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Antimicrobial metallic copper surfaces kill Staphylococcus haemolyticus via membrane damage

机译:抗菌金属铜表面通过膜破坏杀死溶血性葡萄球菌

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摘要

AbstractRecently, copper (Cu) in its metallic form has regained interest for its antimicrobial properties. Use of metallic Cu surfaces in worldwide hospital trials resulted in remarkable reductions in surface contaminations. Yet, our understanding of why microbes are killed upon contact to the metal is still limited and different modes of action have been proposed. This knowledge, however, is crucial for sustained use of such surfaces in hospitals and other hygiene-sensitive areas. Here, we report on the molecular mechanisms by which the Gram-positive Staphylococcus haemolyticus is inactivated by metallic Cu. Staphylococcus haemolyticus was killed within minutes on Cu but not on stainless steel demonstrating the antimicrobial efficacy of metallic Cu. Inductively coupled plasma mass spectroscopy (ICP-MS) analysis and in vivo staining with Coppersensor-1 indicated that cells accumulated large amounts of Cu ions from metallic Cu surfaces contributing to lethal damage. Mutation rates of Cu- or steel-exposed cells were similarly low. Instead, live/dead staining indicated cell membrane damage in Cu- but not steel-exposed cells. These findings support a model of the cellular targets of metallic Cu toxicity in bacteria, which suggests that metallic Cu is not genotoxic and does not kill via DNA damage. In contrast, membranes constitute the likely Achilles’ heel of Cu surface-exposed cells.
机译:摘要最近,金属形式的铜(Cu)因其抗菌性能而重新受到关注。在全球范围的医院试验中使用金属铜表面可显着减少表面污染。然而,我们对为什么微生物与金属接触后会被杀死的理解仍然有限,并且已经提出了不同的作用方式。但是,这种知识对于在医院和其他对卫生敏感的地区持续使用此类表面至关重要。在这里,我们报告革兰氏阳性的溶血性葡萄球菌被金属铜灭活的分子机制。溶血性葡萄球菌可在数分钟内在铜上杀死,但在不锈钢上没有被杀死,这证明了金属铜的抗菌功效。电感耦合等离子体质谱(ICP-MS)分析和使用Coppersensor-1进行的体内染色表明,细胞从金属Cu表面积累了大量的Cu离子,从而造成了致命的伤害。暴露于铜或钢的细胞的突变率同样较低。相反,活/死染色表明暴露于铜的细胞中细胞膜受损,但未暴露于钢中的细胞中。这些发现支持了细菌中金属铜毒性的细胞靶标模型,这表明金属铜没有遗传毒性,不会通过DNA损伤杀死。相反,膜构成了暴露于铜表面的细胞的致命弱点。

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