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首页> 外文期刊>Annals of Biomedical Engineering >Anisotropic, Three-Dimensional Deformation of Single Attached Cells Under Compression
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Anisotropic, Three-Dimensional Deformation of Single Attached Cells Under Compression

机译:压缩下单细胞的各向异性三维变形

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摘要

Quantifying three-dimensional deformation of cells under mechanical load is relevant when studying cell deformation in relation to cellular functioning. Because most cells are anchorage dependent for normal functioning, it is desired to study cells in their attached configuration. This study reports new three-dimensional morphometric measurements of cell deformation during stepwise compression experiments with a recently developed cell loading device. The device allows global, unconfined compression of individual, attached cells under optimal environmental conditions. Three-dimensional images of fluorescently stained myoblasts were recorded with confocal microscopy and analyzed with image restoration and three-dimensional image reconstruction software to quantify cell deformation. In response to compression, cell width, cross-sectional area, and surface area increased significantly with applied strain, whereas cell volume remained constant. Interestingly, the cell and the nucleus deformed perpendicular to the direction of actin filaments present along the long axis of the cell. This strongly suggests that this anisotropic deformation can be attributed to the preferred orientation of actin filaments. A shape factor was introduced to quantify the global shape of attached cells. The increase of this factor during compression reflected the anisotropic deformation of the cell.
机译:在研究与细胞功能相关的细胞变形时,量化在机械载荷下细胞的三维变形非常重要。由于大多数细胞的正常功能依赖于锚定作用,因此需要研究其附着结构的细胞。这项研究报告了使用最新开发的细胞加载装置进行逐步压缩实验期间细胞变形的新三维形态计量学测量。该设备允许在最佳环境条件下对附着的单个细胞进行全局无限制压缩。共聚焦显微镜记录荧​​光染色的成肌细胞的三维图像,并通过图像恢复和三维图像重建软件进行分析,以量化细胞变形。响应压缩,细胞宽度,横截面积和表面积随施加的应变而显着增加,而细胞体积保持恒定。有趣的是,细胞和细胞核垂直于沿细胞长轴的肌动蛋白丝方向变形。这强烈表明该各向异性变形可归因于肌动蛋白丝的优选取向。引入形状因子以量化附着细胞的整体形状。在压缩过程中该因子的增加反映了单元的各向异性变形。

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