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成纤维细胞对软弹性基质的适应性及刚度匹配

Fibroblast adaptation and stiffness matching to soft elastic substrates.

作者信息

Solon Jérôme, Levental Ilya, Sengupta Kheya, Georges Penelope C, Janmey Paul A

机构信息

Institute for Medicine and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Biophys J. 2007 Dec 15;93(12):4453-61. doi: 10.1529/biophysj.106.101386.

Abstract

Many cell types alter their morphology and gene expression profile when grown on chemically equivalent surfaces with different rigidities. One expectation of this change in morphology and composition is that the cell's internal stiffness, governed by cytoskeletal assembly and production of internal stresses, will change as a function of substrate stiffness. Atomic force microscopy was used to measure the stiffness of fibroblasts grown on fibronectin-coated polyacrylamide gels of shear moduli varying between 500 and 40,000 Pa. Indentation measurements show that the cells' elastic moduli were equal to, or slightly lower than, those of their substrates for a range of soft gels and reached a saturating value at a substrate rigidity of 20 kPa. The amount of cross-linked F-actin sedimenting at low centrifugal force also increased with substrate stiffness. Together with enhanced actin polymerization and cross-linking, active contraction of the cytoskeleton can also modulate stiffness by exploiting the nonlinear elasticity of semiflexible biopolymer networks. These results suggest that within a range of stiffness spanning that of soft tissues, fibroblasts tune their internal stiffness to match that of their substrate, and modulation of cellular stiffness by the rigidity of the environment may be a mechanism used to direct cell migration and wound repair.

摘要

当生长在具有不同硬度但化学组成相同的表面上时,许多细胞类型会改变其形态和基因表达谱。这种形态和组成变化的一个预期结果是,由细胞骨架组装和内部应力产生所决定的细胞内部硬度,将作为底物硬度的函数而发生变化。利用原子力显微镜测量了在剪切模量在500至40000 Pa之间变化的纤连蛋白包被的聚丙烯酰胺凝胶上生长的成纤维细胞的硬度。压痕测量表明,对于一系列软凝胶,细胞的弹性模量等于或略低于其底物的弹性模量,并在底物硬度为20 kPa时达到饱和值。在低离心力下沉淀的交联F-肌动蛋白的量也随着底物硬度的增加而增加。与肌动蛋白聚合和交联增强一起,细胞骨架的主动收缩也可以通过利用半柔性生物聚合物网络的非线性弹性来调节硬度。这些结果表明,在跨越软组织硬度的范围内,成纤维细胞调节其内部硬度以匹配其底物的硬度,并且环境刚度对细胞硬度的调节可能是一种用于指导细胞迁移和伤口修复的机制。

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