Institute of Chemistry-Physical Chemistry, Martin-Luther-University Halle-Wittenberg, Halle, Saale, Germany.
Eur Biophys J. 2011 Jul;40(7):891-905. doi: 10.1007/s00249-011-0707-2. Epub 2011 May 20.
Differential scanning calorimetry (DSC) was used to study the miscibility of phosphatidic acids (PAs) with phosphatidylethanolamines (PEs) as a function of chain length (n = 14, 16) and degree of ionization of PAs at pH 4, pH 7, and pH 12. Phase diagrams were constructed using temperature data for onset and end of the phase transition obtained from the direct simulation of the heat-capacity curves. The phase diagrams were analyzed by simulations of the coexistence curves utilizing a four-parameter regular solution model. For PA-PE mixtures, the non-ideality parameters are a function of composition indicating non-symmetric non-ideal mixing behavior. At pH 7, where the PA component is negatively charged, the systems DMPA:DMPE and DPPA:DPPE have positive non-ideality parameters ρ (1) in both phases, indicating a preferred aggregation of like molecules. In contrast, DMPA:DPPE and DPPA:DMPE mixtures had negative ρ (1) values. Measurements at pH 4 showed that mixed pair formation is favored when PA is protonated. At pH 12 where PA is doubly charged, highly positive ρ (l1) parameters are obtained for the liquid-crystalline phase except for the system DPPA:DPPE (ρ (1) < 0). This indicates clustering of like molecules and possibly domain formation in the liquid-crystalline phase. DPPA:DMPE at pH 12 even shows a miscibility gap in the liquid-crystalline phase. Obviously, despite the presence of doubly charged PA a fluid-fluid immiscibility is induced.
差示扫描量热法 (DSC) 被用于研究磷脂酸 (PAs) 与磷脂酰乙醇胺 (PEs) 的混合性,其功能与链长 (n = 14、16) 和 PA 的离解程度有关,实验条件为 pH 4、pH 7 和 pH 12。相图是通过直接模拟热容曲线来获得相变起始和结束时的温度数据构建的。相图通过利用四参数正则溶液模型模拟共存曲线进行分析。对于 PA-PE 混合物,非理想参数是组成的函数,表明非对称非理想混合行为。在 pH 7 下,PA 组分带负电荷,DMPA:DMPE 和 DPPA:DPPE 系统在两相中均具有正的非理想参数 ρ(1),表明相似分子优先聚集。相比之下,DMPA:DPPE 和 DPPA:DMPE 混合物具有负的 ρ(1) 值。在 pH 4 下的测量表明,当 PA 质子化时,混合对的形成更有利。在 pH 12 下,PA 带双电荷,除了 DPPA:DPPE 系统 (ρ(1) < 0) 之外,液晶相获得了高度正的 ρ(11)参数。这表明相似分子的聚类和可能在液晶相中形成域。即使在 pH 12 下,DPPA:DMPE 也在液晶相中显示出混溶性间隙。显然,尽管存在双电荷 PA,但仍会诱导出流体-流体不混溶性。