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双组分流体双层膜的弛豫动力学

Relaxation dynamics of two-component fluid bilayer membranes.

作者信息

Okamoto Ryuichi, Kanemori Yuichi, Komura Shigeyuki, Fournier Jean-Baptiste

机构信息

Department of Chemistry, Graduate School of Science and Engineering, Tokyo Metropolitan University, 192-0397, Tokyo, Japan.

Université Paris Diderot, Sorbonne Paris Cité, Laboratoire Matière et Systèmes Complexes (MSC), UMR 7057 CNRS, F-75205, Paris, France.

出版信息

Eur Phys J E Soft Matter. 2016 May;39(5):52. doi: 10.1140/epje/i2016-16052-3. Epub 2016 May 6.

Abstract

We theoretically investigate the relaxation dynamics of a nearly flat binary lipid bilayer membrane by taking into account the membrane tension, hydrodynamics of the surrounding fluid, inter-monolayer friction and mutual diffusion. Mutual diffusion is the collective irreversible process that leads to homogenization of the density difference between the two lipid species. We find that two relaxation modes associated with the mutual diffusion appear in addition to the three previously discussed relaxation modes reflecting the bending and compression of the membrane. Because of the symmetry, only one of the two diffusive modes is coupled to the bending mode. The two diffusive modes are much slower than the bending and compression modes in the entire realistic wave number range. This means that the long time relaxation behavior is dominated by the mutual diffusion in binary membranes. The two diffusive modes become even slower in the vicinity of the unstable region towards phase separation, while the other modes are almost unchanged. In short time scales, on the other hand, the lipid composition heterogeneity induces in-plane compression and bending of the bilayer.

摘要

我们通过考虑膜张力、周围流体的流体动力学、层间摩擦和互扩散,从理论上研究了近扁平二元脂质双层膜的弛豫动力学。互扩散是导致两种脂质种类之间密度差均匀化的集体不可逆过程。我们发现,除了之前讨论的反映膜弯曲和压缩的三种弛豫模式外,还出现了与互扩散相关的两种弛豫模式。由于对称性,两种扩散模式中只有一种与弯曲模式耦合。在整个实际波数范围内,两种扩散模式比弯曲和压缩模式慢得多。这意味着二元膜中的长时间弛豫行为由互扩散主导。在向相分离的不稳定区域附近,两种扩散模式变得更慢,而其他模式几乎不变。另一方面,在短时间尺度上,脂质组成的不均匀性会引起双层膜的面内压缩和弯曲。

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