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首页> 外文期刊>Journal of Biological Physics >Successive relaxation cycles during long-time cell aggregate rounding after uni-axial compression
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Successive relaxation cycles during long-time cell aggregate rounding after uni-axial compression

机译:长时间细胞聚集过程中连续的放松周期圆形圆形压缩后圆形

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The mean features of cell surface rearrangement during cell aggregate rounding after uni-axial compression between parallel plates are considered. This is based on long-time rheological modeling approaches in order to shed further light on collective cell migration. Many aspects of cell migration at the supra-cellular level, such as the coordination between surrounding migrating cell groups that leads to uncorrelated motility, have remained unclear. Aggregate shape changes during rounding are considered depending on the size and homogeneity of 2-D and 3-D cell aggregates. Cell aggregate shape changes that are taking place during successive relaxation cycles have various relaxation rates per cycle. Every relaxation rate is related to the corresponding cell migrating state. If most of the cells migrate per cycle, the relaxation rate is maximal. If most of the cells are in a resting state per cycle, the relaxation rate is nearing zero. If some cell groups migrate while the others, at the same time, stay in a resting state, the relaxation rate is lower than that obtained for the migrating cells. The relaxation rates per cycles are not random, but they have a tendency to gather around two or three values indicating an organized cell migrating pattern. Such behavior suggests that uncorrelated motility during collective cell migration in one cycle induces a decrease of the relaxation rate in the next cycle caused by an accumulation of cells in the resting state. However, cells have the ability to overcome these perturbations and re-establish an ordered migrating trend in the next cycle. These perturbations of the cell migrating state are more pronounced for: (1) more mobile cells, (2) a heterogeneous cell population, and (3) a larger cell population under the same experimental conditions.
机译:考虑了在平行板之间的单轴压缩之后的细胞聚集圆形圆形期间细胞表面重排的平均特征。这是基于长期流变塑模式,以进一步阐明集体细胞迁移。在同上细胞水平的细胞迁移的许多方面,例如导致不相关运动的周围迁移细胞基团之间的协调,仍不清楚。根据2-D和3-D细胞聚集体的尺寸和均匀性,考虑舍入期间的聚集形状变化。在连续的松弛循环期间发生的细胞骨料形状变化具有每个循环的各种弛豫率。每次放松率都与相应的单元迁移状态有关。如果大多数细胞每周期迁移,则松弛率是最大的。如果大多数细胞在每个周期处于静止状态,则弛豫速率接近零。如果某些单元组迁移,同时迁移,同时保持静止状态,则松弛率低于迁移单元获得的弛豫率。每个循环的松弛率不是随机的,但它们具有聚集在两个或三个值的倾向,表示有组织的细胞迁移模式。这种行为表明,在一个周期中的集体细胞迁移期间的不相关动力在下次循环中引起放松速率的降低,这是由静止状态的细胞累积引起的下一个循环中的弛豫速率。然而,细胞具有克服这些扰动并重新建立下一个周期的有序迁移趋势。细胞迁移状态的这些扰动更加明显:(1)更多的移动细胞,(2)异质细胞群,(3)在相同的实验条件下的较大细胞群。

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