In this work the Langmuir monolayers were used to prepare multicomponent systems mimicking outer and inner layer of human erythrocyte membranes. The aim of performed experiments was to compare the influence of cholesterol on complex artificial membranes reflecting compositional diversity of the respective membranes leaflets. The properties of both systems in the presence of cholesterol at various concentrations were analyzed by means of thermodynamic description of the interactions between molecules in the investigated monolayers, complemented by the analysis of their morphology performed with the application of Brewster Angle Microcopy. It was found that cholesterol induces highly favorable stabilizing effect on the studied monolayers, increases their condensation and strengthens intermolecular forces. However, the influence of cholesterol was found to be stronger on the mixed film imitating outer membrane layer. Detailed discussion of the obtained results proved that the behavior of cholesterol in the model outer vs. inner layers is strongly determined by their compositional differences. The most important findings resulting from these experiments concern the problem of transbilayer distribution of cholesterol in membranes, which despite numerous investigations seems to be still unclear. The data obtained in this work allow one to suggest that cholesterol tends to accumulate preferentially in outer membrane leaflet or it is localized symmetrically in both layers rather than in inner leaflet.

译文

:在这项工作中,Langmuir单层被用于制备模仿人类红细胞膜外层和内层的多组分系统。进行实验的目的是比较胆固醇对反映各个膜小叶组成多样性的复杂人工膜的影响。通过热力学描述所研究的单分子层中分子之间的相互作用,并用Brewster Angle Microcopy对它们的形态进行分析,对两种系统在不同浓度的胆固醇存在下的性能进行了分析。发现胆固醇对所研究的单分子层具有高度有利的稳定作用,增加了它们的缩合并增强了分子间力。然而,发现胆固醇对模拟外膜层的混合膜的影响更大。对所得结果的详细讨论证明,模型外层和内层中胆固醇的行为强烈取决于它们的组成差异。这些实验产生的最重要发现与膜中胆固醇跨双层分布的问题有关,尽管进行了许多研究,但这仍然不清楚。通过这项工作获得的数据可以表明胆固醇倾向于优先在外膜小叶中积累,或者胆固醇对称地分布在两层而不是内部小叶中。

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