首页> 美国卫生研究院文献>Journal of Biological Physics >Dynamics of Bio-Polymeric Brushes Growing from a Cellular Membrane: Tentative Modelling of the Actin Turnover within an Adhesion Unit; the Podosome
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Dynamics of Bio-Polymeric Brushes Growing from a Cellular Membrane: Tentative Modelling of the Actin Turnover within an Adhesion Unit; the Podosome

机译:从细胞膜生长的生物聚合物刷的动力学:粘附单元内肌动蛋白周转的初步建模;假体

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摘要

Podosomes are involved in the adhesion process of various cells to a solid substrate. They have been proven to consist of a dense actin core surrounded by an actin cloud. The podosomes, which nucleate when the cell comes in the vicinity of a substrate, contribute to link the membrane to the solid surface, but rather than frozen links, collective dynamical behaviors are experimentally observed. Depending on the differentiation stage, podosomes assemble and form clusters, rings or belts. Considering the dynamics of a polymeric brush, we design a simple model aiming at the description of a single podosome, the basic unit of these complex adhesion-structures and compare our theoretical conclusions to recent experimental results. Particularly, we explain, by solving the diffusion problem around the podosome, why the structure is likely to have a finite life-span.
机译:体参与各种细胞对固体基质的粘附过程。已经证明它们由密集的肌动蛋白核心和肌动蛋白云组成。当细胞进入底物附近时,核小体会成核,有助于将膜连接到固体表面,但不是冷冻连接,而是通过实验观察到了集体动力学行为。根据分化阶段,足囊组装并形成簇,环或带。考虑到聚合物刷的动力学,我们设计了一个简单的模型,旨在描述单个足小体,这些复杂的附着结构的基本单位,并将我们的理论结论与最近的实验结果进行比较。特别地,我们通过解决围绕足小体的扩散问题来解释为什么该结构可能具有有限的寿命。

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