Out-of-plane deformability and its coupling with electrostatics in biomembranes.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2023-03-31 DOI:10.1042/ETLS20230001
Natalia Wilke, Dayane S Alvares
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引用次数: 1

Abstract

Cell membranes are quasi-bidimensional soft systems formed by multipoles in an ordered array that can be polarized in an electric field. Consequently, electrostatic potentials emerge inside membranes, and membranes respond to external electric fields. From a mechanical perspective, membranes can be easily compressed-expanded, laterally deformed, and curved. Bending is particularly easy, and this kind of deformation translates to changes in the relative positions of the negative and positive charges, leading to strain gradient-induced polarization. Conversely, an external electric field gradient will exert a bending stress that translates to mechanical membrane deformation. These phenomena are described through membrane flexoelectricity. Here, we describe this property in lipid bilayers and cell membranes and summarize the studies in the field with emphasis on the effects promoted by membrane asymmetry.

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生物膜的面外变形性及其与静电的耦合。
细胞膜是由多极有序排列形成的准二维软系统,可在电场中极化。因此,静电电位在膜内出现,膜对外部电场作出反应。从力学的角度来看,膜可以很容易地压缩-膨胀,横向变形和弯曲。弯曲特别容易,这种变形转化为负电荷和正电荷相对位置的变化,导致应变梯度诱导的极化。相反,外部电场梯度将施加弯曲应力,转化为机械膜变形。这些现象是通过薄膜挠性电来描述的。本文介绍了脂质双分子层和细胞膜的这一特性,并对该领域的研究进行了总结,重点介绍了膜不对称对细胞膜的影响。
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CiteScore
7.70
自引率
0.00%
发文量
94
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