Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
iCaNS, Institute of Advanced Energy, Kyoto University, Uji, Kyoto 611-0011, Japan.
J Phys Chem B. 2024 Aug 8;128(31):7596-7604. doi: 10.1021/acs.jpcb.4c03399. Epub 2024 Jul 24.
Small amphiphilic molecules, such as ethanol, disturb the structure of lipid bilayer membranes to increase the membrane permeability, which is important for applications such as drug delivery, disinfection, and fermentation. To investigate how and the extent to which coexisting salts affect membrane disturbance, we performed molecular dynamics (MD) simulations on lipid bilayer membranes composed of zwitterionic lipids in aqueous ethanol solutions containing 0-631 mM NaCl, KCl, and KI salts. The addition of salts at low concentrations induced cationic adsorption on the lipid membrane, which competes with ethanol adsorption, thereby reducing the hydrogen bonds between ethanol and lipid molecules. This competitive adsorption mitigated the membrane disturbance and decreased the permeation of ethanol molecules into the membrane. In contrast, higher salt concentrations enhanced the membrane disturbance and permeability, which was caused by the salting-out of ethanol from the aqueous phase to the lipid bilayer. These conflicting effects appearing at different concentrations were stronger with the chloride salts than with the iodide salt. Among the two chloride salts, NaCl and KCl, the latter showed a greater enhancement in ethanol permeation at high concentrations. This seeming anti-Hofmeister salting-out behavior resulted from greater Na adsorption, preventing the ethanol-lipid interactions.
小的两亲性分子,如乙醇,会破坏脂质双层膜的结构以增加膜通透性,这对于药物输送、消毒和发酵等应用非常重要。为了研究共存盐如何以及在何种程度上影响膜的扰动,我们在含有 0-631 mM NaCl、KCl 和 KI 盐的水合乙醇溶液中的两性离子脂质双层膜上进行了分子动力学 (MD) 模拟。在低浓度下添加盐会导致阳离子在脂质膜上的吸附,与乙醇吸附竞争,从而减少乙醇和脂质分子之间的氢键。这种竞争吸附减轻了膜的扰动,减少了乙醇分子进入膜的渗透。相比之下,较高的盐浓度会增强膜的扰动和通透性,这是由于乙醇从水相向脂质双层的盐析作用。这些在不同浓度下出现的相互矛盾的影响在氯化物盐中比在碘化物盐中更为明显。在两种氯化物盐中,后者在高浓度下表现出更大的乙醇渗透增强。这种似乎违反 Hofmeister 盐析行为的现象是由于更多的 Na 吸附,阻止了乙醇-脂质相互作用。