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两组件囊泡动力学的数值研究。

Numerical investigations of the dynamics of two-component vesicles.

机构信息

Department of Chemical Engineering, Kyoto University, Kyoto, Japan.

出版信息

J Phys Condens Matter. 2011 Jul 20;23(28):284103. doi: 10.1088/0953-8984/23/28/284103. Epub 2011 Jun 27.

DOI:10.1088/0953-8984/23/28/284103
PMID:21709319
Abstract

We examined the dynamics of the deformation and phase separation of two-component vesicles. First, we numerically investigated the effects of (i) thermal noise, (ii) hydrodynamic flow induced by the line tension of the domain boundary and (iii) composition-dependent bending rigidity on the coarsening dynamics of a phase-separated pattern on the surfaces of vesicles with fixed shapes. The dynamical exponent z (N(DB) ∼ t(-z), the total length of the domain boundaries) of the coarsening of the phase-separated pattern was found to decrease from z = 1/3 under no thermal noise to 1/5 < z < 1/4 when including the effects of thermal noise. We also found that the hydrodynamic effect enhances the coarsening in a bicontinuous phase separation for a spherical vesicle. In phase separations of a shape-fixed tubular vesicle, a band-like phase separation with periodicity along the longer axis of the tube occurs because of the composition-dependent bending rigidity and the higher curvatures at the tube end-caps. Second, we also explored the dynamics of shape deformation coupled with phase separation through the bending rigidity of the membrane which depends on the local composition in lipids and found that the composition-dependent bending rigidity crucially influences the phase separation and deformation of the vesicle. The results of simulations are in good agreement with experimentally observed behavior known as 'shape convergence' (Yanagisawa et al 2008 Phys. Rev. Lett. 100 148102).

摘要

我们研究了两成分囊泡的变形和相分离动力学。首先,我们数值研究了(i)热噪声、(ii)由畴边界的线张力引起的流体力学流动以及(iii)组成相关的弯曲刚度对固定形状囊泡表面上相分离图案粗化动力学的影响。相分离图案的粗化的动力学指数 z(N(DB)∼t(-z),畴边界的总长度)发现从无热噪声下的 z=1/3 减小到包括热噪声影响时的 1/5<z<1/4。我们还发现流体力学效应增强了球形囊泡中双连续相分离的粗化。在固定形状的管状囊泡的相分离中,由于组成相关的弯曲刚度和管端帽处的更高曲率,会发生沿管长轴周期性的带状相分离。其次,我们还通过依赖于脂质中局部组成的膜的弯曲刚度来探索与相分离相关的形状变形动力学,并发现组成相关的弯曲刚度对囊泡的相分离和变形有至关重要的影响。模拟结果与称为“形状收敛”的实验观察到的行为(Yanagisawa 等人,2008 年《物理评论快报》第 100 卷 148102 号)吻合良好。

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