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Enhanced Vascular Endothelial Cell Function on Nanostructured Titanium Surface Features

机译:纳米结构钛表面特征增强血管内皮细胞功能

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To study the contribution of different surface feature properties in improving vascular endothelial cell adhesion, rationally designed nano/sub-micron patterns with various dimensions were created on titanium surfaces in this study. In vitro results indicated that endothelial cell adhesion was improved when the titanium pattern dimensions decreased into the nano-scale. Specifically, endothelial cells preferred to adhere on sub-micron and nano rough titanium substrates compared to flat titanium. Moreover, titanium with nano and sub-micron roughness and with the same chemistry as compared to flat titanium, had significantly greater surface energy. Thus, the present study indicated the strong potential of surface nanotopography and nano/sub-micron roughness for improving current vascular stent design.
机译:为了研究不同表面特征性质在改善血管内皮细胞粘附方面的贡献,在本研究中的钛表面上产生具有各种尺寸的合理设计的纳米/亚微米图案。在体外结果表明,当钛图案尺寸降至纳米级时,改善内皮细胞粘附。具体地,与扁平钛相比,本科细胞优选粘附在亚微米和纳米粗钛基底上。此外,与扁平钛相比,具有纳米和亚微米粗糙度和具有相同化学性的钛具有显着更大的表面能。因此,本研究表明了表面纳米术的强潜力和用于改善电流血管支架设计的纳米/亚微米粗糙度。

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