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Elastic hydrogel as a sensor for detection of mechanical stress generated by single cells grown in three-dimensional environment

机译:弹性水凝胶作为检测在三维环境中生长的单细胞产生的机械应力的传感器

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摘要

Cell volume growth occurs in all living tissues. The growth exerts mechanical stresses on surrounding tissues that may alter tissue microenvironment, and have significant implications in health and diseases. However, the level of growth stress generated by single cells in three-dimensional (3D) environment remains to be determined. To this end, we developed a growth force microscopy technique to determine 3D distribution of the stress. The technique was based on encapsulation of cells in elastic hydrogels, and involved 3D particle tracking and mechanical analysis of gel deformation. Data from the study demonstrated that the growth stress was dynamic, and the stress distribution at the gel-cell interface was correlated inversely to the mean surface curvature or the distance to the geometric center of the cell. The stress averaged over the cell surface increased with increasing gel stiffness, suggesting that cells could alter growth stress in response to stiffness change in microenvironment These findings suggested that the elastic hydrogel-based microscopy technique had a potential to provide new insights into mechanisms of mechanical interactions between cell and its microenvironment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:细胞体积增长发生在所有活组织中。这种生长对周围组织施加机械应力,可能会改变组织的微环境,并对健康和疾病产生重大影响。但是,由单个细胞在三维(3D)环境中产生的生长压力水平仍有待确定。为此,我们开发了一种生长力显微镜技术来确定应力的3D分布。该技术基于弹性水凝胶中的细胞封装,涉及3D粒子跟踪和凝胶变形的力学分析。来自研究的数据表明,生长应力是动态的,并且凝胶-细胞界面处的应力分布与平均表面曲率或与细胞几何中心的距离成反比。细胞表面平均应力随凝胶刚度的增加而增加,表明细胞可以响应微环境中刚度的变化而改变生长应力。这些发现表明,基于弹性水凝胶的显微镜技术有可能为机械相互作用的机理提供新的见解。在细胞及其微环境之间。 (C)2016 Elsevier Ltd.保留所有权利。

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