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Regulation of Endothelial Cell Adherence and Elastic Modulus by Substrate Stiffness

机译:基质刚度对内皮细胞粘附和弹性模量的调节

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Although substrate stiffness has been previously reported to affect various cellular aspects, such as morphology, migration, viability, growth, and cytoskeletal structure, its influence on cell adherence has not been well examined. Here, we prepared three soft, medium, and hard polyacrylamide (PAAM) substrates and utilized AFM to study substrate elasticity and also the adhesion and mechanical properties of endothelial cells in response to changing substrate stiffness. Maximum detachment force and cell stiffness were increased with increasing substrate stiffness. Maximum detachment force values were 0.28?±?0.14, 0.94?±?0.27, and 1.99?±?0.59 nN while Young’s moduli of cells were 218.85?±?38.73, 385.58?±?131.67, and 933.20?±?428.92?Pa for soft, medium, and hard substrates, respectively. Human umbilical vein endothelial cells (HUVECs) showed round to more spread shapes on soft to hard substrates, with the most organized and elongated actin structure on the hard hydrogel. Our results confirm the importance of substrate stiffness in regulating cell mechanics and adhesion for a successful cell therapy.
机译:尽管先前已经报道了底物刚度会影响细胞的各个方面,例如形态,迁移,生存能力,生长和细胞骨架结构,但尚未很好地检查其对细胞粘附的影响。在这里,我们准备了三种软,中和硬聚丙烯酰胺(PAAM)基底,并利用AFM研究了基底弹性以及响应于基底刚度变化的内皮细胞的粘附性和机械性能。最大剥离力和细胞刚度随基底刚度的增加而增加。最大脱离力值为0.28±0.14、0.94±0.27和1.99±0.59 nN,而细胞的杨氏模量为218.85±±38.73、385.58±±131.67和933.20±±428.92μPa分别用于软,中和硬基材。人脐静脉内皮细胞(HUVEC)在软至硬底物上呈圆形至更多散布的形状,在硬水凝胶上具有最有组织和最长的肌动蛋白结构。我们的结果证实了底物刚度在调节细胞力学和粘附对于成功的细胞治疗中的重要性。

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