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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Preferential interaction of dimethyl sulfoxide and phosphatidyl choline membranes
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Preferential interaction of dimethyl sulfoxide and phosphatidyl choline membranes

机译:二甲基亚砜与磷脂酰胆碱膜的优先相互作用

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摘要

The interaction free energy of dimethyl sulfoxide (DMSO) and two types phospholipid membranes has been assessed from measurements of vapor pressure. The lipids were phosphatidyl cholines with respectively (14:0/14:0) (DMPC) and (16:0/18:1) (POPC) fatty acid chains. The results were expressed in terms of the iso-osmolal preferential interaction parameter, Gamma(mu1), which remained negative under all experimental conditions investigated here. This shows that water-membrane interactions are more favorable than DMSO-membrane interactions. This condition is known as preferential exclusion of DMSO (or preferential hydration of the membrane), and implies that the local (interfacial) concentration of the solute is reduced compared to the bulk. At room temperature and 1 m DMSO, Gamma(mu1) was -0.3 to -0.4 for both lipids. This corresponds to a sizable reduction in the DMSO concentration in a zone including at least the first two hydration layers of the membrane. Possible origins of the preferential exclusion are discussed.As a direct consequence of the pronounced preferential exclusion, DMSO generates an osmotic stress at the membrane interface. This tends to stabilize lipid phases of low surface areas and to withdraw water from multilamellar stacks of membranes. Based on this, we suggest that the preferential exclusion of DMSO explains both the modulation of phase behavior and the constriction of multilamellar aggregates induced by this solute. (C) 2004 Elsevier B.V. All rights reserved.
机译:二甲基亚砜(DMSO)和两种类型的磷脂膜的相互作用自由能已通过蒸气压的测量进行了评估。脂质是分别具有(14:0/14:0)(DMPC)和(16:0/18:1)(POPC)脂肪酸链的磷脂酰胆碱。结果以等渗摩尔优先相互作用参数Gamma(mu1)表示,该参数在此处研究的所有实验条件下均保持负值。这表明水-膜相互作用比DMSO-膜相互作用更有利。这种情况称为DMSO的优先排除(或膜的优先水合作用),这意味着与本体相比,溶质的局部(界面)浓度降低了。在室温和1 m DMSO下,两种脂质的Gamma(mu1)为-0.3至-0.4。这对应于至少包括膜的前两个水合层的区域中DMSO浓度的相当大的降低。讨论了优先排除的可能来源。作为明显优先排除的直接结果,DMSO在膜界面处产生渗透压。这趋于稳定低表面积的脂质相并从多层膜堆叠中抽水。基于此,我们建议优先排除DMSO既可以解释相行为的调节,也可以解释该溶质引起的多层聚集体的收缩。 (C)2004 Elsevier B.V.保留所有权利。

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