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General hydrophobic interaction potential for surfactant/lipid bilayers from direct force measurements between light-modulated bilayers

机译:根据光调制双层之间的直接力测量表面活性剂/脂质双层的一般疏水相互作用势

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摘要

We establish and quantify correlations among the molecular structures, interaction forces, and physical processes associated with light-responsive self-assembled surfactant monolayers or bilayers at interfaces. Using the surface forces apparatus (SFA), the interaction forces between adsorbed monolayers and bilayers of an azobenzene-functionalized surfactant can be drastically and controllably altered by light-induced conversion of trans and cis molecular conformations. These reversible conformation changes affect significantly the shape of the molecules, especially in the hydrophobic region, which induces dramatic transformations of molecular packing in self-assembled structures, causing corresponding modulation of electrostatic double layer, steric hydration, and hydrophobic interactions. For bilayers, the isomerization from trans to cis exposes more hydrophobic groups, making the cis bilayers more hydrophobic, which lowers the activation energy barrier for (hemi)fusion. A quantitative and general model is derived for the interaction potential of charged bilayers that includes the electrostatic double-layer force of the Derjaguin–Landau–Verwey–Overbeek theory, attractive hydrophobic interactions, and repulsive steric-hydration forces. The model quantitatively accounts for the elastic strains, deformations, long-range forces, energy maxima, adhesion minima, as well as the instability (when it exists) as two bilayers breakthrough and (hemi)fuse. These results have several important implications, including quantitative and qualitative understanding of the hydrophobic interaction, which is furthermore shown to be a nonadditive interaction.
机译:我们建立和量化与光响应性自组装表面活性剂单层或双层界面相关的分子结构,相互作用力和物理过程之间的相关性。使用表面力装置(SFA),偶氮苯官能化表面活性剂的吸附单层和双层之间的相互作用力可以通过光诱导的反式和顺式分子构象转化而显着和可控地改变。这些可逆的构象变化会显着影响分子的形状,特别是在疏水区域,这会引起分子在自组装结构中堆积的剧烈转变,从而引起静电双层的相应调节,空间水合和疏水相互作用。对于双层,从反式到顺式的异构化暴露更多的疏水基团,使顺式双层更疏水,这降低了(半)融合的活化能垒。推导了带电双层相互作用潜力的定量通用模型,其中包括Derjaguin–Landau–Verwey–Overbeek理论的静电双层力,有吸引力的疏水相互作用和排斥性空间水合力。该模型定量地考虑了弹性应变,变形,远距离力,能量最大值,附着力最小值以及两个双层突破和(半)熔断的不稳定性(如果存在)。这些结果具有几个重要的含义,包括对疏水相互作用的定量和定性理解,并且进一步表明这是非加性相互作用。

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