首页> 外文期刊>Macromolecular bioscience >Impact of Peptide Micropatterning on Endothelial Cell Actin Remodeling for Cell Alignment under Shear Stress
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Impact of Peptide Micropatterning on Endothelial Cell Actin Remodeling for Cell Alignment under Shear Stress

机译:肽微模式对剪切应力作用下内皮细胞肌动蛋白重塑细胞排列的影响。

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摘要

HSVEC behavior under physiological shear stress in vitro is investigated on PET surfaces micropatterned with both RGDS and WQPPRARI peptides. This technique allows (i) creating geometries on surface to guide cell orientation under shear stress and (ii) controlling surface chemical composition in order to modulate cell behavior. Under shear stress, endothelial cells adhere on patterned PET surfaces and present a more rapid orientation in flow direction in comparison to cells cultured on homogeneous surfaces. Micropatterned surfaces presenting a large surface area ratio of RGDS/WQPPRARI peptides induce fibrillar adhesion, while surfaces presenting an equal RGDS/WQPPRARI peptides surface area ratio preferentially induce focal adhesion.
机译:在具有RGDS和WQPPRARI肽微图案的PET表面上研究了体外生理剪切应力下的HSVEC行为。该技术允许(i)在表面上创建几何形状以在剪切应力下引导细胞取向,以及(ii)控制表面化学成分以调节细胞行为。在剪切应力下,与在均质表面上培养的细胞相比,内皮细胞粘附在图案化的PET表面上,并在流动方向上呈现出更快的取向。呈现大面积RGDS / WQPPRARI肽表面积比的微图案表面诱导原纤维粘附,而呈现相等RGDS / WQPPRARI肽表面积比的表面优先诱导粘着粘附。

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