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首页> 外文期刊>Materials science & engineering >Nano-morphology, crystallinity and surface potential of anatase on micro-arc oxidized titanium affect its protein adsorption, cell proliferation and cell differentiation
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Nano-morphology, crystallinity and surface potential of anatase on micro-arc oxidized titanium affect its protein adsorption, cell proliferation and cell differentiation

机译:微弧氧化钛上锐钛矿的纳米形态,结晶度和表面电势影响其蛋白质吸附,细胞增殖和细胞分化

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摘要

Using a novel microwave-assisted hydrothermal (MW) process we created nano-scale anatase on micro-arc-oxidized (MAO) titanium surface. The morphology/crystallinity and surface potential of the anatase which altered by Ca/P ions concentrations and pH in the MW medium were characterized by atomic force microscopy, Kelvin probe force microscopy, Raman spectrometer, and x-ray photoelectron spectroscopy. The surface of MWDD (processed in DD water) and MWCP (in neutral pH medium with Ca/P ions) are covered with anatase spikes, which enhance their nano-roughness, hydrophilicity, and possess lower surface potential than other groups. The nano-precipitates on surface of MWCP9 and MWCP11 (processed in medium containing Ca/P ions at pH 9 or pH 11) were mainly amorphous anatase with less P ions. The protein adsorption of negatively charged bovine serum albumin was higher in MWDD and MWCP groups which possess lower surface potential. The adsorption of positively charged histones on the surface of MWCP11 was higher compared to the other groups. The osteogenic characterizations of D1 mice bone marrow mesenchymal stem cells co-cultured for 1, 7, and 14 days were measured by ALP and osteopontin assays. Although MW groups revealed comparable viability of D1 mice bone marrow mesenchymal stem cells to MAO group, their superior hydrophilicity and higher protein adsorption, thus regulating the differentiation of osteoprogenitor stem cells demonstrating higher ALP and osteopontin secretion after 7 days and 14 days. The nanoscale topography, crystallinity and surface potential change the hydrophilicity and protein adsorption on the MW treated titanium surface, thus regulating the differentiation of osteoprogenitor stem cells in vitro.
机译:使用新颖的微波辅助水热(MW)工艺,我们在微弧氧化(MAO)钛表面上创建了纳米级锐钛矿。通过原子力显微镜,开尔文探针力显微镜,拉曼光谱仪和X射线光电子能谱表征了MW介质中Ca / P离子浓度和pH改变的锐钛矿的形态/结晶度和表面电势。 MWDD(在DD水中处理)和MWCP(在具有Ca / P离子的中性pH介质中)的表面覆盖有锐钛矿尖晶石,增强了它们的纳米粗糙度,亲水性,并且比其他基团具有较低的表面电势。 MWCP9和MWCP11表面的纳米沉淀物(在含有pH 9或pH 11的Ca / P离子的介质中处理)主要为非晶态的锐钛矿型,其中P离子较少。带负电荷的牛血清白蛋白的蛋白质吸附在具有较低表面电位的MWDD和MWCP组中较高。与其他组相比,带电的组蛋白在MWCP11表面的吸附更高。通过ALP和骨桥蛋白测定法测量共培养1、7和14天的D1小鼠骨髓间充质干细胞的成骨特性。尽管MW组显示出D1小鼠骨髓间充质干细胞的存活力与MAO组相当,但它们具有优越的亲水性和较高的蛋白质吸附能力,因此调节了骨祖干细胞的分化,表明7天和14天后ALP和骨桥蛋白的分泌更高。纳米级的形貌,结晶度和表面电位改变了经MW处理的钛表面的亲水性和蛋白质吸附,从而调节了骨祖干细胞的体外分化。

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