Influence of surface topographic morphologies and nanoparticle incorporation on surface properties of pure Ti implants for oral applications

Xun Ma , Zhenyu Ji , Tao Li , Ping Liu , Jingjing Wang , Fengcang Ma , Ke Zhang , Xiaohong Chen , Jiannan Liu , Wei Li
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Abstract

One common problem in using titanium (Ti) dental implants is peri-implantitis. To prevent peri-implantitis on Ti implants in an oral environment, we introduced novel topographic microstructures onto the surfaces of pure Ti implants via sandblasting, acid etching, and hydrothermal treatment before adding ZnO nanocomposite coatings and TiO2 nanocomposite coatings via magnetron sputtering. We comprehensively investigated the influence of surface topographic morphologies and elemental composition of coatings on the physicochemical properties and antibacterial efficacy of the specimens. Our results indicate that the novel topographic surfaces and magnetron sputtered coatings both exhibit good cytocompatibility. Our results also suggest that coating composition, rather than surface topographic morphology, is the primary factor influencing the antibacterial performance of Ti implants. Therefore, the magnetron sputtering of ZnO and TiO2 coatings onto surfaces can be an effective technique for improving the antibacterial properties of Ti implants for oral applications.

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表面形貌和纳米粒子的加入对口腔应用纯 Ti 植入体表面特性的影响
使用钛(Ti)牙科种植体的一个常见问题是种植体周围炎。为了防止口腔环境中的钛种植体发生种植体周围炎,我们通过喷砂、酸蚀和水热处理在纯钛种植体表面引入了新的形貌微结构,然后再通过磁控溅射添加 ZnO 纳米复合涂层和 TiO2 纳米复合涂层。我们全面研究了涂层的表面形貌和元素组成对试样理化性质和抗菌效果的影响。结果表明,新型表面形貌和磁控溅射涂层都具有良好的细胞相容性。我们的结果还表明,影响钛植入体抗菌性能的主要因素是涂层成分,而不是表面形貌。因此,将 ZnO 和 TiO2 涂层磁控溅射到表面是提高口腔应用 Ti 植入体抗菌性能的有效技术。
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