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Osteogenic activity of a titanium surface modified with silicon-doped titanium dioxide

机译:掺硅二氧化钛改性钛表面的成骨活性

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摘要

Titanium and its alloys are the most widely used implants in clinical practice. However, their bioactivity is unsatisfactory, and the effect of osteogenesis on the bonding interface between the implant and bone needs to be further improved. In this study, a coating consisting of microporous titanium doped with silicon (Si-TiO2) was successfully created by microarc oxidation (MAO), and Si was evenly distributed on the surface of the coating. The surface morphology, roughness, and phase composition of the Si-TiO2 microporous coating were similar to those of the Si-free doped MAO coatings. The Si-TiO2 microporous coating can promote osteoblast adhesion, spreading, proliferation and differentiation. More importantly, the integrin beta 1-FAK signaling pathway may be involved in the regulatory effect of the coating on osteoblasts. Further studies in vivo indicated that the Si-TiO2 microporous coating could improve early stage osseointegration. In conclusion, the Si-TiO2 microporous coating is a feasible way to improve the osteogenic abilities of Ti implants to potentially promote clinical performance.
机译:钛及其合金是临床实践中使用最广泛的植入物。然而,它们的生物活性不能令人满意,并且成骨作用对植入物与骨骼之间的结合界面的影响需要进一步提高。在这项研究中,通过微弧氧化(MAO)成功创建了由掺有硅的微孔钛(Si-TiO2)组成的涂层,并且Si均匀地分布在涂层表面上。 Si-TiO2微孔涂层的表面形貌,粗糙度和相组成与无硅掺杂的MAO涂层相似。 Si-TiO2微孔涂层可以促进成骨细胞的粘附,扩散,增殖和分化。更重要的是,整联蛋白β1-FAK信号通路可能参与了涂层对成骨细胞的调节作用。体内的进一步研究表明,Si-TiO2微孔涂层可以改善早期骨整合。总之,Si-TiO2微孔涂层是提高Ti植入物成骨能力以潜在地提高临床性能的可行方法。

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