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来自亚北极海鞘肺形 Synoicum pulmonaria 的防污化合物:合氮杂环丁烷酮 A 和 C、肺形素 A 和 B 以及合成类似物。

Antifouling compounds from the sub-arctic ascidian Synoicum pulmonaria: synoxazolidinones A and C, pulmonarins A and B, and synthetic analogues.

作者信息

Trepos Rozenn, Cervin Gunnar, Hellio Claire, Pavia Henrik, Stensen Wenche, Stensvåg Klara, Svendsen John-Sigurd, Haug Tor, Svenson Johan

机构信息

School of Biological Sciences, University of Portsmouth , Portsmouth PO1 2DY, U.K.

出版信息

J Nat Prod. 2014 Sep 26;77(9):2105-13. doi: 10.1021/np5005032. Epub 2014 Sep 2.

Abstract

The current study describes the antifouling properties of four members belonging to the recently discovered synoxazolidinone and pulmonarin families, isolated from the sub-Arctic sessile ascidian Synoicum pulmonaria collected off the Norwegian coast. Four simplified synthetic analogues were also prepared and included in the study. Several of the studied compounds displayed MIC values in the micro-nanomolar range against 16 relevant marine species involved in both the micro- and macrofouling process. Settlement studies on Balanus improvisus cyprids indicated a deterrent effect and a low toxicity for selected compounds. The two synoxazolidinones displayed broad activity and are shown to be among the most active natural antifouling bromotyrosine derivatives described. Synoxazolidinone C displayed selected antifouling properties comparable to the commercial antifouling product Sea-Nine-211. The pulmonarins prevented the growth of several bacterial strains at nanomolar concentrations but displayed a lower activity toward microalgae and no effect on barnacles. The linear and cyclic synthetic peptidic mimics also displayed potent antifouling activities mainly directed against bacterial adhesion and growth.

摘要

本研究描述了从挪威海岸采集的亚北极固着海鞘Synoicum pulmonaria中分离出的最近发现的synoxazolidinone和pulmonarin家族四个成员的防污性能。还制备了四种简化的合成类似物并纳入研究。所研究的几种化合物对参与微污损和宏观污损过程的16种相关海洋物种的最低抑菌浓度值在微纳摩尔范围内。对Balanus improvisus cyprids的附着研究表明,所选化合物具有抑制作用且毒性较低。这两种synoxazolidinones表现出广泛的活性,并且被证明是所描述的最具活性的天然防污溴酪氨酸衍生物之一。Synoxazolidinone C表现出的特定防污性能与商业防污产品Sea-Nine-211相当。Pulmonarins在纳摩尔浓度下可阻止几种细菌菌株的生长,但对微藻的活性较低,对藤壶无影响。线性和环状合成肽模拟物也表现出强大的防污活性,主要针对细菌的粘附和生长。

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