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Laser surface texturing of SS316L for enhanced adhesion of HUVECs

机译:SS316L激光表面纹理,提高HUVEC的粘附性

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摘要

This study investigates the effects of the structured surface on the adhesion, proliferation and alignment of endothelial cells (HUVECs). The chemical state of laser-structured surface was also investigated in comparison with the non-treated surface. A novel design for biomedical applications consisting of parallel chain-like structures was realised on stainless steel surface by laser micromachining. The structures were designed to employ surface topography in the presence of micron and sub-micron features and to avoid intensive surface modification that could compromise the mechanical properties of thin devices like cardiovascular stents. The results showed that the structured surfaces favored the adhesion, proliferation and alignment of HUVECs. The proliferation and the alignment of HUVECs were pronounced when the periodic distance between two consecutive chain-like structures was 25 mu m. Moreover, there was no significant difference in chemical composition on the structured surface suggesting that the cell proliferation and alignment were mainly influenced by the surface topography.
机译:本研究探讨了结构表面对内皮细胞(HUVECs)粘附、增殖和排列的影响。与未经处理的表面相比,还研究了激光结构表面的化学状态。利用激光微加工技术在不锈钢表面实现了一种新型的平行链状结构生物医学设计。这些结构的设计是为了在微米和亚微米特征存在的情况下使用表面形貌,并避免可能损害心血管支架等薄设备机械性能的密集表面修饰。结果表明,结构化表面有利于HUVEC的粘附、增殖和排列。当两个连续链状结构之间的周期性距离为25μm时,HUVEC的增殖和排列明显。此外,结构化表面上的化学成分没有显著差异,表明细胞增殖和排列主要受表面形貌的影响。

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