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Phase Transitions of Binary Lipid Mixtures: A Combined Study by Adiabatic Scanning Calorimetry and Quartz Crystal Microbalance with Dissipation Monitoring

机译:二元脂质混合物的相变:绝热扫描量热法和石英晶体微天平与耗散监测的组合研究

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摘要

The phase transitions of binary lipid mixtures are studied by a combination of Peltier-element-based adiabatic scanning calorimetry (pASC) and quartz crystal microbalance with dissipation monitoring (QCM-D). pASC, a novel type of calorimeter, provides valuable and unambiguous information on the heat capacity and the enthalpy, whereas QCM-D is proposed as a genuine way of determining phase diagrams by analysing the temperature dependence of the viscosity. Two binary mixtures of phospholipids with the same polar head and differing in the alkyl chain length, DMPC + DPPC and DMPC + DSPC, are discussed. Both techniques give consistent phase diagrams, which compare well with literature results, showing their capability to map the phase behaviour of pure lipids as well as lipid mixtures. This work can be considered as a departure point for further investigations on more complex lipid mixtures displaying relevant phases such as the liquid-ordered phase and solid-lipid interfaces with biologically functional importance.
机译:通过基于珀耳帖元素的绝热扫描量热法(pASC)和带有耗散监测的石英晶体微量天平(QCM-D)的组合研究了二元脂质混合物的相变。 pASC是一种新型的量热仪,可提供有关热容量和焓的有价值且明确的信息,而QCM-D被认为是通过分析粘度对温度的依赖性来确定相图的真正方法。讨论了具有相同极性头和不同烷基链长度的两种磷脂的二元混合物DMPC + DPPC和DMPC + DSPC。两种技术都给出了一致的相图,与文献结果相比较很好,表明了它们能够绘制纯脂质和脂质混合物的相行为图。这项工作可以被视为进一步研究更复杂的脂质混合物的起点,这些混合物具有相关的相,如具有生物学功能重要性的液相相和固体-脂质界面。

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