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Adhesion and bactericidal properties of nanostructured surfaces dependent on bacterial motility

机译:纳米结构表面取决于细菌运动的粘附性和杀菌性能

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Different nanostructured surfaces have bactericidal properties that arise from the interaction between the bacteria and the nanostructured surface. In this study, we focused on the relationship between bacterial motility and bactericidal properties. The motility of Escherichia coli ( E. coli ) was tuned by genetic engineering, and four types of E. coli (wild type (WT), lacking flagella, and flagellated with deficient motility or deficient chemotaxis) were used to evaluate the adhesion and bactericidal properties of nanostructured surfaces. Cicada ( Cryptotympana facialis ) wings and Si nano-pillar array substrates were used as natural and artificial nanostructured surfaces, respectively. Differences in motility and chemotaxis strongly influenced the adhesion behavior and to some extent, the damage to the cell membrane. These results suggest that the bactericidal properties of nanostructured surfaces depend on bacterial motility.
机译:不同的纳米结构表面具有从细菌和纳米结构之间的相互作用产生的杀菌性质。在这项研究中,我们专注于细菌运动与杀菌性能之间的关系。通过基因工程调整大肠杆菌(大肠杆菌)的动力,并使用四种类型的大肠杆菌(野生型(WT),缺乏鞭毛,并且含有缺乏的运动或缺乏的趋化性)来评估粘附和杀菌剂纳米结构表面的性质。蝉(Cryptotympana facialis)翅膀和Si纳米柱阵列衬底分别用作天然纳米结构表面。运动性和趋化性的差异强烈影响了粘附性行为和一定程度的损伤对细胞膜的损伤。这些结果表明纳米结构表面的杀菌性能取决于细菌运动。

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