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Structure-related antibacterial activity of a titanium nanostructured surface fabricated by glancing angle sputter deposition

机译:掠射角溅射沉积制备的钛纳米结构表面的结构相关抗菌活性

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摘要

The aim of this study was to reproduce the physico-mechanical antibacterial effect of the nanocolumnar cicada wing surface for metallic biomaterials by fabrication of titanium (Ti) nanocolumnar surfaces using glancing angle sputter deposition (GLAD). Nanocolumnar Ti thin films were fabricated by GLAD on silicon substrates. S. aureus as well as E. coli were incubated with nanostructured or reference dense Ti thin film test samples for one or three hours at 37 °C. Bacterial adherence, morphology, and viability were analyzed by fluorescence staining and scanning electron microscopy and compared to human mesenchymal stem cells (hMSCs). Bacterial adherence was not significantly different after short (1 h) incubation on the dense or the nanostructured Ti surface. In contrast to S. aureus the viability of E. coli was significantly decreased after 3 h on the nanostructured film compared to the dense film and was accompanied by an irregular morphology and a cell wall deformation. Cell adherence, spreading and viability of hMSCs were not altered on the nanostructured surface. The results show that the selective antibacterial effect of the cicada wing could be transferred to a nanostructured metallic biomaterial by mimicking the natural nanocolumnar topography.
机译:这项研究的目的是通过使用掠射角溅射沉积(GLAD)制造钛(Ti)纳米柱表面,来再现金属生物材料纳米柱蝉翼表面的物理机械抗菌作用。通过GLAD在硅衬底上制备了纳米柱状Ti薄膜。将金黄色葡萄球菌和大肠杆菌与纳米结构或参考致密的Ti薄膜测试样品在37°C下孵育一小时或三小时。通过荧光染色和扫描电子显微镜分析细菌的粘附,形态和生存力,并与人间充质干细胞(hMSCs)进行比较。在致密的或纳米结构的Ti表面上短时间(1 h)孵育后,细菌粘附没有显着差异。与金黄色葡萄球菌相反,在纳米结构膜上3小时后,与致密膜相比,大肠杆菌的活力显着降低,并伴有不规则形态和细胞壁变形。在纳米结构表面上,hMSC的细胞粘附,扩散和生存力没有改变。结果表明,通过模仿自然的纳米柱形貌,蝉翼的选择性抗菌作用可以转移到纳米结构的金属生物材料上。

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