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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Investigation of interfacial behavior of glycyrrhizin with a lipid raft model via a Langmuir monolayer study
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Investigation of interfacial behavior of glycyrrhizin with a lipid raft model via a Langmuir monolayer study

机译:通过Langmuir单层研究用脂质筏模型研究甘草甜素的界面行为

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摘要

An interaction of glycyrrhizin (GC) with a lipid raft biomembrane model that consisted of N-palmitoyl-d-erythro-sphingosylphosphorylcholine (PSM), 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC), and cholesterol (CHOL) was systematically studied using the Langmuir monolayer technique. To construct the lipid raft model, the surface pressure (??)-molecular area (A) and surface potential (??V)-A isotherms for three-component (PSM/DOPC/CHOL) systems on 0.02 M Tris buffer with 0.13 M NaCl (pH 7.4) were primarily measured by changing their compositions. Thermodynamic and interaction parameters for binary PSM/DOPC and PSM/CHOL systems revealed that PSM interacts more strongly with CHOL than with DOPC. In addition, a morphological analysis performed with Brewster angle microscopy (BAM) and fluorescence microscopy (FM) revealed an optimal ratio of PSM/DOPC/CHOL (1/1/1, by mole) as a model of lipid rafts. Second, the interaction of GC with the ternary PSM/DOPC/CHOL monolayers was investigated on Tris buffer solutions containing different GC concentrations (1, 5, 10, 25, and 50 ??M). In BAM and FM images, microdomains were found to become smaller by increasing the GC concentration in the subphase, suggesting that GC regulates the size of raft domains, which provide dynamic scaffolding for numerous cellular processes. More interestingly, the distinctive GC striped regions were formed at the interface at 50 ??M, which shows that GC divides the ternary monolayer into pieces. This phenomenon was observed only in the presence of CHOL in the monolayer. These results suggest that CHOL plays an essential role in the interaction with GC, which results in one of the major activities associated with saponins' membrane disruption. ? 2012 Elsevier B.V. All rights reserved.
机译:甘草甜素(GC)与脂筏生物膜模型的相互作用,该模型由N-棕榈酰-d-赤藓糖基磷酸酰胆碱(PSM),1,2-二油酰-sn-甘油-3-磷酸胆碱(DOPC)和胆固醇(CHOL)组成)使用Langmuir单层技术进行了系统研究。要构建脂质筏模型,请在0.02 M Tris缓冲液(含0.13)上使用三组分(PSM / DOPC / CHOL)系统的表面压力(Δε)-分子面积(A)和表面电位(ΔΔV)-A等温线。 M NaCl(pH 7.4)的主要测定方法是改变其组成。二进制PSM / DOPC和PSM / CHOL系统的热力学和相互作用参数表明,PSM与CHOL的相互作用比与DOPC的相互作用更强。此外,用布鲁斯特角显微镜(BAM)和荧光显微镜(FM)进行的形态分析表明,PSM / DOPC / CHOL的最佳比例(1/1/1,以摩尔计)是脂质筏的模型。其次,在含有不同GC浓度(1、5、10、25和50?M)的Tris缓冲溶液中研究了GC与三元PSM / DOPC / CHOL单层的相互作用。在BAM和FM图像中,发现通过增加亚相中的GC浓度,微域变得更小,这表明GC调节了筏域的大小,从而为许多细胞过程提供了动态支架。更有趣的是,在50?M处的界面处形成了独特的GC条纹区域,这表明GC将三元单分子层分成了多个部分。仅在单层存在CHOL的情况下观察到此现象。这些结果表明,CHOL在与GC的相互作用中起着至关重要的作用,这是与皂苷膜破坏相关的主要活动之一。 ? 2012 Elsevier B.V.保留所有权利。

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