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Novel fabrication of nano-rod array structures on titanium and in vitro cell responses

机译:钛上纳米棒阵列结构的新型制备和体外细胞反应

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Nano-scale rod arrays of titania were fabricated on titanium surface by a glass phase topotaxy growth (GPT) method, which was featured by an interfacial reaction between sodium tetraborate coating and the preheated metallic titanium at elevated temperature. The samples were characterized by thin-film X-ray diffraction (XRD), scanning electron microscope (SEM), profilometer and contact angle measurement. Thin-film XRD analysis indicated that the nano-rod arrays were composed of pure rutile titania phase. SEM images showed that these rutile rods were 100-200 nm wide and 1-2 urn long. The nano-rod arrays had significantly higher average roughness (P < 0.05) and greater hydrophilicity (P < 0.05) compared to the control. Human embryonic palatal mesenchymal (HEPM) cells were grown to evaluate in vitro cell responses to the nano-rod array structures in terms of cell attachment and proliferation. An equivalent high attachment rate of 94% was observed after 4-h incubation, but a lower proliferation rate was observed on the nano-rod array after 12-day culture compared to the control (P < 0.05).
机译:通过玻璃相波托法(GPT)方法在钛表面制备了纳米级的二氧化钛棒状阵列,其特征在于四硼酸钠涂层与预热的金属钛在高温下的界面反应。通过薄膜X射线衍射(XRD),扫描电子显微镜(SEM),轮廓仪和接触角测量来表征样品。薄膜XRD分析表明,纳米棒阵列由纯金红石型二氧化钛相组成。 SEM图像显示这些金红石棒的宽度为100-200nm,长度为1-2μm。与对照相比,纳米棒阵列具有明显更高的平均粗糙度(P <0.05)和更大的亲水性(P <0.05)。使人胚胎me间充质(HEPM)细胞生长,以评估细胞对纳米棒阵列结构的体外细胞附着和增殖反应。孵育4小时后,观察到了94%的等效高附着率,但与对照组相比,在培养12天后纳米棒阵列上观察到了更低的增殖率(P <0.05)。

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