McQuarrie D A, Mulás P
Biophys J. 1977 Feb;17(2):103-9. doi: 10.1016/S0006-3495(77)85629-4.
Using the simple argument based on irreversible thermodynamics and the Gouy-Chapman theory of the double layer, we show that the equilibrium distribution of charged lipid molecules between the two surfaces of a bilayer is asymmetric if the two solutions bathing the surfaces have the same ionic strength but contain ions of different valencies. For example, if one bathing solution contains 0.10 M NaCl and the other contains 0.70 M NaCl and 0.10 M CaCl2, the ratio of charged lipid molecules of the two surfaces in a membrane that contains 50% total negative lipids is 1.46, leading to a transbilayer potential of 18 mV. A complete set of such numerical results is presented in four figures.
基于不可逆热力学和双层的古依-查普曼理论的简单论证,我们表明,如果双层两侧的两种溶液具有相同的离子强度但含有不同价态的离子,带电脂质分子在双层两个表面之间的平衡分布是不对称的。例如,如果一种浴液含有0.10 M的NaCl,另一种含有0.70 M的NaCl和0.10 M的CaCl₂,那么在总负电荷脂质含量为50%的膜中,两个表面的带电脂质分子比例为1.46,导致跨双层电位为18 mV。四个图中给出了一组完整的此类数值结果。