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首页> 外文期刊>International Journal of Nanomedicine >Tuning the surface microstructure of titanate coatings on titanium implants for enhancing bioactivity of implants
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Tuning the surface microstructure of titanate coatings on titanium implants for enhancing bioactivity of implants

机译:调整钛植入物上钛酸盐涂层的表面微观结构,以增强植入物的生物活性

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Abstract: Biological performance of artificial implant materials is closely related to their surface characteristics, such as microtopography, and composition. Therefore, convenient fabrication of artificial implant materials with a cell-friendly surface structure and suitable composition was of great significance for current tissue engineering. In this work, titanate materials with a nanotubular structure were successfully fabricated through a simple chemical treatment. Immersion test in a simulated body fluid and in vitro cell culture were used to evaluate the biological performance of the treated samples. The results demonstrate that the titanate layer with a nanotubular structure on Ti substrates can promote the apatite-inducing ability remarkably and greatly enhance cellular responses. This highlights the potential of such titanate biomaterials with the special nanoscale structure and effective surface composition for biomedical applications such as bone implants.
机译:摘要:人工植入材料的生物性能与其表面特性(如微观形貌和组成)密切相关。因此,方便制造具有细胞友好的表面结构和合适的组成的人工植入材料对于当前的组织工程具有重要意义。在这项工作中,通过简单的化学处理成功地制造了具有纳米管结构的钛酸酯材料。使用模拟体液中的浸入测试和体外细胞培养来评估处理后样品的生物学性能。结果表明,钛基体上具有纳米管结构的钛酸酯层可以显着提高磷灰石的诱导能力,并大大增强细胞反应。这突出了这种具有特殊纳米级结构和有效表面组成的钛酸酯生物材料在生物医学应用(如骨植入物)中的潜力。

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