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A Semianalytical Model to Study the Effect of Cortical Tension on Cell Rolling

机译:研究皮质张力对细胞滚动影响的半分析模型

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摘要

Cell rolling on the vascular endothelium plays an important role in trafficking of leukocytes, stem cells, and cancer cells. We describe a semianalytical model of cell rolling that focuses on the microvillus as the unit of cell-substrate interaction and integrates microvillus mechanics, receptor clustering, force-dependent receptor-ligand kinetics, and cortical tension that enables incorporation of cell body deformation. Using parameters obtained from independent experiments, the model showed excellent agreement with experimental studies of neutrophil rolling on P-selectin and predicted different regimes of cell rolling, including spreading of the cells on the substrate under high shear. The cortical tension affected the cell-surface contact area and influenced the rolling velocity, and modulated the dependence of rolling velocity on microvillus stiffness. Moreover, at the same shear stress, microvilli of cells with higher cortical tension carried a greater load compared to those with lower cortical tension. We also used the model to obtain a scaling dependence of the contact radius and cell rolling velocity under different conditions of shear stress, cortical tension, and ligand density. This model advances theoretical understanding of cell rolling by incorporating cortical tension and microvillus extension into a versatile, semianalytical framework.
机译:在血管内皮上滚动的细胞在白细胞,干细胞和癌细胞的运输中起重要作用。我们描述了细胞滚动的半分析模型,该模型侧重于微绒毛作为细胞-底物相互作用的单元,并整合了微绒毛力学,受体簇,力依赖性受体-配体动力学和皮质张力,从而使细胞体变形能够并入。使用从独立实验获得的参数,该模型与嗜中性粒细胞在P-选择素上滚动的实验研究显示出极好的一致性,并预测了细胞滚动的不同方式,包括在高剪切下细胞在基质上的扩散。皮质张力影响细胞表面接触面积并影响滚动速度,并调节滚动速度对微绒毛刚度的依赖性。此外,在相同的剪切应力下,与具有较低皮质张力的细胞相比,具有较高皮质张力的细胞的微绒毛承担了更大的负荷。我们还使用该模型获得了在不同剪应力,皮质张力和配体密度条件下接触半径和细胞滚动速度的比例关系。该模型通过将皮层张力和微绒毛扩展纳入通用的半分析框架,提高了对细胞滚动的理论理解。

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