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细胞外基质的非线性弹性使收缩性细胞能够传递局部位置和方向信息。

Non-linear elasticity of extracellular matrices enables contractile cells to communicate local position and orientation.

作者信息

Winer Jessamine P, Oake Shaina, Janmey Paul A

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.

出版信息

PLoS One. 2009 Jul 24;4(7):e6382. doi: 10.1371/journal.pone.0006382.

Abstract

Most tissue cells grown in sparse cultures on linearly elastic substrates typically display a small, round phenotype on soft substrates and become increasingly spread as the modulus of the substrate increases until their spread area reaches a maximum value. As cell density increases, individual cells retain the same stiffness-dependent differences unless they are very close or in molecular contact. On nonlinear strain-stiffening fibrin gels, the same cell types become maximally spread even when the low strain elastic modulus would predict a round morphology, and cells are influenced by the presence of neighbors hundreds of microns away. Time lapse microscopy reveals that fibroblasts and human mesenchymal stem cells on fibrin deform the substrate by several microns up to five cell lengths away from their plasma membrane through a force limited mechanism. Atomic force microscopy and rheology confirm that these strains locally and globally stiffen the gel, depending on cell density, and this effect leads to long distance cell-cell communication and alignment. Thus cells are acutely responsive to the nonlinear elasticity of their substrates and can manipulate this rheological property to induce patterning.

摘要

大多数在线性弹性基质上以稀疏培养方式生长的组织细胞,在柔软基质上通常呈现小而圆的表型,并且随着基质模量的增加,细胞会逐渐铺展,直至其铺展面积达到最大值。随着细胞密度的增加,单个细胞会保持相同的刚度依赖性差异,除非它们靠得非常近或处于分子接触状态。在非线性应变硬化的纤维蛋白凝胶上,即使低应变弹性模量预示着细胞呈圆形形态,相同类型的细胞也会最大程度地铺展,并且细胞会受到数百微米外相邻细胞的影响。延时显微镜显示,纤维蛋白上的成纤维细胞和人间充质干细胞通过一种力限制机制,在距其质膜达五个细胞长度远的地方使基质变形数微米。原子力显微镜和流变学证实,这些应变会根据细胞密度局部或全局地使凝胶变硬,这种效应会导致长距离的细胞间通讯和排列。因此,细胞对其基质的非线性弹性非常敏感,并且可以操纵这种流变特性来诱导图案形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2628/2711623/05afb47b0827/pone.0006382.g001.jpg

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