首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Mode of interaction of ganglioside Langmuir monolayer originated from echinoderms: Three binary systems of ganglioside/DPPC, ganglioside/DMPE, and ganglioside/cholesterol
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Mode of interaction of ganglioside Langmuir monolayer originated from echinoderms: Three binary systems of ganglioside/DPPC, ganglioside/DMPE, and ganglioside/cholesterol

机译:神经节苷脂的相互作用模式朗米尔单层源于echinoderms:神经节苷脂/ DPPC,神经节苷脂/ DMPE和神经节苷脂/胆固醇的三种二元体系

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The surface pressure (pi)-area (A), the surface potential (Delta V)-A, and the dipole moment (mu(perpendicular to))-A isotherms were obtained for monolayers made from a ganglioside originated from echinoderms [Diadema setosum ganglioside (DSG-1)], dipalmitoylphosphatidylcholine (DPPC), dimyristoylphosphatidylethanolamine (DMPE), cholesterol (Ch), and their combinations. Monolayers spread on several different substrates were investigated at the air/water interface by the Wilhelmy method, ionizing electrode method, fluorescence microscopy (FM) and atomic force microscopy (AFM). Surface potentials (Delta V) of pure components were analyzed using the three-layer model proposed by Demchak and Fort [R.J. Demchak, T. Fort, J. Colloid Interface Sci. 46 (1974) 191-202]. The new finding was that DSG-1 was stable and showed a liquid-expanded film and that its monolayer behavior of Delta V was sensitive for the change of the NaCl concentration in the subphase. Moreover, the miscibility of DSG-1 and three major lipids in the two-component monolayers was examined by plotting the variation of the molecular area and the surface potential as a function of the DSG-1 molar fraction (XDSG-1), using the additivity rule. From the A--XDSG-1 and Delta V-m-XDSG-1 plots, partial molecular surface area (PMA) and apparent partial molecular surface potential (APSP) were determined at the discrete surface pressure. The PMA and APSP with the mole fraction were extensively discussed for the miscible system. The miscibility was also investigated from the two-dimensional phase diagrams. Furthermore, a regular surface mixture, for which the Joos equation was used for the analysis of the collapse pressure of two-component monolayers, allowed calculation of the interaction parameter (xi) and the interaction energy (-Delta epsilon) between them. The observations using fluorescence microscopy and AFM image also provide us the miscibility in the monolayer state. (c) 2006 Elsevier B.V. All rights reserved.
机译:表面压力(PI) - (a),表面电位(Delta V)-a和偶极矩(μ(垂直于) - 用于由源自棘肌苷的神经节苷脂制成的单层(Diadema SetoSum)制成的单层神经节苷脂(DSG-1)],Dipalmitoylphosphatidyl胆碱(DPPC),Divyristoylphosphatidyl乙醇胺(DMPE),胆固醇(CH)及其组合。通过Wilhelmy方法,电离电极方法,荧光显微镜(FM)和原子力显微镜(AFM)在空气/水界面上调查了几种不同底物上的单层。使用Demchak和Fort提出的三层模型分析了纯组分的表面电位(Delta v)[R.J. Demchak,T. Fort,J.Crintoid接口SCI。 46(1974)191-202]。新发现是DSG-1稳定并显示出液体膨胀的薄膜,并且其ΔV的单层行为对于亚相的NaCl浓度的变化敏感。通过用DSG-1摩尔分数(XDSG-1)的函数绘制分子面积和表面电位的变化来检查双组分单层中DSG-1和三个主要脂质的混溶性。添加性规则。从A - XDSG-1和Delta V-M-XDSG-1图,在离散的表面压力下确定部分分子表面积(PMA)和表观局部分子表面电位(APSP)。广泛地讨论了具有摩尔分数的PMA和APSP对混溶系统进行了广泛的讨论。还从二维相图调查了混溶性。此外,使用JoOS方程用于分析双组分单层的塌陷压力的规则表面混合物,允许它们之间的相互作用参数(Xi)和相互作用(-delta epsilon)。使用荧光显微镜和AFM图像的观察也为我们提供单层状态的混溶性。 (c)2006 Elsevier B.v.保留所有权利。

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