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Biomembrane-mimicking lipid bilayer system as a mechanically tunable cell substrate

机译:生物膜模拟脂质双层系统作为可机械调节的细胞底物

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摘要

Cell behavior such as cell adhesion, spreading, and contraction critically depends on the elastic properties of the extracellular matrix. It is not known, however, how cells respond to viscoelastic or plastic material properties that more closely resemble the mechanical environment that cells encounter in the body. In this report, we employ viscoelastic and plastic biomembrane-mimicking cell substrates. The compliance of the substrates can be tuned by increasing the number of polymer-tethered bilayers. This leaves the density and conformation of adhesive ligands on the top bilayer unaltered. We then observe the response of fibroblasts to these property changes. For comparison, we also study the cells on soft polyacrylamide and hard glass surfaces. Cell morphology, motility, cell stiffness, contractile forces and adhesive contact size all decrease on more compliant matrices but are less sensitive to changes in matrix dissipative properties. These data suggest that cells are able to feel and respond predominantly to the effective matrix compliance, which arises as a combination of substrate and adhesive ligand mechanical properties.
机译:细胞行为,例如细胞粘附,扩散和收缩,关键取决于细胞外基质的弹性。但是,细胞如何响应粘弹性或塑性材料的特性却更为相似,这种特性更类似于细胞在体内遇到的机械环境。在本报告中,我们采用了粘弹性和塑料生物膜模拟细胞基质。可以通过增加聚合物束缚的双层的数量来调整基材的柔韧性。这使顶部双层上的粘合剂配体的密度和构象保持不变。然后,我们观察到成纤维细胞对这些特性变化的反应。为了进行比较,我们还研究了软聚丙烯酰胺和硬玻璃表面上的电池。在顺应性更高的基质上,细胞形态,运动性,细胞刚度,收缩力和粘合剂接触尺寸均降低,但对基质耗散性能的变化不那么敏感。这些数据表明细胞能够感觉到并有效响应基质的有效顺应性,基质顺应性和粘合剂配体的机械性能相结合。

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