论文标题
核力学在结构化和密闭环境中建模与粘附无关的细胞迁移中的影响
The influence of nucleus mechanics in modelling adhesion-independent cell migration in structured and confined environments
论文作者
论文摘要
最近的生物学实验表明,即使没有局灶性粘附的激活,某些类型的细胞也能够在结构化和约束环境中移动。专注于这种特殊现象并基于以前的工作,我们得出了一种新型的二维机械模型,该模型依赖于以下物理成分:肌动蛋白皮质的不对称续订支持膜,从而导致材料的后流;核膜和内部核材料的机械描述;微管网络引导核位置;单元与外部环境之间的接触相互作用。然后,通过数值求解所得的第四阶系统,以研究模型参数的定性效应,主要是管理核的机械性能和约束结构的几何形状的研究。与生物学观察结果一致,我们发现以硬核为特征的细胞无法在可以用较软核的细胞交叉的通道中迁移。关于几何形状,细胞速度和迁移能力受到通道宽度和外部结构波长的影响。即使仍然是初步的,这些结果对于确定细胞迁移的物理极限和在组织工程设计脚手架时可能有用。
Recent biological experiments have shown that certain types of cells are able to move in structured and confined environment even without the activation of focal adhesion. Focusing on this particular phenomenon and based on previous works, we derive a novel two-dimensional mechanical model, which relies on the following physical ingredients: the asymmetrical renewal of the actin cortex supporting the membrane, resulting in a backward flow of material; the mechanical description of the nucleus membrane and the inner nuclear material; the microtubule network guiding nucleus location; the contact interactions between the cell and the external environment. The resulting fourth order system of partial differential equations is then solved numerically to conduct a study of the qualitative effects of the model parameters, mainly those governing the mechanical properties of the nucleus and the geometry of the confining structure. Coherently with biological observations, we find that cells characterized by a stiff nucleus are unable to migrate in channels that can be crossed by cells with a softer nucleus. Regarding the geometry, cell velocity and ability to migrate are influenced by the width of the channel and the wavelength of the external structure. Even though still preliminary, these results can be potentially useful in determining the physical limit of cell migration in confined environment and in designing scaffold for tissue engineering.