Petelska Aneta Dorota, Figaszewski Zbigniew Artur
Institute of Chemistry, University of Bialystok, Bialystok, Poland.
J Membr Biol. 2009 Jul;230(1):11-9. doi: 10.1007/s00232-009-9181-5. Epub 2009 Jul 15.
The effect of pH on the interfacial tension of a sphingomyelin membrane in aqueous solution has been studied. Three models describing H(+) and OH(-) ion adsorption on the bilayer lipid surface are presented. In models I and II, the membrane surface is continuous, with uniformly distributed functional groups as centers of H(+) and OH(-) ion adsorption. In model III, the membrane surface is composed of lipid molecules, with and without adsorbed H(+) and OH(-) ions. The contribution of each individual lipid molecule to the overall interfacial tension of the bilayer was assumed to be additive in models I and II. In model III, the Gibbs isotherm was used to describe adsorption of H(+) and OH(-) ions at the bilayer surface. Theoretical equations are derived to describe the interfacial tension as a function of pH for all three models. Maximum interfacial tension was observed experimentally at the isoelectric point.
研究了pH对水溶液中鞘磷脂膜界面张力的影响。提出了三种描述H(+)和OH(-)离子在双层脂质表面吸附的模型。在模型I和II中,膜表面是连续的,具有均匀分布的官能团作为H(+)和OH(-)离子的吸附中心。在模型III中,膜表面由脂质分子组成,有或没有吸附的H(+)和OH(-)离子。在模型I和II中,假定每个脂质分子对双层膜整体界面张力的贡献是可加的。在模型III中,用吉布斯等温线描述H(+)和OH(-)离子在双层膜表面的吸附。推导了描述所有三种模型中界面张力与pH关系的理论方程。在等电点处实验观察到最大界面张力。