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Evaluation of biocidal efficacy of copper alloy coatings in comparison with solid metal surfaces: generation of organic copper phosphate nanoflowers

机译:与固体金属表面相比评估铜合金涂层的杀生物功效:产生有机磷酸铜纳米花

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Aims To analyse the biocidal efficacy of thermal sprayed copper surfaces. Methods and Results Copper alloy sheet metals containing >60% copper have been shown to exhibit potent biocidal activity. Surface biocidal activity was assessed by epifluorescence microscopy. After 2-h exposure at 20 degrees C in phosphate-buffered saline (PBS), contact killing of Gram-negative Escherichia coli and Gram-positive Staphylococcus epidermidis by brass sheet metal and phosphor bronze was 34-times higher than that by stainless steel. SEM observations revealed that the surface membranes of both bacterial strains were slightly more irregular when exposed to brass sheet metal than stainless steel. However, when exposed to phosphor bronze coating, E.coli were 34 times larger with irregular membrane morphology. In addition, the majority of the cells were associated with spherical carbon-copper-phosphate crystalline nanostructures characteristic of nanoflowers. The membranes of many of the S.epidermidis exhibited blebbing, and a small subset was also associated with nanoflowers. Conclusions Our data indicate that increasing the surface roughness of copper alloys had a pronounced impact on the membrane integrity of Gram-positive and, to a lesser degree, Gram-negative bacteria. In the presence of PBS, carbon-copper-phosphate-containing nanoflowers were formed, likely nucleated by components derived from killed bacteria. The intimate association of the bacteria with the nanoflowers and phosphor bronze coating likely contributed to their nonreversible adhesion. Significance and Impact of the Study Thermal spraying of copper alloys provides a strategy for the rapid coating of three-dimensional organic and inorganic surfaces with biocidal copper alloys. Our study demonstrates that the macroscale surface roughness generated by the thermal spray process enhances the biocidal activity of copper alloys compared with the nanoscale surface roughness of copper sheet metals. Moreover, the coating surface topography provides conditions for the rapid formation of organic copper phosphate nanocrystalsanoflowers.
机译:目的分析热喷涂铜表面的杀生物效力。方法和结果显示,含铜量> 60%的铜合金薄板具有很强的杀菌活性。通过表面荧光显微镜评估表面杀生物活性。在20摄氏度的磷酸盐缓冲盐水(PBS)中暴露2小时后,黄铜金属薄板和磷青铜对革兰氏阴性大肠杆菌和革兰氏阳性表皮葡萄球菌的接触杀灭作用比不锈钢高34倍。 SEM观察表明,两种细菌菌株的表面膜在暴露于黄铜薄板时都比不锈钢稍微不规则。但是,当暴露于磷青铜涂层时,大肠杆菌的大小是不规则膜形态的34倍。另外,大多数细胞与纳米花的球形碳-铜-磷酸盐晶体纳米结构有关。许多表皮葡萄球菌的膜表现出起泡,一小部分也与纳米花有关。结论我们的数据表明,增加铜合金的表面粗糙度对革兰氏阳性菌和革兰氏阴性菌的膜完整性有显着影响。在PBS的存在下,形成了含碳-铜-磷酸的纳米花,其可能被源自杀死细菌的成分成核。细菌与纳米花和磷青铜涂层的紧密结合可能是导致它们不可逆转的粘附的原因。研究的意义和影响铜合金的热喷涂为用杀生物的铜合金快速涂覆三维有机和无机表面提供了一种策略。我们的研究表明,与铜板金属的纳米级表面粗糙度相比,热喷涂工艺产生的宏观表面粗糙度增强了铜合金的杀菌活性。此外,涂层表面形貌为快速形成有机磷酸铜纳米晶体/纳米花提供了条件。

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