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A mechanobiological model to study upstream cell migration guided by tensotaxis

机译:塔狭窄引导上游细胞迁移的力学模型

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Cell migration is a process of crucial importance for the human body. It is responsible for important processes such as wound healing and tumor metastasis. Migration may occur in response to stimuli of chemical, physical and mechanical nature occurring in the cellular microenvironment. The interstitial flow (IF) can generate mechanical stimuli in cells that influence the cell behavior and interactions of the cells with the extracellular matrix (ECM). One of the phenomena is upstream migration, which is observed in some tumors. In this work, we present a new approach to study the adherent cell migration in a porous medium using a mechanobiological model, attempting to understand if upstream migration can be generated exclusively by mechanical factors. The influence of IF on the behavior of cells and the extracellular matrix was considered. The model is based on a system of coupled nonlinear differential equations solved by the finite element method. Several simulations were performed to study the upstream cell migration and evaluate the effects of pressure, permeability, ECM stiffness and cellular concentration variations on the cell velocity. The results indicated that upstream migration can occur in the presence of mechanical stimuli generated by IF and that the tested parameters have a direct influence on the cellular velocity, especially the pressure and the permeability.
机译:细胞迁移是对人体至关重要的过程。它负责伤口愈合和肿瘤转移等重要过程。响应于在细胞微环境中发生的化学,物理和机械性质的刺激,可能发生迁移。间质流量(IF)可以在影响细胞行为的细胞中产生机械刺激和细胞与细胞外基质(ECM)的相互作用。其中一种现象是上游迁移,在一些肿瘤中观察到。在这项工作中,我们介绍了一种使用机械模型研究多孔介质中的粘附细胞迁移的新方法,试图了解是否可以通过机械因素专门产生上游迁移。考虑了如果对细胞和细胞外基质的行为的影响。该模型基于由有限元方法解决的耦合非线性微分方程系统。进行了几种模拟以研究上游细胞迁移,评价压力,渗透率,ECM刚度和细胞浓度变化对细胞速度的影响。结果表明,在通过IF和测试参数对细胞速度产生直接影响的情况下,可以在机械刺激的存在下发生上游迁移,尤其是压力和渗透性。

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