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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Effects of Cytoskeletal Orientations on Deformation of a Cell Residing in a Collagen Gel Construct
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Effects of Cytoskeletal Orientations on Deformation of a Cell Residing in a Collagen Gel Construct

机译:细胞骨架取向对胶原蛋白凝胶构建物中细胞变形的影响

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References(20) Cited-By(1) The effects of cytoskeleton orientation angle on strain transmission from a tissue to a cell and its internal cytoskeletons were investigated by using a model where a cell was integrated in a tissue that assumes a collagen gel construct. A cell with uni-directionally or randomly aligned cytoskeletons was embedded in a tissue, which was stretched to a strain of 0.1. When the initial orientation angle of the cytoskeleton was zero, which corresponded to the stretch direction of the tissue, cell strain was minimal and mean cytoskeletal strain was maximal. As the initial cytoskeleton orientation angle increased, mean cytoskeletal strain values decreased, while cell strain increased. Cell strain decreased at an initial cytoskeleton orientation angle of 60°. At this angle, the mean cytoskeletal strain value was nearly zero, which was absolutely minimal. Subsequent increases in the initial cytoskeleton orientation angle resulted in further decreases in cell and cytoskeletal strain. The present multi-scale model may help in achieving structural integration of the biomechanical organization and provide valuable information for understanding the mechanisms underlying cellular remodeling.
机译:参考文献(20)By(1)使用模型将细胞整合到假定胶原凝胶构建体的组织中,研究了细胞骨架取向角对应变从组织到细胞及其内部细胞骨架的传递的影响。具有单向或随机排列的细胞骨架的细胞被嵌入组织中,该组织被拉伸至0.1应变。当细胞骨架的初始取向角为零(与组织的拉伸方向相对应)时,细胞应变最小,平均细胞骨架应变最大。随着初始细胞骨架定向角的增加,平均细胞骨架应变值降低,而细胞应变则升高。细胞应变在初始细胞骨架取向角为60°时降低。在这个角度上,平均细胞骨架应变值几乎为零,这绝对是最小的。初始细胞骨架取向角的随后增加导致细胞和细胞骨架应变的进一步降低。本多尺度模型可以帮助实现生物力学组织的结构整合,并为理解细胞重塑的机制提供有价值的信息。

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