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Metallic Copper as an Antimicrobial Surface

机译:金属铜作为抗菌表面

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Bacteria, yeasts, and viruses are rapidly killed on metallic copper surfaces, and the term “contact killing” has been coined for this process. While the phenomenon was already known in ancient times, it is currently receiving renewed attention. This is due to the potential use of copper as an antibacterial material in health care settings. Contact killing was observed to take place at a rate of at least 7 to 8 logs per hour, and no live microorganisms were generally recovered from copper surfaces after prolonged incubation. The antimicrobial activity of copper and copper alloys is now well established, and copper has recently been registered at the U.S. Environmental Protection Agency as the first solid antimicrobial material. In several clinical studies, copper has been evaluated for use on touch surfaces, such as door handles, bathroom fixtures, or bed rails, in attempts to curb nosocomial infections. In connection to these new applications of copper, it is important to understand the mechanism of contact killing since it may bear on central issues, such as the possibility of the emergence and spread of resistant organisms, cleaning procedures, and questions of material and object engineering. Recent work has shed light on mechanistic aspects of contact killing. These findings will be reviewed here and juxtaposed with the toxicity mechanisms of ionic copper. The merit of copper as a hygienic material in hospitals and related settings will also be discussed.
机译:细菌,酵母和病毒在金属铜表面上迅速被杀死,为此过程创造了“接触杀灭”一词。虽然这种现象在古代已广为人知,但目前正受到新的关注。这是由于在医疗保健环境中可能将铜用作抗菌材料。观察到以每小时至少7到8个对数的速度发生接触杀灭,长时间孵育后,通常不会从铜表面回收活微生物。铜和铜合金的抗菌活性现已确立,并且铜最近已在美国环境保护署注册为第一种固体抗菌材料。在数项临床研究中,已经对铜在接触表面(例如门把手,浴室固定装置或床栏)上的使用进行了评估,以试图遏制医院内感染。关于铜的这些新应用,重要的是要了解接触杀灭的机制,因为它可能涉及到中心问题,例如是否可能出现和传播抗性生物,清洁程序以及材料和对象工程问题。最近的工作阐明了接触杀灭的机理。这些发现将在这里进行回顾,并与离子铜的毒性机理并列。还将讨论铜在医院及相关场所中作为卫生材料的优点。

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