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弹性向列相液晶膜的形态。

Morphology of elastic nematic liquid crystal membranes.

机构信息

Department of Chemical Engineering, McGill University, 3610 University Street, Montreal, Quebec H3A 2B2, Canada.

出版信息

Soft Matter. 2017 Aug 16;13(32):5366-5380. doi: 10.1039/c7sm00977a.

Abstract

Liquid crystalline phases found in many biological materials, such as actin, DNA, cellulose, and collagen can be responsible for the deformation of cell membranes. In this paper, cell membrane deformation is investigated through the coupling between liquid crystal anisotropy and membrane bending elasticity. The generalized shape equation for anisotropic interfaces, which resort to the Cahn-Hoffman capillarity vector, the Rapini-Papoular anchoring energy, and the Helfrich elastic energy, is applied to gain insight into the deformation of closed liquid crystal membranes. This study presents a general morphological phase diagram of membrane surface patterns, in which two characteristic regimes of membrane shapes can be classified with respect to the most dominant factor between liquid crystal anisotropy and bending elasticity. To that end, we consider a 2D nematic liquid crystal droplet immersed in a isotropic phase in the presence of an interfacial layer of surfactants, which leads to an additional elastic contribution to the free energy of the system. The presented results indicate that, depending on the bending elasticity of the cell membrane, the liquid crystal might be able to deform the cell, thereby resulting in anisotropic asymmetric shapes. As liquid crystal anisotropy dominates the bending elasticity, spindle-like or tactoid shapes, which are extensively observed in experiments, can be formed. The findings provide a foundational framework to better understand membrane topologies in living soft matters. Furthermore, the coupling between order and curvature of membranes shed new light into the design of novel functional soft materials.

摘要

许多生物材料中都存在液晶相,如肌动蛋白、DNA、纤维素和胶原蛋白,这些液晶相可能导致细胞膜变形。本文通过液晶各向异性与膜弯曲弹性的耦合来研究细胞膜的变形。采用基于 Cahn-Hoffman 毛细向量、Rapini-Papoular 锚定能和 Helfrich 弹性能的各向异性界面广义形状方程,深入研究了封闭液晶膜的变形。本研究提出了一种膜表面图案的通用形态相图,其中根据液晶各向异性和弯曲弹性之间的主导因素,可将膜形状分为两个特征区域。为此,我们考虑了一个二维向列液晶液滴在含有表面活性剂的各向同性相中的情况,这会导致系统自由能的附加弹性贡献。研究结果表明,取决于细胞膜的弯曲弹性,液晶可能能够使细胞变形,从而导致各向异性的不对称形状。当液晶各向异性主导弯曲弹性时,可以形成广泛观察到的纺锤状或类晶状形状。这些发现为更好地理解活软物质中的膜拓扑结构提供了一个基础框架。此外,膜的有序性和曲率之间的耦合为新型功能软材料的设计提供了新的思路。

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