Struppe J, Vold R R
Department of Chemistry and Biochemistry, University of California San Diego, 9500 Gilman Drive, La Jolla, California, 92093-0359, USA.
J Magn Reson. 1998 Dec;135(2):541-6. doi: 10.1006/jmre.1998.1605.
Deuterium NMR spectroscopy has been employed to characterize the concentration dependence of orientational order in DMPC/DHPC bicellar solutions with molar ratios q = [DMPC]/[DHPC] = 3.3, 2.7, and 2.3. The stability of a discotic nematic phase can, in general, be predicted from a simple Onsager picture involving the size and concentration of the mesogenic unit, but for the bicellar solutions this model is not adequate. Specifically, macroscopic alignment is observed at total lipid concentrations well below that, 1-10% (w/w) predicted by Onsager's model. Thus the discotic nematic phase is stable to approximately 3-5% (w/w) for q = 3.3-2.3, and the bicellar order is highest just before phase separation occurs at the minimum total phospholipid concentration. This implies the presence of a DHPCbic -->/<-- DHPCsol equilibrium in establishing bicellar size, thereby extending the range of concentrations for which alignment occurs. Bicellar morphology has been verified for a wide range of concentrations, temperatures, and q-values, but as viscosity measurements demonstrate, major morphological changes take place as the temperature is reduced below 30 degreesC.
已采用氘核磁共振光谱来表征摩尔比q = [DMPC]/[DHPC] = 3.3、2.7和2.3的DMPC/DHPC双分子层溶液中取向有序性的浓度依赖性。一般来说,盘状向列相的稳定性可以通过一个涉及介晶单元大小和浓度的简单昂萨格模型来预测,但对于双分子层溶液,该模型并不适用。具体而言,在远低于昂萨格模型预测的总脂质浓度1 - 10%(w/w)时就观察到了宏观取向。因此,对于q = 3.3 - 2.3,盘状向列相在约3 - 5%(w/w)时是稳定的,并且在总磷脂浓度最低时即将发生相分离之前双分子层有序性最高。这意味着在建立双分子层大小时存在DHPCbic -->/<-- DHPCsol平衡,从而扩展了发生取向的浓度范围。已在广泛的浓度、温度和q值范围内验证了双分子层形态,但正如粘度测量所表明的,当温度降至30℃以下时会发生主要的形态变化。