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Delicate Refinement of Surface Nanotopography by Adjusting TiO2 Coating Chemical Composition for Enhanced Interfacial Biocompatibility

机译:通过调整TiO2涂层化学成分以增强界面生物相容性,精细细化表面纳米形貌。

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Surface topography and chemistry have significant influences on the biological performance of biomedical implants. Our aim is to produce an implant surface with favorable biological properties by dual modification of surface chemistry and topography in one single simple process. In this study, because of its chemical stability, excellent corrosion resistance, and biocompatibility, titanium oxide (TiO2) was chosen to coat the biomedical Ti alloy implants. Biocompatible elements (niobium (Nb) and silicon (Si)) were introduced into TiO2 matrix to change the surface chemical composition and tailor the thermophysical properties, which in turn leads to the generation of topographical features under specific thermal history of plasma spraying. Results demonstrated that introduction of Nb2O5 resulted in the formation of Ti_(0.95)Nb_(0.95)O4 solid solution and led to the generation of nanoplate network structures on the composite coating surface. By contrast, the addition of SiO2 resulted in a hairy nanostructure and coexistence of rutile and quartz phases in the coating. Additionally, the introduction of Nb2O5 enhanced the corrosion resistance of TiO2 coating, whereas SiO2 did not exert much effect on the corrosion behaviors. Compared to the TiO2 coating, TiO2 coating doped with Nb2O5 enhanced primary human osteoblast adhesion and promoted cell proliferation, whereas TiO2 coatings with SiO2 were inferior in their bioactivity, compared to TiO2 coatings. Our results suggest that the incorporation of Nb2O5 can enhance the biological performance of TiO2 coatings by changing the surface chemical composition and nanotopgraphy, suggesting its potential use in modification of biomedical TiO2 coatings in orthopedic applications.
机译:表面形貌和化学性质对生物医学植入物的生物学性能有重大影响。我们的目标是在一个简单的过程中通过对表面化学和形貌的双重修改来生产具有良好生物学特性的植入物表面。在这项研究中,由于其化学稳定性,优异的耐腐蚀性和生物相容性,选择了氧化钛(TiO2)来包覆生物医学钛合金植入物。将生物相容性元素(铌(Nb)和硅(Si))引入TiO2基质中,以改变表面化学成分并调整热物理性质,从而导致在等离子喷涂的特定热历史下产生形貌特征。结果表明,Nb2O5的引入导致Ti_(0.95)Nb_(0.95)O4固溶体的形成,并导致在复合涂层表面生成纳米板网络结构。相比之下,SiO 2的添加导致了毛状纳米结构以及涂层中金红石相和石英相的共存。另外,Nb2O5的引入增强了TiO2涂层的耐腐蚀性,而SiO2对腐蚀行为的影响不大。与TiO2涂层相比,掺有Nb2O5的TiO2涂层增强了人类原代成骨细胞的附着力并促进了细胞增殖,而与TiO2涂层相比,具有SiO2的TiO2涂层的生物活性较差。我们的结果表明,Nb2O5的掺入可以通过改变表面化学组成和纳米形貌来增强TiO2涂层的生物学性能,表明其在整形外科应用中对生物医学TiO2涂层改性的潜在用途。

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