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同时将氧化镓和钽微颗粒掺入具有抗菌作用和刺激细胞反应的钛微弧氧化涂层中。

Simultaneous incorporation of gallium oxide and tantalum microparticles into micro-arc oxidation coating of titanium possessing antibacterial effect and stimulating cellular response.

机构信息

Key Laboratory for Ultrafine Materials of Ministry of Education, East China University of Science and Technology, Shanghai 200237, China.

Department of Orthopaedics, Shanghai Eighth People's Hospital, Shanghai 200235, China.

出版信息

Biomater Adv. 2022 Apr;135:212736. doi: 10.1016/j.bioadv.2022.212736. Epub 2022 Apr 22.

Abstract

Orthopedic implants with both osteogenesis and antibacterial functions are particularly promising for bone repair and substitutes. In this study, a micro-arc oxidation (MAO) coating containing titanium dioxide (TiO), gallium oxide (GaO) and tantalum oxide (TaO) on the titanium surface (MGT) was fabricated by dispersing GaO and Ta microparticles in the electrolyte. The results showed that the simultaneous incorporation of GaO and Ta microparticles into the MAO coating resulted in optimized surface performance (e.g., micro-topography, roughness, wettability, surface energy, and protein absorption) of MGT compared with pure titanium (pTi). In addition, MGT exhibited outstanding corrosion resistance owing to the presence of both GaO and Ta microparticles, which exhibit excellent corrosion resistance and their microparticles were incorporated into the micropores of the coating. Moreover, MGT with good cytocompatibility and optimized surface resulted in improved cellular responses (e.g., proliferation and osteogenic differentiation) of rat bone mesenchymal stem cells, which was attributed to Ta microparticles with outstanding osteogenic bioactivity. Furthermore, the excellent antibacterial effect of MGT was attributed to the slow release of Ga from the coating. Thus, the simultaneous incorporation of GaO and Ta microparticles into the MAO coating of MGT exhibited excellent cytocompatibility, osteogenic bioactivity, antibacterial functions, and corrosion resistance, suggesting that MGT possesses great potential for bone repair applications.

摘要

具有成骨和抗菌功能的骨科植入物在骨修复和替代方面具有很大的应用前景。本研究采用在电解液中分散 GaO 和 Ta 纳米颗粒的方法,在钛表面制备了一种含有 TiO、GaO 和 TaO 的微弧氧化(MAO)涂层(MGT)。结果表明,与纯钛(pTi)相比,GaO 和 Ta 纳米颗粒的同时掺入使 MGT 的表面性能(如微观形貌、粗糙度、润湿性、表面能和蛋白质吸收)得到优化。此外,由于 GaO 和 Ta 纳米颗粒的存在,MGT 表现出优异的耐腐蚀性,其纳米颗粒被掺入涂层的微孔中。此外,MGT 具有良好的细胞相容性和优化的表面,导致大鼠骨髓间充质干细胞的细胞反应(如增殖和成骨分化)得到改善,这归因于具有出色成骨生物活性的 Ta 纳米颗粒。此外,MGT 的优异抗菌效果归因于涂层中 Ga 的缓慢释放。因此,GaO 和 Ta 纳米颗粒的同时掺入 MGT 的 MAO 涂层表现出优异的细胞相容性、成骨生物活性、抗菌功能和耐腐蚀性,表明 MGT 具有很大的骨修复应用潜力。

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