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Influence of Material Composition on Structure, Surface Properties and Biological Activity of Nanocrystalline Coatings Based on Cu and Ti

机译:基于Cu和Ti的纳米晶体涂层结构,表面性质和生物活性的影响

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In this paper, the influence of material composition on structure and surface properties of bioactive coatings based on Cu and Ti is described. Nanocrystalline coatings were prepared by innovative pulsed DC magnetron sputtering. For their preparation, a multi-magnetron system was used in order to obtain films with various copper content. The main goal of our work was the complex analysis of biological activity of Cu-Ti films in comparison with their material composition and surface state. Antimicrobial activity (for E. coli and S. aureus), as well as the impact on cell viability (L929 line), were investigated. The physicochemical properties were examined with the aid of X-ray diffraction, scanning electron microscopy, X-ray photoelectron spectroscopy, and atomic absorption spectroscopy. It was found that all prepared films were nanocrystalline and bactericidal, but their cytotoxicity was related to the Cu-content in the film. Complex analysis of the bioactivity was developed in relation to the copper ion migration process. Moreover, manufacturing of antibacterial films with stimulating action on L929 cell line was possible.
机译:本文描述了材料组合物对基于Cu和Ti的生物活性涂层结构和表面性质的影响。通过创新的脉冲DC磁控溅射制备纳米晶涂层。为其制备,使用多磁控系统以获得具有各种铜含量的薄膜。我们作品的主要目的是与其材料组成和表面状态相比,Cu-Ti薄膜生物活性的复杂分析。研究了抗微生物活性(对于大肠杆菌和金黄色葡萄球菌),以及对细胞活力(L929线)的影响。借助于X射线衍射,扫描电子显微镜,X射线光电子能谱和原子吸收光谱检查物理化学性质。发现所有制备的薄膜都是纳米晶和杀菌,但它们的细胞毒性与膜中的Cu含量有关。与铜离子迁移过程有关的复杂分析生物活性。此外,可以在L929细胞系上制造具有刺激作用的抗菌膜。

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