首页> 外文期刊>Journal of innovative optical health sciences >OPTICALLY TRACKING THE MOTION OF MICROBEADS TO STUDY PHYSICAL BEHAVIORS OF THE LIVING CELL IN RESPONSE TO TRANSIENT STRETCH OR COMPRESSION
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OPTICALLY TRACKING THE MOTION OF MICROBEADS TO STUDY PHYSICAL BEHAVIORS OF THE LIVING CELL IN RESPONSE TO TRANSIENT STRETCH OR COMPRESSION

机译:光学跟踪微珠的运动以研究活细胞对瞬时拉伸或压缩的响应的物理行为

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Optical magnetic twisting cytometry and traction force microscopy are two advanced cell mechanics research tools that employ optical methods to track the motion of microbeads that are either bound to the surface or embedded in the substrate underneath the cell. The former measures rheological properties of the cell such as cell stiffness, and the latter measures cell traction force dynamics. Here we describe the principles of these two cell mechanics research tools and an example of using them to study physical behaviors of the living cell in response to transient stretch or compression. We demonstrate that, when subjected to a stretch–unstretch manipulation, both the stiffness and traction force of adherent cells promptly reduced, and then gradually recover up to the level prior to the stretch. Immunofluorescent staining and Western blotting results indicate that the actin cytoskeleton of the cells underwent a corresponding disruption and reassembly process almost in step with the changes of cell mechani...
机译:光学磁扭细胞术和牵引力显微镜是两个先进的细胞力学研究工具,它们采用光学方法来跟踪微珠的运动,这些微珠要么结合到表面,要么嵌入到细胞下面的基质中。前者测量细胞的流变特性,例如细胞刚度,而后者测量细胞的牵引力动力学。在这里,我们描述了这两种细胞力学研究工具的原理,以及使用它们研究活细胞响应瞬时拉伸或压缩的物理行为的示例。我们证明,当进行拉伸-拉伸操作时,贴壁细胞的硬度和牵引力都会迅速降低,然后逐渐恢复到拉伸前的水平。免疫荧光染色和蛋白质印迹结果表明,细胞的肌动蛋白细胞骨架经历了相应的破坏和重组过程,几乎与细胞力学的变化同步。

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