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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Thermal structural evolutions of DMPC-water biomimetic systems investigated by Raman Spectroscopy
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Thermal structural evolutions of DMPC-water biomimetic systems investigated by Raman Spectroscopy

机译:拉曼光谱研究DMPC水生物摩擦系统的热结构演变

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Many cell membranes of living organisms can be represented as phospholipid bilayers immersed into a water environment. The physical-chemical interactions at the membranes/water interface are responsible for the stabilization of the membranes. In addition, the drug efficiency, the pharmaceutical mechanism and the improvement of the drug design can be addressed to the interactions between the membranes-water interface with the drug and to the membrane-drug interface. In this framework, it is important to find membranes models able to simulate and simultaneously simplify the biological systems to better understand both physical and chemical interactions at the interface level. Dimyristoyl phosphatidyl choline (DMPC) is a synthetic phospholipid used in order to make Multilamellar Vesicle (MLV), Large Unilamellar Vesicle (LUV) and Giant Unilamellar Vesicle (GUV). In order to understand the mechanisms of vesicle formation, we have analyzed mixtures of DMPC and water by micro-Raman spectroscopy at different temperatures in the range between 10 and 35 degrees C. Particularly, we analyzed the temperature dependence of the CN vibrational frequency, which appears well correlated to the order degree of the various phases. These investigations, beyond the determination of phospholipid hydrocarbon chains order, provide information about the conformation of the lipid membranes.
机译:生物体的许多细胞膜可以表示为浸入水环境中的磷脂双层。膜/水界面的物理化学相互作用负责玻膜的稳定性。此外,可以解决药物效率,药物机构和药物设计的改善,以解决与药物和膜 - 药物界面之间的膜 - 水界面之间的相互作用。在该框架中,找到能够模拟的膜模型和同时简化生物系统,以更好地了解界面电平的物理和化学相互作用。 Divyristoyl磷脂酰胆碱(DMPC)是用于制备多硅囊泡(MLV),大不数硅烷囊泡(LUV)和巨型Unilamellar囊泡(GUV)的合成磷脂。为了理解囊泡形成的机制,我们通过微拉曼光谱分析了DMPC和水的混合物在10至35摄氏度之间的不同温度下。特别地,我们分析了CN振动频率的温度依赖性,看起来与各个阶段的订单程度相关。这些研究超出了磷脂烃链顺序的测定,提供了有关脂膜的构象的信息。

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