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首页> 外文期刊>Journal of biomedical materials research, Part A >The impact of grafted modification of silicone surfaces with quantum-sized materials on protein adsorption and bacterial adhesion
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The impact of grafted modification of silicone surfaces with quantum-sized materials on protein adsorption and bacterial adhesion

机译:量子尺寸材料接枝改性有机硅表面对蛋白质吸附和细菌粘附的影响

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The majority of the infections associated with the biomedical devices including cardiovascular implants and catheters are instigated by the adhesion of bacteria including staphylococcus aureus, which is subsequently followed by biofilm formation. Keeping in mind the detrimental effect of bacterial adhesion, the objective of the study is to probe the impact of grafted modification of silicone surfaces with quantum-sized carbon on biofilm formation. Also, explored is the effect of protein adsorption on modified surface and its subsequent influence on bacterial adhesion. We compare and contrast the architecture and foot print of protein adsorption on unmodified and modified model silicone surfaces on bacterial adhesion. The study underscores that protein adsorption on quantum-sized carbon-grafted surface acts as a repellant for bacterial adhesion because of steric repulsion between the negatively charged protein and bacteria. Thus, we establish here the efficacy of modified surfaces in preventing biofilm formation.
机译:与包括心血管植入物和导管在内的生物医学装置有关的大多数感染是通过细菌粘附(包括金黄色葡萄球菌)而引起的,随后细菌形成生物膜。考虑到细菌粘附的不利影响,该研究的目的是探究用量子大小的碳对有机硅表面进行接枝改性对生物膜形成的影响。此外,还探讨了蛋白质吸附在修饰表面上的作用及其对细菌粘附的后续影响。我们比较和对比未修饰的和修饰的模型有机硅表面细菌粘附的蛋白质吸附的体系结构和足迹。这项研究强调,由于带负电荷的蛋白质与细菌之间存在空间排斥,因此蛋白质在量子大小的碳接枝表面上的吸附可作为细菌粘附的排斥剂。因此,我们在这里建立了修饰的表面在防止生物膜形成方面的功效。

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