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Modelling actin polymerization: the effect on confined cell migration

机译:抗粘液型聚合模拟:对狭窄细胞迁移的影响

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The aim of this work is to model cell motility under conditions of mechanical confinement. This cell migration mode may occur in extravasation of tumour and neutrophil-like cells. Cell migration is the result of the complex action of different forces exerted by the interplay between myosin contractility forces and actin processes. Here, we propose and implement a finite element model of the confined migration of a single cell. In this model, we consider the effects of actin and myosin in cell motility. Both filament and globular actin are modelled. We model the cell considering cytoplasm and nucleus with different mechanical properties. The migration speed in the simulation is around 0.1 mu m/min, which is in agreement with existing literature. From our simulation, we observe that the nucleus size has an important role in cell migration inside the channel. In the simulation the cell moves further when the nucleus is smaller. However, this speed is less sensitive to nucleus stiffness. The results show that the cell displacement is lower when the nucleus is stiffer. The degree of adhesion between the channel walls and the cell is also very important in confined migration. We observe an increment of cell velocity when the friction coefficient is higher.
机译:这项工作的目的是在机械监禁条件下模拟细胞运动。该细胞迁移模式可能在肿瘤和中性粒细胞样细胞外渗。细胞迁移是不同力的复杂作用的结果,其肌肌肌肌肌肌肌肌肌肌肌菌素工艺之间的相互作用。这里,我们提出并实施了单个细胞的狭窄迁移的有限元模型。在该模型中,我们考虑肌动蛋白和肌球蛋白在细胞运动中的影响。丝状和球状肌动蛋白都是模拟的。考虑到具有不同机械性能的细胞质和核模拟细胞。模拟中的迁移速度约为0.1μm/ min,这与现有文献一致。从我们的模拟中,我们观察到核尺寸在信道内的细胞迁移中具有重要作用。在模拟中,当细胞核较小时,细胞进一步移动。然而,这种速度对核刚度不太敏感。结果表明,当细胞核是硬化时,细胞位移较低。通道壁和电池之间的粘合程度在狭窄的迁移中也非常重要。当摩擦系数更高时,我们观察细胞速度的增量。

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