首页> 外文期刊>Acta biomaterialia >Accelerated stem cell attachment to ultrafine grained titanium.
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Accelerated stem cell attachment to ultrafine grained titanium.

机译:加速干细胞与超细晶粒钛的附着。

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Commercial purity titanium with an average grain size in the low sub-micron range was produced by equal channel angular pressing (ECAP). Attachment of human bone marrow-derived mesenchymal stem cells (hMSCs) to the surface of conventional coarse grained and ECAP-modified titanium was studied. It was demonstrated that the attachment and spreading of hMSCs in the initial stages (up to 24h) of culture was enhanced by grain refinement. Surface characterization by a range of techniques showed that the main factor responsible for the observed acceleration of hMSC attachment and spreading on titanium due to grain refinement in the bulk is the attendant changes in surface topography on the nanoscale. These results indicate that, in addition to its superior mechanical properties, ECAP-modified titanium possesses improved biocompatibility, which makes it to a potent candidate for applications in medical implants.
机译:通过等通道角挤压(ECAP)生产了平均晶粒度在低亚微米范围内的商业纯度钛。研究了人骨髓来源的间充质干细胞(hMSCs)在常规粗粒和ECAP修饰的钛表面的附着。结果表明,hMSCs在培养的初始阶段(长达24小时)的附着和扩散通过晶粒细化得到增强。通过一系列技术进行的表面表征表明,由于大量晶粒细化导致观察到的hMSC附着加速并在钛上扩散的主要原因是纳米级表面形貌的伴随变化。这些结果表明,除了其优异的机械性能外,ECAP改性的钛还具有改善的生物相容性,这使其成为用于医疗植入物的有效候选材料。

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