首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effects of Plasma Treatment on the Bioactivity of Alkali-Treated Ceria-Stabilised Zirconia/Alumina Nanocomposite (NANOZR)
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Effects of Plasma Treatment on the Bioactivity of Alkali-Treated Ceria-Stabilised Zirconia/Alumina Nanocomposite (NANOZR)

机译:等离子体处理对碱处理的二氧化铈稳定氧化锆/氧化铝纳米复合材料(Nanozr)生物活性的影响

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摘要

Zirconia ceramics such as ceria-stabilized zirconia/alumina nanocomposites (nano-ZR) are applied as implant materials due to their excellent mechanical properties. However, surface treatment is required to obtain sufficient biocompatibility. In the present study, we explored the material surface functionalization and assessed the initial adhesion of rat bone marrow mesenchymal stem cells, their osteogenic differentiation, and production of hard tissue, on plasma-treated alkali-modified nano-ZR. Superhydrophilicity was observed on the plasma-treated surface of alkali-treated nano-ZR along with hydroxide formation and reduced surface carbon. A decreased contact angle was also observed as nano-ZR attained an appropriate wettability index. Treated samples showed higher in vitro bovine serum albumin (BSA) adsorption, initial adhesion of bone marrow and endothelial vascular cells, high alkaline phosphatase activity, and increased expression of bone differentiation-related factors. Furthermore, the in vivo performance of treated nano-ZR was evaluated by implantation in the femur of male Sprague–Dawley rats. The results showed that the amount of bone formed after the plasma treatment of alkali-modified nano-ZR was higher than that of untreated nano-ZR. Thus, induction of superhydrophilicity in nano-ZR via atmospheric pressure plasma treatment affects bone marrow and vascular cell adhesion and promotes bone formation without altering other surface properties.
机译:氧化锆陶瓷,例如二氧化铈稳定的氧化锆/氧化铝纳米复合材料(纳米-ZR)由于它们的机械性能优异而施加为植入物。然而,需要表面处理以获得足够的生物相容性。在本研究中,我们探讨了材料表面官能化并评估了大鼠骨髓间充质干细胞,它们的骨质发生分化和硬组织生产的初始粘附性,对等离子体处理的碱改性的纳米Zr。在碱处理的纳米锌的血浆处理表面和氢氧化物形成和降低的表面碳上观察到超级水性。也观察到降低的接触角,因为纳米Zr达到了适当的润湿性指数。处理过的样品显示出较高的体外牛血清白蛋白(BSA)吸附,骨髓和内皮血管细胞的初始粘附性,高碱性磷酸酶活性,以及​​骨分化相关因子的表达增加。此外,通过植入雄性Sprague-Dawley大鼠股骨中的植入治疗纳米Zr的体内性能。结果表明,碱改性纳米Zr等离子体处理后形成的骨量高于未处理的纳米Zr。因此,通过大气压等离子体处理诱导纳米Zr中的超级性激性影响骨髓和血管细胞粘附,并促进骨形成而不改变其他表面性质。

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