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An in vitro bacterial adhesion assessment of surface-modified medical-grade PVC

机译:表面改性医用级PVC的体外细菌附着力评估

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摘要

Medical-grade polyvinyl chloride was surface modified by a multistep physicochemical approach to improve bacterial adhesion prevention properties. This was fulfilled via surface activation by diffuse coplanar surface barrier discharge plasma followed by radical graft copolymerization of acrylic acid through surface-initiated pathway to render a structured high density brush. Three known antibacterial agents, bronopol, benzalkonium chloride, and chlorhexidine, were then individually coated onto functionalized surface to induce biological properties. Various modern surface probe techniques were employed to explore the effects of the modification steps. In vitro bacterial adhesion and biofilm formation assay was performed. Escherichia coli strain was found to be more susceptible to modifications rather than Staphylococcus aureus as up to 85% reduction in adherence degree of the former was observed upon treating with above antibacterial agents, while only chlorhexidine could retard the adhesion of the latter by 50%. Also, plasma treated and graft copolymerized samples were remarkably effective to diminish the adherence of E. coli. (C) 2010 Elsevier B.V. All rights reserved.
机译:医用级聚氯乙烯通过多步物理化学方法进行了表面改性,以提高预防细菌粘附的性能。通过扩散共面的表面势垒放电等离子体进行表面活化,然后通过表面引发的途径进行丙烯酸的自由基接枝共聚,以实现结构化的高密度刷子,从而实现了这一目标。然后将三种已知的抗菌剂,溴硝酚,苯扎氯铵和洗必泰分别涂在功能化的表面上以诱导生物学特性。各种现代表面探针技术被用来探索修饰步骤的效果。进行体外细菌粘附和生物膜形成测定。发现大肠杆菌菌株比金黄色葡萄球菌更易于修饰,因为用上述抗菌剂处理后,前者的黏附度降低了85%,而只有洗必太可将后者的黏附性降低了50%。同样,经等离子体处理和接枝共聚的样品对于减少大肠杆菌的粘附也非常有效。 (C)2010 Elsevier B.V.保留所有权利。

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