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Investigation of an improved electricidal coating for inhibiting biofilm formation on urinary catheters

机译:尿动导管抑制生物膜形成的改进电涂层

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A catheter coating consisting of polydimethylsiloxane (PDMS) mixed with powdered metals silver and zinc has been investigated. The coating is easily applicable to existing silicone devices and effective in inhibiting the formation of biofilm. Following manufacturing of the coating, its surface materials characteristics were analyzed through scanning electron microscopy (SEM) and energy dispersive X-ray (EDX). The antibacterial properties of the coating were investigated by applying a thin film to the surface of a standard silicone catheter. A unique coating formulation of zinc and silver was found to inhibit biofilm and planktonic growth ofE. coliover a six-day period, seemingly related to the release of heavy metal ions, generation of electric fields, hydrogen peroxide formation or combinations of these effects. Open-circuit cell potential for a zinc and silver foil was measured to be 1.2?V and 0.97?V within a deionized (DI) water and urine solution, respectively. Zone of inhibition experimental results suggest the possibility of silver ion diffusion when using mixed metals since bacteria formation is inhibited beyond the sample edge. Hydrogen peroxide measurements were taken over a period of 13 days for all samples. Samples containing zinc were found to produce hydrogen peroxide, a known antimicrobial agent. Wettability measurements of samples showed that the introduction of active materials lead to an increase of hydrophilicity, potentially affecting bacterial adhesion.
机译:研究了由与粉末金属银和锌混合的聚二甲基硅氧烷(PDMS)组成的导管涂层。涂层易于适用于现有的硅氧烷装置,可有效抑制生物膜的形成。在制造涂层之后,通过扫描电子显微镜(SEM)和能量分散X射线(EDX)分析其表面材料特性。通过将薄膜施加到标准硅氧烷导管的表面上来研究涂层的抗菌性质。发现锌和银的独特涂层配方抑制生物膜和浮游生生长。 Coliover六天的时间,似乎与释放重金属离子,电场产生,过氧化氢形成或这些效果的组合。在去离子(DI)水和尿液溶液中,测量锌和银箔的开路电池电位为1.2〜V和0.97·V.抑制区域实验结果表明,由于抑制了超出样品边缘的细菌形成,因此在使用混合金属时,银离子扩散的可能性。所有样品的过氧化氢测量均为13天的时间。发现含锌的样品产生过氧化氢,已知的抗微生物剂。样品的润湿性测量表明,引入活性材料导致亲水性的增加,可能影响细菌粘附。

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