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Surface anchored metal-organic frameworks as stimulus responsive antifouling coatings

机译:表面锚固的金属有机框架作为刺激响应型防污涂料

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Surface-anchored, crystalline and oriented metal organic frameworks (SURMOFs) have huge potential for biological applications due to their well-defined and highly-porous structure. In this work we describe a MOF-based, fully autonomous system, which combines sensing, a specific response, and the release of an antimicrobial agent. The Cu-containing SURMOF, Cu-SURMOF 2, is stable in artificial seawater and shows stimulus-responsive anti-fouling properties against marine bacteria. When Cobetia marina adheres on the SURMOF, the framework’s response is lethal to the adhering microorganism. A thorough analysis reveals that this response is induced by agents secreted from the microbes after adhesion to the substrate, and includes a release of Cu ions resulting from a degradation of the SURMOF. The stimulus-responsive antifouling effect of Cu-SURMOF 2 demonstrates the first application of Cu-SURMOF 2 as autonomous system with great potential for further microbiological and cell culture applications.
机译:表面锚定,结晶和定向的金属有机骨架(SURMOF)由于其定义明确和高度多孔的结构具有巨大的生物应用潜力。在这项工作中,我们描述了一个基于MOF的完全自治的系统,该系统结合了传感,特定的响应和抗菌剂的释放。含铜SURMOF,Cu-SURMOF 2在人造海水中稳定,并显示出对海洋细菌的刺激响应性防污性能。当Cobetia marina坚持使用SURMOF时,该框架的反应对粘附的微生物具有致命性。彻底的分析表明,这种反应是由微生物粘附到基质后从细菌分泌的物质诱导的,并且包括由于SURMOF降解导致的Cu离子释放。 Cu-SURMOF 2的刺激响应防污效果证明了Cu-SURMOF 2作为自主系统的首次应用,具有进一步微生物和细胞培养应用的巨大潜力。

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