Schrader Alex M, Cheng Chi-Yuan, Israelachvili Jacob N, Han Songi
Department of Chemical Engineering, University of California, Santa Barbara, California 93106, USA.
Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106, USA.
J Chem Phys. 2016 Jul 28;145(4):041101. doi: 10.1063/1.4959904.
Glycerol and dimethyl sulfoxide (DMSO) are commonly used cryoprotectants in cellular systems, but due to the challenges of measuring the properties of surface-bound solvent, fundamental questions remain regarding the concentration, interactions, and conformation of these solutes at lipid membrane surfaces. We measured the surface water diffusivity at gel-phase dipalmitoylphosphatidylcholine (DPPC) bilayer surfaces in aqueous solutions containing ≤7.5 mol. % of DMSO or glycerol using Overhauser dynamic nuclear polarization. We found that glycerol similarly affects the diffusivity of water near the bilayer surface and that in the bulk solution (within 20%), while DMSO substantially increases the diffusivity of surface water relative to bulk water. We compare these measurements of water dynamics with those of equilibrium forces between DPPC bilayers in the same solvent mixtures. DMSO greatly decreases the range and magnitude of the repulsive forces between the bilayers, whereas glycerol increases it. We propose that the differences in hydrogen bonding capability of the two solutes leads DMSO to dehydrate the lipid head groups, while glycerol affects surface hydration only as much as it affects the bulk water properties. The results suggest that the mechanism of the two most common cryoprotectants must be fundamentally different: in the case of DMSO by decoupling the solvent from the lipid surface, and in the case of glycerol by altering the hydrogen bond structure and intermolecular cohesion of the global solvent, as manifested by increased solvent viscosity.
甘油和二甲基亚砜(DMSO)是细胞系统中常用的冷冻保护剂,但由于测量表面结合溶剂性质存在挑战,关于这些溶质在脂质膜表面的浓度、相互作用和构象等基本问题仍未解决。我们使用奥弗豪泽动态核极化技术测量了含有≤7.5摩尔% DMSO或甘油的水溶液中凝胶相二棕榈酰磷脂酰胆碱(DPPC)双层表面的表面水扩散率。我们发现甘油对双层表面附近水的扩散率影响类似,在本体溶液中(20%以内)也是如此,而DMSO相对于本体水显著增加了表面水的扩散率。我们将这些水动力学测量结果与相同溶剂混合物中DPPC双层之间的平衡力测量结果进行了比较。DMSO大大降低了双层之间排斥力的范围和大小,而甘油则增加了排斥力。我们认为两种溶质氢键能力的差异导致DMSO使脂质头部基团脱水,而甘油对表面水合作用的影响仅与其对本体水性质的影响程度相同。结果表明,两种最常见冷冻保护剂的作用机制必然存在根本差异:对于DMSO,是通过使溶剂与脂质表面解耦;对于甘油,则是通过改变整体溶剂的氢键结构和分子间内聚力,这表现为溶剂粘度增加。