KAUST Global Academic Partnership Program, Department of Biology, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, China.
Bioresour Technol. 2010 Feb;101(4):1331-6. doi: 10.1016/j.biortech.2009.09.046. Epub 2009 Oct 8.
Biofouling causes huge economic loss and a recent global ban on organotin compounds as antifouling agents has increased the need for safe and effective antifouling compounds. Five structurally similar compounds were isolated from the crude extract of a marine Streptomyces strain obtained from deep-sea sediments. Antifouling activities of these five compounds and four other structurally-related compounds isolated from a North Sea Streptomyces strain against major fouling organisms were compared to probe structure-activity relationships of compounds. The functional moiety responsible for antifouling activity lies in the 2-furanone ring and that the lipophilicity of compounds substantially affects their antifouling activities. Based on these findings, a compound with a straight alkyl side-chain was synthesized and proved itself as a very effective non-toxic, anti-larval settlement agent against three major fouling organisms. The strong antifouling activity, relatively low toxicity, and simple structures of these compounds make them promising candidates for new antifouling additives.
生物污垢造成了巨大的经济损失,最近全球禁止有机锡化合物作为防污剂,这增加了对安全有效的防污化合物的需求。从深海沉积物中获得的海洋链霉菌菌株的粗提物中分离出五种结构相似的化合物。比较了这五种化合物以及从北海链霉菌菌株中分离出的另外四种结构相关化合物对主要污垢生物的防污活性,以探究化合物的结构-活性关系。负责防污活性的功能部分位于 2-呋喃酮环中,化合物的亲脂性极大地影响了它们的防污活性。基于这些发现,合成了一种具有直链烷基侧链的化合物,并证明其本身是一种非常有效的无毒、抗幼虫附着剂,可有效对抗三种主要的污垢生物。这些化合物具有很强的防污活性、相对较低的毒性和简单的结构,使它们成为有前途的新型防污添加剂候选物。