Mengistu D H, May S
Department of Physics, North Dakota State University, Fargo, ND 58105-5566, USA.
Eur Phys J E Soft Matter. 2008 Jul;26(3):251-60. doi: 10.1140/epje/i2007-10319-8. Epub 2008 May 7.
Modeling electrostatic properties of macroions such as charged lipid membranes is especially simple within linear Debye-Hückel theory where analytical solutions are often available. Charged lipid layers typically also contain zwitterionic lipids that possess a large headgroup dipole. We incorporate the presence of zwitterionic lipids into the Debye-Hückel description and derive analytical expressions for the free energies of isolated and interacting lipid layers. Our approach accounts for two major characteristic features of zwitterionic lipids, the firm linkage of the dipole's negatively charged phosphate end to the lipid chain and the comparatively large conformational freedom of the opposite, positively charged, dipole end. This leads to differences in structural properties of mixed anionic and cationic lipid layers that are known from experiment and that the Debye-Hückel description qualitatively recovers. Most notably, this includes the different dependencies of the average cross-sectional area per lipid on the composition of mixed anionic and cationic membranes. In addition, we study the predictions of Debye-Hückel theory regarding the electrostatic influence of zwitterionic lipids on the stability of non-ideally mixed membranes as well as on the adsorption energy of oppositely charged macroions.
在通常能得到解析解的线性德拜 - 休克尔理论范围内,对诸如带电脂质膜等大离子的静电性质进行建模特别简单。带电脂质层通常还含有具有大的头基偶极子的两性离子脂质。我们将两性离子脂质的存在纳入德拜 - 休克尔描述中,并推导了孤立脂质层和相互作用脂质层自由能的解析表达式。我们的方法考虑了两性离子脂质的两个主要特征,即偶极子带负电的磷酸端与脂质链的牢固连接以及相对的带正电的偶极子端较大的构象自由度。这导致了混合阴离子和阳离子脂质层结构性质的差异,这些差异是实验中已知的,并且德拜 - 休克尔描述能定性地重现这些差异。最值得注意的是,这包括每个脂质的平均横截面积对混合阴离子和阳离子膜组成的不同依赖性。此外,我们研究了德拜 - 休克尔理论对两性离子脂质对非理想混合膜稳定性以及对带相反电荷大离子吸附能的静电影响的预测。