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Enzymes for Antifouling Strategies

机译:防污策略的酶

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摘要

During the past decades, much effort has been made to find efficient alternative solutions to prevent and/or disrupt the adhesion of fouling organisms to surfaces. The use of enzymes emerges among the investigated approaches as one of the favorite candidate antifouling technologies due to enzymes' biodegradability and affordable prices. An overview of the different enzymatic antifouling strategies is presented, highlighting the most promising groups of enzymes, and their utilization upon surface-confinement to control biofouling. While the main strategies to control marine biofouling include the degradation of secreted adhesives and the production of antifouling compounds, the main concepts to control pathogenic biofilms are based on cell lysis and on the degradation of extracellular matrix polymers. Although immobilization can improve enzyme stability, activity and antifouling performance, up to date relatively few scientific articles concerning the use of immobilized enzymes to control biofouling have been published. The successful incorporation of enzymes into coatings yielding surfaces with broad antifouling spectrum and long-term efficacy remains a challenge.
机译:在过去的几十年中,已经做出了很大的努力来寻找有效的替代解决方案,以防止和/或破坏结垢生物对表面的粘附。由于酶的可生物降解性和可承受的价格,在研究的方法中出现了酶的使用,成为最受欢迎的候选防污技术之一。概述了不同的酶促防污策略,重点介绍了最有前途的酶类及其在表面限制作用下控制生物结垢的用途。虽然控制海洋生物污染的主要策略包括分泌的粘合剂的降解和防污化合物的产生,但控制病原性生物膜的主要概念是基于细胞裂解和细胞外基质聚合物的降解。尽管固定化可以改善酶的稳定性,活性和防污性能,但迄今为止,有关使用固定化酶控制生物污染的科学文章相对较少。成功地将酶掺入涂料中产生具有宽防污谱和长期功效的表面仍然是一个挑战。

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