Tenchov B G, Raĭchev B D
Biofizika. 1977 Nov-Dec;22(6):1030-4.
This paper presents a method of calculation of the surface charge equilibrium distribution between the two surfaces of a spherically closed phospholipid bilayer suspended in aqueous electrolyte solution. The net surface charge is supposed to be provided by the ionized polar groups of the phospholipid molecules. Its equilibrium distribution is found by minimization of the free electrostatic energy. The procedure of minimization utilizes the solution of the Poisson-Boltzmann equation which describes the double electric layers of the membrane and an expression for the membrane potential derived under the assumption of absence of charges in the membrane phase. An analytical solution of the problem in the range of validity of the linearized Poisson-Boltzman equation is obtained. It is shown that in this case an equilibrium transmembrane potential exists, and the surface charge density is greater at the outer surface of the vesicle.
本文提出了一种计算悬浮于电解质水溶液中的球形封闭磷脂双层膜两个表面间表面电荷平衡分布的方法。假定净表面电荷由磷脂分子的离子化极性基团提供。通过使自由静电能最小化来确定其平衡分布。最小化过程利用了描述膜双电层的泊松 - 玻尔兹曼方程的解以及在膜相中不存在电荷的假设下导出的膜电位表达式。在线性化泊松 - 玻尔兹曼方程的有效范围内得到了该问题的解析解。结果表明,在这种情况下存在平衡跨膜电位,且囊泡外表面的表面电荷密度更大。