首页> 美国卫生研究院文献>Biophysical Journal >Partition coefficient of a surfactant between aggregates and solution: application to the micelle-vesicle transition of egg phosphatidylcholine and octyl beta-D-glucopyranoside.
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Partition coefficient of a surfactant between aggregates and solution: application to the micelle-vesicle transition of egg phosphatidylcholine and octyl beta-D-glucopyranoside.

机译:表面活性剂在聚集体和溶液之间的分配系数:应用于卵磷脂酰胆碱和辛基β-D-吡喃葡萄糖苷的胶束-囊泡转变。

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摘要

The mechanism of the solubilization of egg phosphatidylcholine containing 10% (M/M) of egg phosphatidic acid unilamellar vesicles by the nonionic detergent, octyl beta-D-glucopyranoside, has been investigated at both molecular and supramolecular levels by using fluorescence and turbidity measurements. In the lamellar region of the transition, the solubilization process has been shown to be first a function of the initial size before reaching an equilibrium aggregation state at the end of this region (the onset of the micellization process). The analysis during the solubilization process of the evolution of both the fluorescence energy transfer between N-(7-nitro-2,1,3-benzoxadiazol-4-yl)-phosphatidylethanolamine (NBD-PE) and N-(lissamine rhodamine B sulfonyl)-phosphatidylethanolamine (Rho-PE) and the fluorescence of 6-dodecanoyl-2-dimethylaminoaphtalene (Laurdan) has allowed us to determine the evolution of the detergent partitioning between the aqueous and the lipidic phases, i.e., the evolution of the molar fraction of OG in the aggregates (XOG/Lip) with its monomeric detergent concentration in equilibrium ([OG]H2O), throughout the vesicle-to-micelle transition without isolating the aqueous medium from the aggregates. The curve described by XOG/Lip versus [OG]H2O shows that the partition coefficient of OG is changing throughout the solubilization process. From this curve, which tends to a value of 1/(critical micellar concentration), five different domains have been delimited: two in the lamellar part of the transition (for 0 < [OG]H2O < 15.6 mM), one in the micellization part, and finally two in the pure micellar region (for 16.5 < [OG]H2O < 21 mM). The first domain in the lamellar part of the transition is characterized by a continuous variation of the partition coefficient. In the second domain, a linear relation relates XOG/Lip and [OG]H2O, indicating the existence of a biphasic domain for which the detergent presents a constant partition coefficient of 18.2 M-1. From the onset to the end of the solubilization process (domain 3), the evolution of (XOG/Lip) with [OG]H2O can be fitted by a model corresponding to the coexistence of detergent-saturated lamellar phase with lipid-saturated mixed micelles, both in equilibrium with an aqueous phase, i.e., a three-phase domain. The micellar region is characterized first by a small two-phase domain (domain 4) with a constant partition coefficient of 21 M-1, followed by a one-phase mixed-micellar domain for which XOG/Lip no longer linearly depends on [OG]H2O. The results are discussed in terms of a phase diagram.
机译:通过使用荧光和浊度测量,在分子和超分子水平上研究了通过非离子型去污剂辛基β-D-吡喃葡萄糖苷溶解含有10%(M / M)卵磷脂酸单层囊泡的卵磷脂酰胆碱的机理。在过渡层状区域中,增溶过程已被证明首先是初始尺寸的函数,然后在该区域的末端(胶束化过程的开始)达到平衡聚集状态。 N-(7-硝基-2,1,3-苯并恶二唑-4-基)-磷脂酰乙醇胺(NBD-PE)和N-(lissamine罗丹明B磺酰基)之间的荧光能量转移的演化过程中的分析)-磷脂酰乙醇胺(Rho-PE)和6-十二烷酰基-2-二甲基氨基a烯(Laurdan)的荧光使我们能够确定洗涤剂相在水相和脂质相之间的分配演变,即,在整个囊泡向胶束到胶束的过渡过程中,骨料中的OG(XOG / Lip)的单体去污剂浓度处于平衡状态([OG] H2O),而没有从骨料中分离出水性介质。 XOG / Lip与[OG] H2O的关系曲线表明,在整个增溶过程中,OG的分配系数都在变化。从这个趋向于1 /(临界胶束浓度)的曲线,已界定了五个不同的域:两个在过渡层状部分(对于0 <[OG] H2O <15.6 mM),一个在胶束化中部分,最后两个在纯胶束区域(对于16.5 <[OG] H2O <21 mM)。过渡层状部分中的第一个域的特征是分配系数的连续变化。在第二个域中,线性关系与XOG / Lip和[OG] H2O相关,表明存在一个双相域,该去污剂为其提供恒定的分配系数18.2 M-1。从溶解过程的开始到结束(域3),可以通过模型来拟合(XOG / Lip)与[OG] H2O的演化,该模型对应于去污剂饱和的层状相与脂质饱和的混合胶束的共存,两者均与水相(即三相区域)保持平衡。胶束区的特征首先是具有恒定分配系数21 M-1的小两相域(域4),然后是XOG / Lip不再线性依赖于[OG]的单相混合胶束域] H2O。根据相图讨论了结果。

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