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Bacterial Surface Colonization of Sputter-Coated Platinum Films

机译:溅射镀铂膜的细菌表面定殖

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摘要

Due to its biocompatibility and advantageous electrochemical properties, platinum is commonly used in the design of biomedical devices, e.g., surgical instruments, as well as electro-medical or orthopedic implants. This article verifies the hypothesis that a thin layer of sputter-coated platinum may possess antibacterial effects. The purpose of this research was to investigate the adhesion and growth ability of a model strain of Gram-negative bacteria, on a surface of a platinum-coated glass slide. Although some previous literature reports suggests that a thin layer of platinum would inhibit the formation of bacterial biofilm, the results of this study suggest otherwise. The decrease in the number of bacterial cells attached to the platinum-coated glass, which was observed within first three hours of culturing, was found to be a short-time effect, vanishing after 24 h. Consequently, it was shown that a thin layer of sputter-coated platinum did not exhibit any antibacterial effect. For this reason, this study indicates an urgent need for the development of new methods of surface modification that could reduce bacterial surface colonization of platinum-based biomedical devices.
机译:由于其生物相容性和有利的电化学性能,铂通常用于生物医学装置的设计,例如外科手术器械以及电子医学或整形外科植入物。本文验证了一种假设,即溅射镀铂薄层可能具有抗菌作用。这项研究的目的是研究革兰氏阴性细菌模型菌株在涂有铂的玻璃载玻片表面上的粘附和生长能力。尽管一些先前的文献报道表明铂的薄层会抑制细菌生物膜的形成,但这项研究的结果却相反。在培养的前三个小时内观察到附着在镀铂玻璃上的细菌细胞数量减少,这是一种短期效应,在24小时后消失。结果表明,溅射镀铂的薄层没有显示任何抗菌作用。因此,这项研究表明迫切需要开发新的表面修饰方法,以减少基于铂的生物医学装置的细菌表面定殖。

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