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首页> 外文期刊>Journal of Materials Science: Materials in Medicine >The enhanced effect of surface microstructured porous titanium on adhesion and osteoblastic differentiation of mesenchymal stem cells
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The enhanced effect of surface microstructured porous titanium on adhesion and osteoblastic differentiation of mesenchymal stem cells

机译:表面微结构多孔钛对间充质干细胞粘附和成骨细胞分化的增强作用

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摘要

Porous titanium with appropriate surface treatments can be osteoinductive. To investigate the effect of surface treatments of porous titanium on the attachment and differentiation of mesenchymal stem cells (MSCs), two kinds of surface microstructured porous titaniums, H2O2/TaCl5 treated one (HTPT), and H2O2/TaCl5 and subsequent simulated body fluid (SBF) treated one (STPT) were fabricated, and non-treated one (NTPT) was used as control. The morphology, specific surface area (SSA), pore distribution and mechanical strength of these materials were characterized respectively, and the results showed that H2O2/TaCl5 treatment led to a significant increase in both SSA and micropores of HTPT, and the further SBF immersion resulted in the formation of a layer of bone-like apatite on the surface of STPT. Although the surface treatments had a little negative impact on the compressive strength and elasticity modulus of porous titanium, the mechanical strength of HTPT or STPT was enough for the bone defect repair of the load-bearing sites. The protein adsorption and cell adhesion experiments confirmed that the microstructured surface notably enhanced porous titanium’s protein binding capacity and promoted MSCs adhesion on the surface. More importantly, cell differentiation experiments proved that the microstructured surface evidently elevated the osteoblastic gene expressions of MSCs compared to NTPT. The enhanced biological effect by the surface treatments was more robust on STPT. Therefore, our results suggest that the microstructured surface has great potential for promoting MSCs differentiation towards osteoblasts, giving excellent support for the osteoinduction of porous titanium with appropriate surface treatments.
机译:多孔钛经过适当的表面处理可以诱导成骨。为了研究多孔钛的表面处理对间充质干细胞(MSCs)附着和分化的影响,两种表面微结构化的多孔钛,H2O2 / TaCl5处理过的一种(HTPT),H2O2 / TaCl5处理过的以及随后的模拟体液(制作了SBF)处理的一种(STPT),未处理的一种(NTPT)用作对照。分别表征了这些材料的形貌,比表面积,孔分布和机械强度,结果表明,H2O2 / TaCl5处理导致HTPT的SSA和微孔均显着增加,并进一步浸入了SBF在STPT表面形成一层骨状磷灰石。尽管表面处理对多孔钛的抗压强度和弹性模量几乎没有负面影响,但是HTPT或STPT的机械强度足以修复承重部位的骨缺损。蛋白质吸附和细胞粘附实验证实,微结构表面显着增强了多孔钛的蛋白质结合能力,并促进了MSCs在表面上的粘附。更重要的是,细胞分化实验证明,与NTPT相比,微结构表面明显提高了MSC的成骨基因表达。通过表面处理增强的生物效应在STPT上更为稳健。因此,我们的结果表明,微结构化表面具有促进MSC向成骨细胞分化的巨大潜力,并通过适当的表面处理为多孔钛的骨诱导提供了极好的支持。

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    National Engineering Research Center for Biomaterials Sichuan University">(1);

    West China School of Medicine Sichuan University">(2);

    National Engineering Research Center for Biomaterials Sichuan University">(1);

    National Engineering Research Center for Biomaterials Sichuan University">(1);

    National Engineering Research Center for Biomaterials Sichuan University">(1);

    West China School of Medicine Sichuan University">(2);

    National Engineering Research Center for Biomaterials Sichuan University">(1);

    National Engineering Research Center for Biomaterials Sichuan University">(1);

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