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Dual properties of zirconia coated porous titanium for a stiffness enhanced bio-scaffold

机译:氧化锆涂覆的多孔钛的双重性质,用于增强刚度的生物支架

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摘要

Porous titanium (Ti)-based scaffolds are a promising approach for achieving stiffness reduction. To be used as a biomaterial, porous Ti scaffolds (P-Ti) must have suitable wear and corrosion resistance and the generation of either metallic wear debris or Ti ion release should be insignificant throughout a large timescale. The present study combines a porous structure appropriate for cell ingrowth with a physically and chemically stable thin-film coating to create a load-bearing bio-inspired scaffold. The as-designed zirconia-coated P-Ti (Z-P-Ti) was made via a hydrothermal process, followed by a sol-gel method. Mechanical tests were conducted primarily on P-Ti, and chemical stability tests were conducted on Z-P-Ti. The biocompatibility test results correlated with cell mitigation into Z-P-Ti were compared with those for reference surfaces. The results show that Z-P-Ti is load-bearable with an increased surface hardness and roughness. 3T3 cell morphology and viability assessed using the live/dead cell staining protocol show a significant enhancement of cell affinity on the surface of Z-P-Ti. The combination of porous Ti, a load-bearable structure, and biocompatible zirconia coating makes the designed biomaterial promising for many applications, such as vertebral discs. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多孔钛(Ti)基支架是实现刚度降低的一种有前途的方法。要用作生物材料,多孔Ti支架(P-Ti)必须具有合适的耐磨性和耐腐蚀性,并且金属磨损碎片或Ti离子释放的产生在整个长时间范围内都应忽略不计。本研究将适合细胞向内生长的多孔结构与物理和化学稳定的薄膜涂层相结合,从而形成了具有生物启发性的承重支架。通过水热法,然后通过溶胶-凝胶法制备设计好的氧化锆涂层的P-Ti(Z-P-Ti)。机械测试主要在P-Ti上进行,化学稳定性测试在Z-P-Ti上进行。将与细胞缓解Z-P-Ti相关的生物相容性测试结果与参考表面的生物相容性测试结果进行了比较。结果表明,Z-P-Ti具有良好的承载能力,并具有提高的表面硬度和粗糙度。使用活细胞/死细胞染色方案评估的3T3细胞形态和活力显示Z-P-Ti表面的细胞亲和力显着提高。多孔钛,可承受载荷的结构和生物相容性氧化锆涂层的结合,使这种设计的生物材料有望在许多应用中发挥作用,例如椎间盘。 (C)2017 Elsevier Ltd.保留所有权利。

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