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非极性的、非两亲性的分子可以加速磷脂的吸附并降低其在气/水界面处的表面张力。

A nonpolar, nonamphiphilic molecule can accelerate adsorption of phospholipids and lower their surface tension at the air/water interface.

机构信息

Systèmes Organisés Fluorés à Finalités Thérapeutiques, Institut Charles Sadron, Université de Strasbourg, France.

出版信息

Chemphyschem. 2011 Oct 4;12(14):2646-52. doi: 10.1002/cphc.201100425. Epub 2011 Aug 1.

Abstract

The adsorption dynamics of a series of phospholipids (PLs) at the interface between an aqueous solution or dispersion of the PL and a gas phase containing the nonpolar, nonamphiphilic linear perfluorocarbon perfluorohexane (PFH) was studied by bubble profile analysis tensiometry. The PLs investigated were dioctanoylphosphatidylcholine (DiC(8)-PC), dilaurylphosphatidylcholine, dimyristoylphosphatidylcholine, and dipalmitoylphosphatidylcholine. The gas phase consisted of air or air saturated with PFH. The perfluorocarbon gas was found to have an unexpected, strong effect on both the adsorption rate and the equilibrium interfacial tension (γ(eq)) of the PLs. First, for all of the PLs, and at all concentrations investigated, the γ(eq) values were significantly lower (by up to 10 mN m(-1)) when PFH was present in the gas phase. The efficacy of PFH in decreasing γ(eq) depends on the ability of PLs to form micelles or vesicles in water. For vesicles, it also depends on the gel or fluid state of the membranes. Second, the adsorption rates of all the PLs at the interface (as assessed by the time required for the initial interfacial tension to be reduced by 30%) are significantly accelerated (by up to fivefold) by the presence of PFH for the lower PL concentrations. Both the surface-tension reducing effect and the adsorption rate increasing effect establish that PFH has a strong interaction with the PL monolayer and acts as a cosurfactant at the interface, despite the absence of any amphiphilic character. Fitting the adsorption profiles of DiC(8)-PC at the PFH-saturated air/aqueous solution interface with the modified Frumkin model indicated that the PFH molecule lay horizontally at the interface.

摘要

采用气泡轮廓分析张力法研究了一系列磷脂(PLs)在含有非极性、非两亲性线性全氟碳化合物全氟己烷(PFH)的气相与水相或分散相之间界面的吸附动力学。所研究的 PLs 为二油酰基磷脂酰胆碱(DiC(8)-PC)、二月桂酰基磷脂酰胆碱、二肉豆蔻酰基磷脂酰胆碱和二月桂酰基磷脂酰胆碱。气相由空气或空气饱和的 PFH 组成。发现全氟碳气体对 PLs 的吸附速率和平衡界面张力(γ(eq))都有出乎意料的强烈影响。首先,对于所有 PLs,并且在所研究的所有浓度下,当 PFH 存在于气相中时,γ(eq)值显着降低(低至 10 mN m(-1))。PFH 降低γ(eq)的功效取决于 PLs 在水中形成胶束或囊泡的能力。对于囊泡,它还取决于膜的凝胶或液体状态。其次,所有 PLs 在界面上的吸附速率(通过初始界面张力降低 30%所需的时间来评估)在较低的 PL 浓度下通过 PFH 的存在而显着加速(高达五倍)。PFH 与 PL 单层的强相互作用以及作为界面上的助表面活性剂的作用,无论是降低表面张力的作用还是提高吸附速率的作用,都表明尽管没有任何两亲性特征,但 PFH 具有很强的相互作用。用改进的 Frumkin 模型拟合在 PFH 饱和空气/水溶液界面上 DiC(8)-PC 的吸附曲线表明,PFH 分子在界面上水平放置。

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