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Effects of SiO2 micropillar arrays on endothelial cells' morphology

机译:SiO2微柱阵列对内皮细胞形态的影响

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摘要

Native tissues are highly organised at the microscale, so that modulating scaffold microarchitecture is a potent tool to mimic natural tissue structures. Moreover, three-dimensional microtopographical features are now being used to elucidate how extracellular physical cues can directly modulate cell behaviour and organise complex cellular processes such as cell differentiation and tissue organisation. Recent advances in microtechnology have allowed the development of platforms that can be used to further understand and control the complex interactions occurring between biointerfaces and living cells. In this paper, we discuss the use of three-dimensional microstructured substrates such as silicon dioxide micropillars, to interface with living cells. Human aortic endothelial cells were used to assess the biocompatibility of these substrates. Methodological investigations were performed to determine the influence of substrate topography on cell adhesion and growth. The changes on cell spreading and cell morphology induced by the substrates were qualified and quantified using scanning electron and fluorescence confocal microscopy. (C) 2016 Elsevier B.V. All rights reserved.
机译:天然组织在微观上高度组织化,因此调节支架微体系结构是模仿天然组织结构的有效工具。此外,三维微形貌特征现已用于阐明细胞外物理线索如何直接调节细胞行为并组织复杂的细胞过程,例如细胞分化和组织组织。微技术的最新进展允许开发平台,该平台可用于进一步了解和控制生物界面与活细胞之间发生的复杂相互作用。在本文中,我们讨论了使用三维微结构化基底(例如二氧化硅微柱)与活细胞的接口。人类主动脉内皮细胞用于评估这些底物的生物相容性。进行方法学研究以确定底物形貌对细胞粘附和生长的影响。使用扫描电子和荧光共聚焦显微镜对由底物诱导的细胞扩散和细胞形态变化进行定性和定量。 (C)2016 Elsevier B.V.保留所有权利。

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