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两性离子和带电脂质在水相纳米尺度油滴上形成显著不同的结构。

Zwitterionic and Charged Lipids Form Remarkably Different Structures on Nanoscale Oil Droplets in Aqueous Solution.

机构信息

Laboratory for fundamental BioPhotonics (LBP), Institute of Bioengineering (IBI), and Institute of Materials Science (IMX), School of Engineering (STI), and Lausanne Centre for Ultrafast Science (LACUS), École Polytechnique Fédérale de Lausanne (EPFL) , CH-1015 Lausanne, Switzerland.

出版信息

Langmuir. 2018 Jan 23;34(3):1042-1050. doi: 10.1021/acs.langmuir.7b02896. Epub 2017 Oct 26.

Abstract

The molecular structure of zwitterionic and charged monolayers on small oil droplets in aqueous solutions is determined using a combined second harmonic and sum frequency study. From the interfacial vibrational signature of the acyl chains and phosphate headgroups as well as the response of the hydrating water, we find that zwitterionic and charged lipids with identical acyl chains form remarkably different monolayers. Zwitterionic phospholipids form a closely packed monolayer with highly ordered acyl tails. In contrast, the charged phospholipids form a monolayer with a low number density and disordered acyl tails. The charged headgroups are oriented perpendicular to the monolayer rather than parallel, as is the case for zwitterionic lipids. These significant differences between the two types of phospholipids indicate important roles of phospholipid headgroups in the determination of properties of cellular membranes and lipid droplets. The observed behavior of charged phospholipids is different from expectations based on studies performed on extended planar interfaces, at which condensed monolayers are readily formed. The difference can be explained by nanoscale related changes in charge condensation behavior that has its origin in a different balance of interfacial intermolecular interactions.

摘要

使用二次谐波和和频研究的组合,确定了水溶液中小油滴中两性离子和带电单层的分子结构。从酰基链和磷酸盐头部的界面振动特征以及水合水的响应中,我们发现具有相同酰基链的两性离子和带电脂质形成非常不同的单层。两性离子磷脂形成具有高度有序酰基尾部的紧密堆积单层。相比之下,带电荷的磷脂形成具有低数密度和无序酰基尾部的单层。带电荷的头部基团垂直于单层定向,而不是像两性离子脂质那样平行。这两种磷脂之间的显著差异表明磷脂头部基团在确定细胞膜和脂质体的性质方面起着重要作用。观察到的带电荷磷脂的行为与基于在扩展的平面界面上进行的研究的预期不同,在该界面上容易形成凝聚的单层。这种差异可以通过源于界面分子间相互作用的不同平衡的纳米相关的电荷凝聚行为的变化来解释。

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