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植物甾醇对磷脂单层的影响--磷脂结构的影响。

The influence of plant stanol on phospholipids monolayers--the effect of phospholipid structure.

机构信息

Faculty of Chemistry, Jagiellonian University, Ingardena 3, 30-060 Kraków, Poland.

出版信息

J Colloid Interface Sci. 2011 Aug 15;360(2):681-9. doi: 10.1016/j.jcis.2011.04.089. Epub 2011 Apr 29.

Abstract

This work is aimed at investigating the influence of a plant stanol (β-sitostanol) on Langmuir monolayers from various phospholipids and comparing the effect of phytostanol versus its unsaturated analog--phytosterol (β-sitosterol). The studied phospholipids differed in the structure of polar head (phosphatidylcholine--PC, phosphatidylethanolamine--PE, phosphatidylserine--PS) as well as in the number of monounsaturated chains in PC molecule. It was found that the introduction of stanol into PC monolayers is thermodynamically favorable, contrary to its effect on PE and PS films. The magnitude of condensing and ordering effect of stanol depends both on the number of monounsaturated chains in PC molecule and on the composition of stanol-PC mixture. The analysis of BAM images evidenced phase separation of immiscible components in stanol/DPPS systems. The results of Langmuir monolayer studies for stanol/phospholipids mixtures compared with those for corresponding sterol/phospholipids systems proved quite a similar effect of both compounds on the investigated phospholipid monolayers, despite differences in the structure of tetracyclic ring skeleton.

摘要

本工作旨在研究植物甾烷醇(β-谷甾烷醇)对来自不同磷脂的 Langmuir 单层的影响,并比较植物甾烷醇与不饱和类似物——植物固醇(β-谷固醇)的作用。所研究的磷脂在极性头(磷脂酰胆碱 - PC、磷脂酰乙醇胺 - PE、磷脂酰丝氨酸 - PS)的结构以及 PC 分子中单不饱和链的数量上有所不同。结果发现,甾烷醇引入 PC 单层中在热力学上是有利的,与它对 PE 和 PS 膜的影响相反。甾醇的缩合和有序化效应的大小既取决于 PC 分子中单不饱和链的数量,也取决于甾醇-PC 混合物的组成。BAM 图像的分析表明在 stanol/DPPS 体系中不相容成分的相分离。与相应的甾醇/磷脂体系的 Langmuir 单层研究结果相比,证实了这两种化合物对所研究的磷脂单层的作用非常相似,尽管四环骨架的结构存在差异。

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