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Comparative Endothelial Cell Response on Topographically Patterned Titanium and Silicon Substrates with Micrometer to Sub-Micrometer Feature Sizes

机译:微米至亚微米特征尺寸的地形图钛和硅衬底上内皮细胞的比较响应

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摘要

In this work, we evaluate the in vitro response of endothelial cells (EC) to variation in precisely-defined, micrometer to sub-micrometer scale topography on two different substrate materials, titanium (Ti) and silicon (Si). Both substrates possess identically-patterned surfaces composed of microfabricated, groove-based gratings with groove widths ranging from 0.5 to 50 µm, grating pitch twice the groove width, and groove depth of 1.3 µm. These specific materials are chosen due to their relevance for implantable microdevice applications, while grating-based patterns are chosen for the potential they afford for inducing elongated and aligned cellular morphologies reminiscent of the native endothelium. Using EA926 cells, a human EC variant, we show significant improvement in cellular adhesion, proliferation, morphology, and function with decreasing feature size on patterned Ti substrates. Moreover, we show similar trending on patterned Si substrates, albeit to a lesser extent than on comparably patterned Ti substrates. Collectively, these results suggest promise for sub-micrometer topographic patterning in general, and sub-micrometer patterning of Ti specifically, as a means for enhancing endothelialization and neovascularisation for novel implantable microdevice applications.
机译:在这项工作中,我们评估了在两种不同的基材钛(Ti)和硅(Si)上,内皮细胞(EC)对精确定义的微米级至亚微米级形貌变化的体外响应。两种基板均具有由微细的,基于沟槽的光栅组成的图案相同的表面,其沟槽宽度范围为0.5至50 µm,光栅间距为沟槽宽度的两倍,沟槽深度为1.3 µm。选择这些特定的材料是因为它们与可植入的微型设备的应用相关,而选择基于光栅的图案则是因为它们提供了诱发细长和对齐的细胞形态的潜力,从而使人联想到天然内皮。使用EA926细胞(一种人类EC变异体),我们在细胞粘附,增殖,形态和功能方面表现出了显着的改善,并且在图案化的Ti基底上的特征尺寸减小了。此外,我们在图案化的Si衬底上显示出相似的趋势,尽管程度要比在类似图案化的Ti衬底上要小。总的来说,这些结果表明总体上有望实现亚微米形貌图案化,特别是Ti的亚微米形貌图案化,作为增强用于新型可植入微器件应用的内皮化和新血管形成的手段。

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