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差示扫描量热法和差热分析在模型膜和生物膜研究中的应用

The use of differential scanning calorimetry and differential thermal analysis in studies of model and biological membranes.

作者信息

McElhaney R N

出版信息

Chem Phys Lipids. 1982 May;30(2-3):229-59. doi: 10.1016/0009-3084(82)90053-6.

Abstract

Differential scanning calorimetry (DSC), and to a lesser extent differential thermal analysis (DTA), are powerful yet relatively rapid and inexpensive thermodynamic techniques for studying the thermotropic phase behavior of lipids in model and biological membranes, without the introduction of exogenous probe molecules. In this review the principles as well as the scope and limitations of DSC and DTA are discussed first. The application of these techniques to the study of the thermotropic phase behavior of aqueous dispersions of various single synthetic phospholipids are then summarized, and the effects of cholesterol, free fatty acids, lysophospholipids, drugs, anesthetics and proteins on the gel to liquid-crystalline phase transitions exhibited by these model systems are discussed. The phase mixing properties of model membranes consisting of mixtures of two or more synthetic or natural phospholipids are considered next. Finally, the thermotropic phase behavior of prokaryotic plasma membranes and of the plasma, microsomal and mitochondrial membranes of eukaryotic cells are reviewed, and the applications of DSC and DTA to study the thermal behavior of specific membrane proteins, as well as the physical properties of the membrane lipid phase, are summarized.

摘要

差示扫描量热法(DSC)以及在较小程度上的差示热分析(DTA),是用于研究模型膜和生物膜中脂质热致相行为的强大但相对快速且廉价的热力学技术,无需引入外源探针分子。在本综述中,首先讨论了DSC和DTA的原理以及范围和局限性。然后总结了这些技术在各种单一合成磷脂水分散体热致相行为研究中的应用,并讨论了胆固醇、游离脂肪酸、溶血磷脂、药物、麻醉剂和蛋白质对这些模型系统所表现出的凝胶到液晶相转变的影响。接下来考虑由两种或更多种合成或天然磷脂混合物组成的模型膜的相混合特性。最后,综述了原核细胞质膜以及真核细胞的质膜、微粒体膜和线粒体膜的热致相行为,并总结了DSC和DTA在研究特定膜蛋白的热行为以及膜脂质相的物理性质方面的应用。

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