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Surface thermal oxidation on titanium implants to enhance osteogenic activity and in vivo osseointegration

机译:表面上钛种植体的热氧化,以增强成骨活性和体内骨结合

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Thermal oxidation, which serves as a low-cost, effective and relatively simple/facile method, was used to modify a micro-structured titanium surface in ambient atmosphere at 450?°C for different time periods to improve in vitro and in vivo bioactivity. The surface morphology, crystallinity of the surface layers, chemical composition and chemical states were evaluated by field-emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS). Cell behaviours including cell adhesion, attachment, proliferation, and osteogenic differentiation were observed in vitro study. The ability of the titanium surface to promote osseointegration was evaluated in an in vivo animal model. Surface thermal oxidation on titanium implants maintained the microstructure and, thus, both slightly changed the nanoscale structure of titanium and enhanced the crystallinity of the titanium surface layer. Cells cultured on the three oxidized titanium surfaces grew well and exhibited better osteogenic activity than did the control samples. The in vivo bone-implant contact also showed enhanced osseointegration after several hours of oxidization. This heat-treated titanium enhanced the osteogenic differentiation activity of rBMMSCs and improved osseointegration in vivo, suggesting that surface thermal oxidation could potentially be used in clinical applications to improve bone-implant integration.
机译:用作低成本,有效且相对简单/容易方法的热氧化用于在环境气氛中在450Ω℃下改变微结构化钛表面,以进行不同的时间段,以改善体外和体内生物活性。通过现场排放扫描电子显微镜(FESEM),X射线衍射(XRD)和X射线光电子谱(XPS)评估表面形态,化学成分和化学品的表面形态,化学成分和化学品。在体外研究中观察到包括细胞粘附,附着,增殖和成骨分化的细胞行为。在体内动物模型中评估了钛表面促进骨整合的能力。钛植入物上的表面热氧化保持了微观结构,因此略微改变钛的纳米级结构,增强了钛表面层的结晶度。在三个氧化钛表面上培养的细胞生长良好,并且表现出比对照样品更好的骨质活性。在几小时的氧化后,体内骨植入触点也显示出增强的骨整合。这种热处理的钛增强了RBMMSCs的成骨分化活性,并在体内改善骨整合,表明表面热氧化可能是临床应用中的,以改善骨植入整合。

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