首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Effect of gramicidin on phospholipid-modified monolayers and on ion transfer at a liquid-liquid interface
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Effect of gramicidin on phospholipid-modified monolayers and on ion transfer at a liquid-liquid interface

机译:短杆菌肽对磷脂修饰的单分子层和液-液界面离子转移的影响

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The interaction of hybrid lipid/gramicidin A (gA) monolayers with dextran sulfate (DS) and the effect of this interaction on ion transfer at a liquid-liquid interface is reported. The interfacial and physicochemical properties are studied with Langmuir-Blodgett (LB) and electrochemical techniques. The results obtained from compression isotherms demonstrate that the interactions between the different species in the hybrid monolayer vary according to the chemical nature of the lipid (hydrocarbon region and charge of the head group). Interfacial capacitance measured with AC voltammetry indicates that the DS chains form a rather flat and compact layer when adsorbed to either zwitterionic or negatively charged phospholipid monolayers, and that calcium, even at low concentrations, interacts with the monolayers. These results are successfully described by a model based on the solution of the Poisson-Boltzmann equation in the interfacial region. Ion transfer and interactions with the lipid/gA/DS-modified monolayers were also studied with electrochemical techniques. Admittance data show that although the studied ions are not using gA channels for the tranfer through the lipid membranes, the incorporation of gA in the lipid domain and the adsorption of DS at the interface have a significant effect on ion transfer across the monolayers. This effect can be explained as a consequence of the modified surface charge and of the compactness of the lipid domain due to its interaction with gA and to calcium and DS adsorption at the interface. The ion-transfer rate, therefore, depends on the composition of the monolayer and the chemical nature of the ion.
机译:报道了混合脂质/短杆菌肽A(gA)单层与硫酸葡聚糖(DS)的相互作用以及这种相互作用对液-液界面上离子转移的影响。用Langmuir-Blodgett(LB)和电化学技术研究了界面和物理化学性质。从压缩等温线获得的结果表明,杂化单层中不同物种之间的相互作用根据脂质的化学性质(烃基区域和头基的电荷)而变化。用交流伏安法测量的界面电容表明,当吸附到两性离子或带负电荷的磷脂单分子层时,DS链会形成一个相当平坦且致密的层,并且钙即使在低浓度下也会与单分子层相互作用。通过基于界面区域中Poisson-Boltzmann方程解的模型成功描述了这些结果。还使用电化学技术研究了离子转移以及与脂质/ gA / DS修饰的单层的相互作用。导纳数据显示,尽管所研究的离子未使用gA通道通过脂质膜进行转运,但gA在脂质结构域中的掺入和DS在界面上的吸附对跨单层的离子转移有重大影响。这种作用可以解释为修饰的表面电荷和脂质结构域的紧密性的结果,这是由于其与gA的相互作用以及钙和DS在界面处的吸附。因此,离子转移速率取决于单层的组成和离子的化学性质。

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