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片足运动中的收缩性和逆行流动。

Contractility and retrograde flow in lamellipodium motion.

作者信息

Kruse K, Joanny J F, Jülicher F, Prost J

机构信息

Max-Planck-Institut für Physik komplexer Systeme, Nöthnitzerstr. 38, 01187 Dresden, Germany.

出版信息

Phys Biol. 2006 Jun 21;3(2):130-7. doi: 10.1088/1478-3975/3/2/005.

Abstract

We present a phenomenological description of cell locomotion on a solid substrate. The material properties of the actin cytoskeleton in the lamellipodium are described by the constitutive equations of a viscous polar gel with intrinsic activity. The polymerization of the gel takes place in a localized region near the leading edge. Using a simple two-dimensional description, we calculate in the steady state the thickness profile of the lamellipodium which at the rear connects to the cell body; we also calculate the flow profiles and the forces exerted on the substrate. The cell velocity is estimated as a function of externally applied forces. Our description is consistent with experimentally observed properties of motile cells such as the existence of a retrograde flow in the lamellipodium and a dipolar force distribution exerted by the cell on the substrate.

摘要

我们给出了细胞在固体基质上运动的唯象描述。片状伪足中肌动蛋白细胞骨架的材料特性由具有内在活性的粘性极性凝胶的本构方程描述。凝胶的聚合发生在前缘附近的局部区域。使用简单的二维描述,我们在稳态下计算了片状伪足的厚度分布,其在后部与细胞体相连;我们还计算了流动分布以及细胞对基质施加的力。细胞速度被估计为外部作用力的函数。我们的描述与运动细胞的实验观察特性一致,例如片状伪足中逆行流的存在以及细胞对基质施加的偶极力分布。

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