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通过可扩大规模的常压等离子体辅助化学气相沉积工艺沉积的多组分涂层实现的抗生物污染和抗菌表面

Anti-biofouling and antibacterial surfaces via a multicomponent coating deposited from an up-scalable atmospheric-pressure plasma-assisted CVD process.

作者信息

Moreno-Couranjou Maryline, Mauchauffé Rodolphe, Bonot Sébastien, Detrembleur Christophe, Choquet Patrick

机构信息

Luxembourg Institute of Science and Technology, 5, avenue des Hauts-Fourneaux, L-4362 Esch/Alzette, Luxembourg.

出版信息

J Mater Chem B. 2018 Jan 28;6(4):614-623. doi: 10.1039/c7tb02473h. Epub 2018 Jan 9.

Abstract

Prevention of bacterial adhesion and biofilm formation on the surfaces of materials is a topic of major medical and societal importance. In this study, an up-scalable atmospheric-pressure plasma assisted deposition method is introduced to produce a multicomponent coating towards the elaboration of antibacterial and anti-biofilm surfaces. Interestingly, from a single catechol-based monomer, high deposition rates of highly chemically reactive functional thin films bearing catechol as well as quinone groups are achieved. The catechol-bearing thin film allows the in situ silver nanoparticle formation, assessed by scanning electron microscopy and EDX, whilst the enriched-quinone thin film is exploited for immobilizing dispersine B, an enzyme. In vitro functional assays demonstrated the dual antibacterial and anti-biofouling resistance properties of the coatings due to the antibacterial effect of silver and the fouling resistance of grafted dispersine B, respectively. Surfaces coated only with silver provide an antibacterial effect but fail to inhibit bacterial attachment, highlighting the usefulness of such dual-action surfaces. The approach presented here provides a simple and effective chemical pathway to construct powerful antibacterial surfaces for various industrial applications.

摘要

防止细菌在材料表面粘附和形成生物膜是一个具有重大医学和社会意义的课题。在本研究中,引入了一种可扩大规模的大气压等离子体辅助沉积方法,以制备一种多组分涂层,用于制造抗菌和抗生物膜表面。有趣的是,从单一的基于儿茶酚的单体出发,实现了具有高化学反应活性的、带有儿茶酚以及醌基团的功能薄膜的高沉积速率。通过扫描电子显微镜和能谱分析评估,含儿茶酚的薄膜可实现原位银纳米颗粒的形成,而富含醌的薄膜则用于固定一种酶——分散素B。体外功能试验分别证明了涂层具有双重抗菌和抗生物污染抗性特性,这是由于银的抗菌作用以及接枝的分散素B的抗污染性。仅涂覆银的表面具有抗菌作用,但无法抑制细菌附着,突出了这种双功能表面的实用性。本文提出的方法提供了一种简单有效的化学途径,可为各种工业应用构建强大的抗菌表面。

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