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Antibacterial surfaces by adsorptive binding of polyvinyl-sulphonate- stabilized silver nanoparticles

机译:聚乙烯磺酸盐稳定的银纳米粒子吸附结合的抗菌表面

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摘要

This paper presents a novel and facile method for the generation of efficient antibacterial coatings which can be applied to practically any type of substrate. Silver nanoparticles were stabilized with an adsorbed surface layer of polyvinyl sulphonate (PVS). This steric layer provided excellent colloidal stability, preventing aggregation over periods of months. PVS-coated silver nanoparticles were bound onto amine-containing surfaces, here produced by deposition of an allylamine plasma polymer thin film onto various substrates. SEM imaging showed no aggregation upon surface binding of the nanoparticles; they were well dispersed on amine surfaces. Such nanoparticle-coated surfaces were found to be effective in preventing attachment of Staphylococcus epidermidis bacteria and also in preventing biofilm formation. Combined with the ability of plasma polymerization to apply the thin polymeric binding layer onto a wide range of materials, this method appears promising for the fabrication of a wide range of infection-resistant biomedical devices.
机译:本文提出了一种新颖,简便的方法来生成有效的抗菌涂料,该涂料可应用于几乎任何类型的基材。银纳米颗粒用聚乙烯磺酸盐(PVS)的吸附表面层稳定。该空间层提供了出色的胶体稳定性,可防止几个月内的聚集。涂有PVS的银纳米颗粒被结合到含胺的表面上,此处是通过将烯丙胺等离子聚合物薄膜沉积到各种基材上而产生的。 SEM图像显示纳米粒子表面结合后没有聚集;它们很好地分散在胺表面上。发现这种纳米颗粒涂覆的表面可有效防止表皮葡萄球菌的附着并防止生物膜的形成。结合等离子体聚合将薄的聚合物粘结层施加到各种材料上的能力,该方法似乎有望用于制造各种抗感染的生物医学装置。

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