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Silver-Releasing Micro-/Nanoporous Coating on Additively Manufactured Macroporous Ti-Ta-Nb-Zr Scaffolds with High Osseointegration and Antibacterial Properties

机译:释放微/纳米多孔涂层,具有高骨整合和抗菌性能的含有碱性制造的大孔TI-TA-NB-ZR支架

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The two major problems of titanium alloy surface of bone/dental implants were the lack of native tissue integration and associated infection. To solve these problems, the development of self-defending implants with intrinsic osteogenic properties has been highlighted, in which titanium alloy surfaces of bone/dental implants are endowed with antibacterial property by silver (Ag) incorporated in biomaterials. In this study, we biofunctionalized the surface of selective laser melting (SLM) manufactured volume-porous Ti-Ta-Nb-Zr scaffolds by using plasma electrolytic oxidation (PEO) as a way to eliminate the peri-operative bacterial load and promote osseointegration. In the experiment, the PEO process operated with three different concentration (1, 1, and 2 g/L) of a AgNO3 solution. As a result, a titanium oxide coating embedded with calcium and phosphorous and Ag was formed by one-step PEO treatment, and a presence of HAp was detected by X-ray diffraction (XRD) and XPS. In addition, Ag ions were found to be released from the scaffolds for at least 28 days, resulting in an effective prevention of bacterial adhesion and a decrease of the number of planktonic bacteria, with no sign of cytotoxicity shown simultaneously. Highly porosity micropores were formed on the surface of scaffolds after oxidation, and the mechanical properties did not show any signs of change. Besides, a strong calcium deposition and osteoconductive effect were found on the surface of PEO-treated Ag scaffolds. To sum up, this study reveals the potential of PEO coatings to biofunctionalize SLM Ti-Ta-Nb-Zr scaffolds with antibacterial agents. The biomaterials developed here, therefore, exploit the biofunctionalized behavior of Ag to offer strong antibacterial behavior and osteogenic promotion without cytotoxicity of Ag against mammalian cells.
机译:骨/牙科植入物钛合金表面的两个主要问题是缺乏天然组织集成和相关感染。为了解决这些问题,已经突出了具有内在成骨特性的自我防守植入物的发展,其中骨/牙科植入物的钛合金表面通过掺入生物材料的银(Ag)赋予抗菌性质。在这项研究中,通过使用等离子体电解氧化(PEO)作为消除PERI-术术的细菌负荷并促进骨整合的方法,生物官能化了选择性激光熔化(SLM)制造的体积多孔Ti-TA-NB-ZR支架。在实验中,PEO工艺用三种不同的浓度(1,1和2g / L)的AgNO 3溶液操作。结果,通过单步PEO处理形成嵌入钙和磷和磷和Ag的氧化钛涂层,并通过X射线衍射(XRD)和XPS检测Hap的存在。此外,发现Ag离子从支架中释放至少28天,导致有效预防细菌粘附和浮游细菌数量的减少,没有同时显示细胞毒性的迹象。在氧化后的支架表面上形成高孔隙率微孔,机械性能没有显示出任何变化的迹象。此外,在PEO处理的Ag支架表面上发现了强烈的钙沉积和骨导电效果。总而言之,本研究揭示了PEO涂层对生物官能化SLM TI-TA-NB-ZR支架具有抗菌剂的潜力。因此,在此开发的生物材料利用AG的生物官能化行为来提供强烈的抗菌性行为和骨质发生促进,而没有AG对哺乳动物细胞的细胞毒性。

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