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通过半合成修饰探究天然防污剂百秋李醇对抗微生物和大型生物污损的结构-活性关系。

Probing the Structure-Activity Relationship of the Natural Antifouling Agent Polygodial against both Micro- and Macrofoulers by Semisynthetic Modification.

机构信息

Department of Chemistry, UiT The Arctic University of Norway , Breivika, N-9037, Tromsø, Norway.

Biodimar LEMAR UMR 6539, Université de Bretagne Occidentale , 6 Avenue le Gorgeu, 29200 Brest, France.

出版信息

J Nat Prod. 2017 Feb 24;80(2):515-525. doi: 10.1021/acs.jnatprod.6b01056. Epub 2017 Feb 7.

Abstract

The current study represents the first comprehensive investigation into the general antifouling activities of the natural drimane sesquiterpene polygodial. Previous studies have highlighted a high antifouling effect toward macrofoulers, such as ascidians, tubeworms, and mussels, but no reports about the general antifouling effect of polygodial have been communicated before. To probe the structural and chemical basis for antifouling activity, a library of 11 polygodial analogues was prepared by semisynthesis. The library was designed to yield derivatives with ranging polarities and the ability to engage in both covalent and noncovalent interactions, while still remaining within the drimane sesquiterpene scaffold. The prepared compounds were screened against 14 relevant marine micro- and macrofouling species. Several of the polygodial analogues displayed inhibitory activities at sub-microgram/mL concentrations. These antifouling effects were most pronounced against the macrofouling ascidian Ciona savignyi and the barnacle Balanus improvisus, with inhibitory activities observed for selected compounds comparable or superior to several commercial antifouling products. The inhibitory activity against the microfouling bacteria and microalgae was reversible and significantly less pronounced than for the macrofoulers. This study illustrates that the macro- and microfoulers are targeted by the compounds via different mechanisms.

摘要

本研究首次全面调查了天然倍半萜多杀菌素的一般防污活性。先前的研究已经强调了它对大型污着生物(如海鞘、管蠕虫和贻贝)的高防污效果,但之前没有关于多杀菌素一般防污效果的报道。为了探究防污活性的结构和化学基础,通过半合成制备了 11 种多杀菌素类似物库。该库旨在生成具有不同极性和能够进行共价和非共价相互作用的衍生物,同时仍保留倍半萜骨架。合成的化合物针对 14 种相关的海洋微和macro 污着生物进行了筛选。一些多杀菌素类似物在亚微克/毫升浓度下显示出抑制活性。这些防污效果在大型污着生物海鞘 Ciona savignyi 和藤壶 Balanus improvisus 中最为明显,对于选定的化合物,观察到的抑制活性与几种商业防污产品相当或优于几种商业防污产品。对微污着细菌和微藻的抑制活性是可逆的,并且明显低于对大型污着生物的抑制活性。这项研究表明,化合物通过不同的机制靶向macro-和 microfoulers。

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