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Dynamic studies of the interaction of a pH responsive, amphiphilic polymer with a DOPC lipid membrane

机译:PH响应性,两亲聚合物与DOPC脂膜相互作用的动态研究

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摘要

Deeper understanding of the molecular interactions between polymeric materials and the lipid membrane is important across a range of applications from permeation for drug delivery to encapsulation for immuno-evasion. Using highly fluidic microcavity supported lipid bilayers, we studied the interactions between amphiphilic polymer PP50 and a DOPC lipid bilayer. As the PP50 polymer is pH responsive the studies were carried out at pH 6.5, 7.05 and 7.5, corresponding to fully, partly protonated (pH = p$K_a$ = 7.05) and fully ionized states of the polymer, respectively. Fluorescence correlation spectroscopy (FCS) using both labelled lipid and polymer revealed the PP50 associates with the bilayer interface across all pHs where its diffusion along the interface is impeded. Both FCS and electrochemical impedance spectroscopy (EIS) data indicate that the PP50 does not penetrate fully into the bilayer core but rather forms a layer at the bilayer aqueous interface reflected in increased resistance and decreased capacitance of the bilayer on PP50 binding. The extent of these effects and the dynamics of binding are influenced by pH, increasing with decreasing pH. These experimental trends concurred with coarse grained Monte Carlo simulations of polymer-bilayer interactions wherein a model hydrophilic polymer backbone grafted with side chains of varying hydrophobicity, to mimic the effect of varying pH, was simulated based on the bond fluctuation model with explicit solvent. Simulation results showed that with increasing hydrophobicity, the polymer penetrated deeper into the contacting bilayer leaflet of the membrane suppressing, consistent with EIS data, solvent permeation and that a full insertion of the polymer into the bilayer core is not necessary for suppression of permeability.
机译:更深入地了解聚合物材料和脂质膜之间的分子相互作用在来自渗透的一系列应用中是重要的,用于药物递送以包封免疫疏散。使用高流体微胶囊支持的脂质双层,我们研究了两亲聚合物PP50和DOPC脂质双层之间的相互作用。由于PP50聚合物响应PP50,对应于pH6.5,7.05和7.5进行,对应于完全,部分质子化(pH = P $ K_A $ 705)和聚合物的完全电离状态。使用标记的脂质和聚合物的荧光相关光谱(FCS)揭示了PP50与双层界面相互关联,在其沿着界面的扩散的所有pH中均匀。 FCS和电化学阻抗光谱(EIS)数据表示PP50不会完全穿透到双层芯中,而是在双层水性界面处形成层的层,其反映在PP50结合上的增加的电阻和双层的电容降低。这些效应的程度和结合的动态受到pH的影响,随着pH值的增加而增加。这些实验趋势与粗粒细胞蒙特·克洛模拟相应的聚合物 - 双层相互作用,其中基于具有明确溶剂的粘合波动模型模拟了与不同疏水性的侧链接枝的侧链的水模型亲水性聚合物主链以模拟不同的pH的效果。仿真结果表明,随着疏水性的增加,聚合物深入渗透到膜抑制的接触双层瓣叶,与EIS数据,溶剂渗透,并且将聚合物完全插入双层芯中,不需要抑制渗透性。

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