯生物碱。

Christian Bailly
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引用次数: 177

摘要

片层素是一组由30多种多芳吡咯生物碱组成的生物碱,从多种海洋生物中分离出来,主要是海鞘和海绵。这些分子分为三个结构基团,中间的吡咯环与相邻的芳环融合或不融合(片层酰胺O-R),喹啉部分含有5,6 -单键(如片层酰胺I-L)或双键(如片层酰胺D和M),它们都是有效的细胞毒性物质。该家族还包括硫酸盐成员,如整合酶抑制剂lamellarin α - 20-sulfate。本文综述了片层素的来源和结构,并对合成所有片层素和不同结构相关的海洋吡咯生物碱的化学途径进行了综述,包括宁格林类、风暴酰胺类和烷醇类。并讨论了这些海产品的作用机理。层状蛋白α - 20-硫酸盐抑制HIV-1整合酶、层状蛋白D抑制人类拓扑异构酶I、层状蛋白H抑制传染性软疣病毒拓扑异构酶以及其他对核蛋白的影响,为证明DNA操纵酶是层状蛋白的重要靶点提供了实验依据。这些海洋化合物中的一些在体外对肿瘤细胞表现出细胞毒性活性,并且对pgp介导的药物外排不敏感。讨论了构效关系。该系列中的其他化合物虽然没有很强的细胞毒性,但可以逆转多药耐药表型,因此可能有助于提高常规细胞毒性药物对化疗耐药肿瘤的治疗活性。一个完整的描述的化学和药理学概况片状蛋白是在这里提出,以阐明这一低估家族的海洋生物碱。
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Lamellarins, from A to Z: a family of anticancer marine pyrrole alkaloids.

The lamellarins form a group of more than 30 polyaromatic pyrrole alkaloids, isolated from diverse marine organisms, mainly but not exclusively ascidians and sponges. These molecules fall in three structural groups, with the central pyrrole ring fused or unfused (lamellarins O-R) to adjacent aromatic rings and with the quinoline moiety containing a 5, 6-single--as in lamellarins I-L--or a double bond, as it is the case for lamellarins D and M which are both potent cytotoxic agents. The family also includes sulphated members, such as the integrase inhibitor lamellarin alpha 20-sulfate. This review presents the origin and structure of the lamellarins and summarizes the various chemical pathways which have been proposed to synthesize all lamellarins and different structurally related marine pyrrole alkaloids, including ningalins, storniamides and lukianols. The mechanisms of actions of these marine products are also discussed. Inhibition of HIV-1 integrase by lamellarin alpha 20-sulfate and human topoisomerase I by lamellarin D and Molluscum contagiosum virus topoisomerase by lamellarin H, along with other effects on nuclear proteins, provide an experimental basis indicating that DNA manipulating enzymes are important targets for the lamellarins. Some of these marine compounds exhibit cytotoxic activities against tumor cells in vitro and are insensitive to Pgp-mediated drug efflux. The structure-activity relationships are discussed. Other compounds in the series, without being strongly cytotoxic, can reverse the multidrug resistance phenotype and thus may be useful to promote the therapeutic activity of conventional cytotoxic drugs toward chemoresistant tumors. A complete description of the chemistry and pharmacological profiles of the lamellarins is presented here to shed light on this undervalued family of marine alkaloids.

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