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Correlating steric-hydration forces with water dynamics through surface force and diffusion NMR measurements in a lipid-DMSO-H2O system

机译:通过脂质-DMSO-H2O系统中的表面力和扩散NMR测量,将空间水化力与水动力学相关联

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摘要

Dimethyl sulfoxide (DMSO) is a common solvent and biological additive possessing well-known utility in cellular cryoprotection and lipid membrane permeabilization, but the governing mechanisms at membrane interfaces remain poorly understood. Many studies have focused on DMSO-lipid interactions and the subsequent effects on membrane-phase behavior, but explanations often rely on qualitative notions of DMSO-induced dehydration of lipid head groups. In this work, surface forces measurements between gel-phase dipalmitoylphosphatidylcholine membranes in DMSO-water mixtures quantify the hydration-and solvation-length scales with angstrom resolution as a function of DMSO concentration from 0 mol% to 20 mol%. DMSO causes a drastic decrease in the range of the steric hydration repulsion, leading to an increase in adhesion at a much-reduced intermembrane distance. Pulsed field gradient NMR of the phosphatidylcholine (PC) head group analogs, dimethyl phosphate and tetramethylammonium ions, shows that the ion hydrodynamic radius decreases with increasing DMSO concentration up to 10 mol% DMSO. The complementary measurements indicate that, at concentrations below 10 mol%, the primary effect of DMSO is to decrease the solvated volume of the PC head group and that, from 10 mol% to 20 mol%, DMSO acts to gradually collapse head groups down onto the surface and suppress their thermal motion. This work shows a connection between surface forces, head group conformation and dynamics, and surface water diffusion, with important implications for soft matter and colloidal systems.
机译:二甲基亚砜(DMSO)是一种常见的溶剂和生物添加剂,在细胞冷冻保护和脂质膜通透化方面具有众所周知的效用,但在膜界面的调控机制仍知之甚少。许多研究都集中在DMSO-脂质相互作用及其对膜相行为的后续影响上,但是解释通常依赖于DMSO诱导的脂质头基脱水的定性概念。在这项工作中,在DMSO-水混合物中的凝胶相二棕榈酰磷脂酰胆碱膜之间的表面力测量结果量化了水合长度和溶剂化长度的尺度,其分辨率是DMSO浓度从0 mol%到20 mol%的函数。 DMSO引起空间水合斥力范围的急剧减小,导致膜间距离大大减小的粘合力增加。磷脂酰胆碱(PC)头基类似物磷酸二甲酯和四甲基铵离子的脉冲场梯度NMR表明,随着DMSO浓度的增加,DMSO浓度增加到10 mol%时,离子的流体动力学半径减小。补充测量结果表明,在浓度低于10 mol%时,DMSO的主要作用是减少PC头基的溶剂化体积,并且DMSO从10 mol%降至20 mol%,逐渐将头基塌陷到并抑制其热运动。这项工作表明了表面力,头基构象和动力学以及表面水扩散之间的联系,这对软物质和胶体体系具有重要意义。

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