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Staphylococcus Epidermidis Adhesion to Modified Polycarbonate Surfaces:Gold and SAMs Coated

机译:表皮葡萄球菌粘附到改性聚碳酸酯表面:金和SAMs涂层

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Bacterial adhesion to a biomaterial surface is thought to be the key step in the infection of indwelling medical devices and constitutes an object of study in the demand to reduce nosocomial infections.In this work,specific modifications on polycarbonate outer layer were utilized as model surfaces for the study of the adhesion of Staphylococcus epidermidis,one of the main microorganisms responsible for nosocomial infections.The effect of gold coating on staphylococcal adhesion was assessed,as well as of subsequent coverage with different self-assembled monolayers(SAMs):two SAMs with a methyl terminal group and hydrophobic character and two hydrophilic SAMs with a carboxylic acid terminal group.Variations in the aliphatic chain length were also tested.A SAM with a calix-crown molecule was also created to immobilize a specific protein and its antibody.The extent of staphylococcal adhesion to methyl terminated SAMS was reduced compared to the number of cells adhered to the carboxyl acid terminated SAMs,demonstrating that methyl terminated SAMs constituted more suitable surfaces in preventing bacterial adhesion.The calix-crown molecule favours high levels of adhesion due to its non-specific bonding nature and geometrical configuration.However,when a specific protein is linked to calix-crown,bacterial adhesion occurs to a much lower extent.The results obtained in this work have a potential practical significance showing that the use of certain SAMs as surface modifiers may constitute a successful method in the reduction of bacterial adhesion to biomedical surfaces.
机译:细菌粘附到生物材料表面被认为是留置医疗器械感染的关键步骤,并且是减少医院感染的需求中的研究对象。在这项工作中,聚碳酸酯外层的特定改性被用作模型表面表皮葡萄球菌是医院感染的主要微生物之一的粘附性的研究。评估了金涂层对葡萄球菌粘附的影响,以及随后覆盖了不同的自组装单层膜(SAMs):两个SAMs甲基末端基团和疏水特性,以及两个带有羧酸末端基团的亲水性SAMs,还测试了脂肪族链长的变化,还创建了一个带有杯状冠分子的SAM,以固定特定蛋白质及其抗体。与粘附在羧酸上的细胞数量相比,葡萄球菌对甲基末端SAMS的粘附减少末端的SAMs,表明甲基封端的SAMs在防止细菌粘附方面构成了更合适的表面。杯状冠状分子由于其非特异性的键合性质和几何构型而倾向于高水平的附着性。在这项工作中获得的结果具有潜在的实际意义,表明使用某些SAM作为表面改性剂可能是减少细菌与生物医学表面粘附的成功方法。

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