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Multiple scale model for cell migration in monolayers: Elastic mismatch between cells enhances motility

机译:单层细胞迁移的多尺度模型:细胞之间的弹性错配增强运动性

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摘要

We propose a multiscale model for monolayer of motile cells that comprise normal and cancer cells. In the model, the two types of cells have identical properties except for their elasticity; cancer cells are softer and normal cells are stiffer. The goal is to isolate the role of elasticity mismatch on the migration potential of cancer cells in the absence of other contributions that are present in real cells. The methodology is based on a phase-field description where each cell is modeled as a highly-deformable self-propelled droplet. We simulated two types of nearly confluent monolayers. One contains a single cancer cell in a layer of normal cells and the other contains normal cells only. The simulation results demonstrate that elasticity mismatch alone is sufficient to increase the motility of the cancer cell significantly. Further, the trajectory of the cancer cell is decorated by several speed “bursts” where the cancer cell quickly relaxes from a largely deformed shape and consequently increases its translational motion. The increased motility and the amplitude and frequency of the bursts are in qualitative agreement with recent experiments.
机译:我们提出了包含正常细胞和癌细胞的运动细胞单层的多尺度模型。在模型中,两种类型的单元格除了具有弹性外,都具有相同的属性。癌细胞较软,正常细胞较硬。目的是在不存在真实细胞中存在的其他贡献的情况下,隔离弹性错配对癌细胞迁移潜力的作用。该方法基于相场描述,其中每个单元都建模为高度变形的自推进液滴。我们模拟了两种类型的几乎汇合的单层。一个仅在正常细胞层中包含单个癌细胞,而另一个仅包含正常细胞。仿真结果表明,单独的弹性失配足以显着增加癌细胞的运动性。此外,癌细胞的轨迹由数个速度“爆发”装饰,癌细胞在这种快速“爆发”中从严重变形的形状中快速放松下来,因此增加了其平移运动。运动的增加以及爆发的幅度和频率与最近的实验在质量上是一致的。

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