Sarkar N, Basu A
Theoretical Condensed Matter Physics Division, Saha Institute of Nuclear Physics, Calcutta, India.
Eur Phys J E Soft Matter. 2012 Nov;35(11):115. doi: 10.1140/epje/i2012-12115-9. Epub 2012 Nov 13.
We construct a coarse-grained effective two-dimensional (2d hydrodynamic theory as a theoretical model for a coupled system of a fluid membrane and a thin layer of a polar active fluid in its ordered state that is anchored to the membrane. We show that such a system is prone to generic instabilities through the interplay of nonequilibrium drive, polar order and membrane fluctuation. We use our model equations to calculate diffusion coefficients of an inclusion in the membrane and show that their values depend strongly on the system size, in contrast to their equilibrium values. Our work extends the work of S. Sankararaman and S. Ramaswamy (Phys. Rev. Lett., 102, 118107 (2009)) to a coupled system of a fluid membrane and an ordered active fluid layer. Our model is broadly inspired by and should be useful as a starting point for theoretical descriptions of the coupled dynamics of a cell membrane and a cortical actin layer anchored to it.
我们构建了一个粗粒化的有效二维流体动力学理论,作为流体膜与有序状态下锚定在膜上的极性活性流体薄层耦合系统的理论模型。我们表明,通过非平衡驱动、极性序和膜波动之间的相互作用,这样的系统易于出现一般的不稳定性。我们使用模型方程计算膜中包含物的扩散系数,并表明其值与平衡值相反,强烈依赖于系统大小。我们的工作将S. Sankararaman和S. Ramaswamy(《物理评论快报》,102, 118107 (2009))的工作扩展到了流体膜与有序活性流体层的耦合系统。我们的模型受到广泛启发,应作为细胞膜与锚定在其上的皮质肌动蛋白层耦合动力学理论描述的起点,具有一定用途。