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关于乙酸乙酯/单油酸甘油酯/水的微观结构

On the microstructures of ethyl acetate/monoolein/water.

作者信息

Imberg Anna

机构信息

Uppsala University, Department of Pharmacy, Pharmaceutical Physical Chemistry, P.O. Box 580, SE 751 23 Uppsala, Sweden.

出版信息

Colloids Surf B Biointerfaces. 2006 Dec 1;53(2):233-40. doi: 10.1016/j.colsurfb.2006.09.017. Epub 2006 Sep 26.

DOI:10.1016/j.colsurfb.2006.09.017
PMID:17084597
Abstract

A phase diagram, describing the behavior of the polar lipid monoolein (MO), water, and ethyl acetate (EtAc), is here presented as well as results from small angle X-ray scattering. MO is found to have a solubility of 60wt.% in EtAc at 20 degrees C. No macroscopic aggregation of MO can, initially, be detected in the binary MO/EtAc solution even though MO forms solid crystals in concentrated samples when times goes by. In case of the ternary system small amounts of water, mainly bound to the lipid head groups, can be incorporated in the liquid EtAc/MO phase as water has a limited solubility in EtAc. For EtAc/water mass ratios below 2/3 EtAc is present into the reversed bicontinuous cubic and lamellar phases present in the binary MO/water system. To conclude, EtAc is mainly partitioned to the lipid membranes, with minor effects on spontaneous curvature. Hence, simple EtAc-addition has an effect similar to dehydration. For EtAc/water ratios above 2/3 the liquid crystalline phases dissolve. The phase behavior is here discussed in view of related phase behaviors for water-miscible solvent/MO/water systems. For instance, an interpretation of the swelling behavior of the sponge phase (L(3)), present in the water-miscible solvent(s)/MO/water systems, shows that solvents partitioned to the polar domains strongly increases the spontaneous curvature of the MO-films. The reason is probably weaker hydrophobic interactions in interfacial regions. As expected, in case of water-miscible solvents, the ternary phase behaviors can be understood by consider water and water-miscible solvent as one "mixed solvent".

摘要

本文展示了描述极性脂质单油酸甘油酯(MO)、水和乙酸乙酯(EtAc)行为的相图以及小角X射线散射结果。发现MO在20℃时在EtAc中的溶解度为60wt.%。在二元MO/EtAc溶液中,最初无法检测到MO的宏观聚集,尽管随着时间推移,MO在浓缩样品中会形成固体晶体。在三元体系中,由于水在EtAc中的溶解度有限,少量主要与脂质头部基团结合的水可以掺入液态EtAc/MO相中。对于EtAc/水质量比低于2/3的情况,EtAc存在于二元MO/水体系中出现的反向双连续立方相和层状相中。总之,EtAc主要分配到脂质膜中,对自发曲率影响较小。因此,简单添加EtAc具有与脱水类似的效果。对于EtAc/水比高于2/3的情况,液晶相溶解。本文根据与水混溶溶剂/MO/水体系相关的相行为讨论了相行为。例如,对水混溶溶剂/MO/水体系中存在的海绵相(L(3))的溶胀行为的解释表明,分配到极性域的溶剂会强烈增加MO膜的自发曲率。原因可能是界面区域的疏水相互作用较弱。正如预期的那样,在水混溶溶剂的情况下,通过将水和水混溶溶剂视为一种“混合溶剂”,可以理解三元相行为。

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