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用于量化细胞片力学性能的聚合物微透镜

Polymer microlenses for quantifying cell sheet mechanics.

作者信息

Miquelard-Garnier Guillaume, Zimberlin Jessica A, Sikora Christian B, Wadsworth Patricia, Crosby Alfred

机构信息

Polymer Science & Engineering Department, University of Massachusetts, 120 Governors Drive, Amherst, 01002, MA, USA.

出版信息

Soft Matter. 2010 Jan 1;6(2):398-403. doi: 10.1039/b916385a.

Abstract

Mechanical interactions between individual cells and their substrate have been studied extensively over the past decade; however, understanding how these interactions change as cells interact with neighboring cells in the development of a cell sheet, or early stage tissue, is less developed. We use a recently developed experimental technique for quantifying the mechanics of confluent cell sheets. Living cells are cultured on a thin film of polystyrene [PS], which is attached to a patterned substrate of crosslinked poly(dimethyl siloxane) [PDMS] microwells. As cells attach to the substrate and begin to form a sheet, they apply sufficient contractile force to buckle the PS film over individual microwells to form a microlens array. The curvature for each microlens is measured by confocal microscopy and can be related to the strain and stress applied by the cell sheet using simple mechanical analysis for the buckling of thin films. We demonstrate that this technique can provide insight into the important materials properties and length scales that govern cell sheet responses, especially the role of stiffness of the substrate. We show that intercellular forces can lead to significantly different behaviors than the ones observed for individual cells, where focal adhesion is the relevant parameter.

摘要

在过去十年中,人们对单个细胞与其底物之间的机械相互作用进行了广泛研究;然而,对于在细胞片层或早期组织发育过程中,当细胞与相邻细胞相互作用时这些相互作用如何变化的理解却相对较少。我们使用一种最近开发的实验技术来量化汇合细胞片层的力学特性。将活细胞培养在聚苯乙烯(PS)薄膜上,该薄膜附着在交联聚二甲基硅氧烷(PDMS)微孔的图案化底物上。当细胞附着到底物并开始形成片层时,它们施加足够的收缩力使PS薄膜在单个微孔上弯曲,形成微透镜阵列。通过共聚焦显微镜测量每个微透镜的曲率,并可使用薄膜弯曲的简单力学分析将其与细胞片层施加的应变和应力相关联。我们证明,该技术可以深入了解控制细胞片层反应的重要材料特性和长度尺度,特别是底物刚度的作用。我们表明,细胞间力可导致与单个细胞所观察到的行为显著不同的行为,在单个细胞中,粘着斑是相关参数。

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本文引用的文献

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Cells lying on a bed of microneedles: an approach to isolate mechanical force.置于微针床上的细胞:一种分离机械力的方法。
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