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STUDY ON A CELL MECHANOSENSING SYSTEM BY MEASURING STRUCTURAL DEFORMATION AND BIOCHEMICAL RESPONSE

机译:通过测量结构变形和生物化学响应的细胞力学系统的研究

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Mechanical stimulation induces new bone formation in vivo and promotes the metabolic activity and the gene expression of osteoblasts in vitro. It was reported that biochemical signals of osteoblasts to sense mechanical stimulation are activated according to their actin cytoskeletal deformation. However, there have been not so many researches on the relationship between cytoskeletal deformation and biochemical response. Here we show an original method to investigate a cell mechanosensing system and the quantitative relationship between the deformation of cytoskeletal structure and the change of intracellular calcium ion concentration as biochemical response in a living cell stimulated by a micropipette. Gene transfection of green fluorescent protein to osteoblastic cells enabled visualization of actin in cells. When local deformation was applied to a single osteoblastic cell by a micropipette, the displacement distribution of cytoskeletal structure in the whole cell was automatically obtained from the two images of the cell before and after deformation by using Kanade-Lucas-Tomasi (KLT) method. Intracellular calcium ion response to mechanical stimulation was measured as the spatial and temporal changes of intensity of Fura Red loaded to a cell. As a result, we obtained the quantitative relationship between structural deformation and biochemical response of a cell and found that the change of calcium ion concentration increases with increasing the displacement of actin cytoskeleton. It indicates that the deformation of actin cytoskeleton is highly related to the cell mechanosensing system.
机译:机械刺激在体内诱导新的骨形成,并在体外促进成骨细胞的代谢活性和基因表达。据报道,成骨细胞感知机械刺激的生化信号根据其肌动蛋白的细胞骨架变形而被激活。然而,关于细胞骨架变形与生化反应之间关系的研究还很少。在这里,我们展示了一种研究细胞机械传感系统的原始方法,以及在微量移液器刺激下活细胞中细胞骨架结构的变形与细胞内钙离子浓度变化之间的定量关系,作为生化反应。绿色荧光蛋白对成骨细胞的基因转染使细胞中肌动蛋白的可视化成为可能。当用微量移液管将局部变形应用于单个成骨细胞时,使用Kanade-Lucas-Tomasi(KLT)方法从变形前后的两个细胞图像中自动获得整个细胞中细胞骨架结构的位移分布。测量细胞内钙离子对机械刺激的反应,作为加载到细胞中的呋喃红强度的时空变化。结果,我们获得了细胞结构变形与生化反应之间的定量关系,发现钙离子浓度的变化随着肌动蛋白细胞骨架的位移的增加而增加。这表明肌动蛋白细胞骨架的变形与细胞机械传感系统高度相关。

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