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Advanced titanium dioxide-polytetrafluorethylene (TiO_2-PTFE) nanocomposite coatings on stainless steel surfaces with antibacterial and anti-corrosion properties

机译:不锈钢表面具有抗菌和防腐性能的高级二氧化钛-聚四氟乙烯(TiO_2-PTFE)纳米复合涂料

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Bacterial infection and corrosion are two of the most common causes of the failure for the use of biomedical metallic implants. In this paper, we developed a facile two-step approach for synthesizing a TiO2-PTFE nanocomposite coating on stainless steel substrate with both antibacterial and anticorrosion properties by using a solgel dip coating technique. A sub-layer of bioinspired polydopamine (PDA) was first coated on the stainless steel substrate to improve the adhesion and reactivity, then TiO2-PTFE was uniformly co-deposited onto the PDA sublayer. Both PTFE and TiO2 contents had a significant influence on the surface energy of the TiO2-PTFE coating. The coating with the total surface energy of 26 mJ/m(2) exhibited minimal bacterial adhesion against both Gramnegative Escherichia coli WT F1693 and Gram-positive Staphylococcus aureus F1557, which was explained using the extended DLVO theory. Benefiting from the synergistic effect between TiO2 and PTFE, the TiO2-PTFE coating showed improved corrosion resistance in artificial body fluids compared with the sole TiO2 coating or PTFE coating. The TiO2-PTFE coating also demonstrated extraordinary biocompatibility with fibroblast cells in culture, making it a prospective strategy to overcome current challenges in the use of metallic implants.
机译:细菌感染和腐蚀是使用生物医学金属植入物失败的两个最常见原因。在本文中,我们开发了一种简便的两步法,通过使用溶胶凝胶浸涂技术在不锈钢基材上合成具有抗菌和防腐性能的TiO2-PTFE纳米复合涂层。首先将生物启发性聚多巴胺(PDA)的亚层涂覆在不锈钢基材上,以提高粘附性和反应性,然后将TiO2-PTFE均匀地共沉积在PDA亚层上。 PTFE和TiO2的含量均对TiO2-PTFE涂层的表面能产生重大影响。总表面能为26 mJ / m(2)的涂层表现出对革兰氏阴性大肠杆菌WT F1693和革兰氏阳性金黄色葡萄球菌F1557的最小细菌粘附力,这使用扩展DLVO理论进行了解释。得益于TiO2和PTFE的协同作用,与单独的TiO2涂层或PTFE涂层相比,TiO2-PTFE涂层在人造体液中显示出更高的耐腐蚀性。 TiO2-PTFE涂层还表现出与培养中的成纤维细胞非凡的生物相容性,使其成为克服当前使用金属植入物的挑战的前瞻性策略。

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