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On the Coupling between Mechanical Properties and Electrostatics in Biological Membranes

机译:关于生物膜机械性能与静电的耦合

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摘要

Cell membrane structure is proposed as a lipid matrix with embedded proteins, and thus, their emerging mechanical and electrostatic properties are commanded by lipid behavior and their interconnection with the included and absorbed proteins, cytoskeleton, extracellular matrix and ionic media. Structures formed by lipids are soft, dynamic and viscoelastic, and their properties depend on the lipid composition and on the general conditions, such as temperature, pH, ionic strength and electrostatic potentials. The dielectric constant of the apolar region of the lipid bilayer contrasts with that of the polar region, which also differs from the aqueous milieu, and these changes happen in the nanometer scale. Besides, an important percentage of the lipids are anionic, and the rest are dipoles or higher multipoles, and the polar regions are highly hydrated, with these water molecules forming an active part of the membrane. Therefore, electric fields (both, internal and external) affects membrane thickness, density, tension and curvature, and conversely, mechanical deformations modify membrane electrostatics. As a consequence, interfacial electrostatics appears as a highly important parameter, affecting the membrane properties in general and mechanical features in particular. In this review we focus on the electromechanical behavior of lipid and cell membranes, the physicochemical origin and the biological implications, with emphasis in signal propagation in nerve cells.
机译:提出细胞膜结构作为具有包埋蛋白的脂质基质,因此,通过脂质行为和与包括和吸收的蛋白质,细胞骨架,细胞外基质和离子介质的互连来命令它们的新出现的机械和静电性能。由脂质形成的结构是柔软的,动态和粘弹性的,其性质取决于脂质组合物和一般条件,例如温度,pH,离子强度和静电电位。脂质双层的透光区的介电常数与极地区域的介电常数相比,其也不同于含水环境而异,并且这些变化发生在纳米级中。此外,脂质的重要百分比是阴离子的,其余的是偶极或更高的多聚合物,并且极性区域高度水合,并且这些水分子形成膜的活性部分。因此,电场(内部和外部)影响膜厚度,密度,张力和曲率,相反,机械变形改性膜静电。结果,界面静电学表现为非常重要的参数,特别是特别地影响膜特性和尤其是机械特征。在本综述中,我们专注于脂质和细胞膜的机电行为,物理化学来源和生物学意义,重点是神经细胞中的信号繁殖。

著录项

  • 期刊名称 Membranes
  • 作者单位
  • 年(卷),期 2021(11),7
  • 年度 2021
  • 页码 478
  • 总页数 24
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:脂质电离;电场;柔性电;电力学性能;电穿孔;神经冲动;

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