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首页> 外文期刊>Acta biomaterialia >Response of human bone marrow stromal cells to a novel ultra-fine-grained and dispersion-strengthened titanium-based material.
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Response of human bone marrow stromal cells to a novel ultra-fine-grained and dispersion-strengthened titanium-based material.

机译:人类骨髓基质细胞对新型超细颗粒和弥散强化钛基材料的反应。

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A novel titanium-based material, containing no toxic or expensive alloying elements, was compared to the established biomaterials: commercially pure titanium (c.p.Ti) and Ti6Al4V. This material (Ti/1.3HMDS) featured similar hardness, yield strength and better wear resistance than Ti6Al4V, as well as better electrochemical properties at physiological pH7.4 than c.p.Ti grade 1 of our study. These excellent properties were obtained by utilizing an alternative mechanism to produce a microstructure of very fine titanium silicides and carbides (<100 nm) embedded in an ultra-fine-grained Ti matrix (365 nm). The grain refinement was achieved by high-energy ball milling of Ti powder with 1.3 wt.% of hexamethyldisilane (HMDS). The powder was consolidated by spark plasma sintering at moderate temperatures of 700 degrees C. The microstructure was investigated by optical and scanning electron microscopy (SEM) and correlated to the mechanical properties. Fluorescence microscopy revealed good adhesion of human mesenchymal stem cells on Ti/1.3HMDS comparable to that on c.p.Ti or Ti6Al4V. Biochemical analysis of lactate dehydrogenase and specific alkaline phosphatase activities of osteogenically induced hMSC exhibited equal proliferation and differentiation rates in all three cases. Thus the new material Ti/1.3HMDS represents a promising alternative to the comparatively weak c.p.Ti and toxic elements containing Ti6Al4V.
机译:将不含毒性或昂贵合金元素的新型钛基材料与已建立的生物材料进行了比较:商业纯钛(c.p.Ti)和Ti6Al4V。这种材料(Ti / 1.3HMDS)具有比Ti6Al4V相似的硬度,屈服强度和更好的耐磨性,并且在生理pH7.4下的电化学性能比我们研究的c.p.Ti 1级更好。这些优异的性能是通过利用另一种机制生产嵌入超细晶粒Ti基体(365 nm)中的非常精细的硅化钛和碳化物(<100 nm)的微结构而获得的。晶粒细化是通过将Ti粉末与1.3重量%的六甲基乙硅烷(HMDS)进行高能球磨来实现的。通过在700摄氏度的中等温度下进行火花等离子体烧结来固结粉末。通过光学和扫描电子显微镜(SEM)研究了显微结构,并将其与机械性能相关联。荧光显微镜显示人间充质干细胞在Ti / 1.3HMDS上的粘附力与在c.p.Ti或Ti6Al4V上的粘附力相当。成骨诱导的hMSC的乳酸脱氢酶和特定碱性磷酸酶活性的生化分析在所有三例中均表现出相同的增殖和分化率。因此,新材料Ti / 1.3HMDS代表了较有希望的替代品,它是相对较弱的c.p.Ti和含有Ti6Al4V的有毒元素。

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