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Self-assembly and bilayer-micelle transition of fatty acids studied by replica-exchange constant pH molecular dynamics

机译:通过复制-交换恒定pH分子动力学研究脂肪酸的自组装和双层胶束转变

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摘要

Recent interest in the development of surfactant-based nano delivery systems targeting tumor sites has sparked our curiosity to understand the detailed mechanism of the self-assembly and phase transitions of pH-sensitive surfactants. Towards this goal we applied a state-of-the-art simulation technique, continuous constant pH molecular dynamics (CpHMD) with the hybrid-solvent scheme and pH-based replica-exchange protocol, to study de novo self-assembly of 30 and 40 lauric acids, a simple model titratable surfactant. We observed the formation of a gel-state bilayer at low and intermediate pH and a spherical micelle at high pH, with the phase transition starting at 20–30% ionization and completing at 50%. The degree of cooperativity for the transition increases from the 30-mer to the 40-mer. The calculated apparent or bulk pKa value is 7.0 for the 30-mer and 7.5 for the 40-mer. Congruent with experiment, these data demonstrate that CpHMD is capable of accurately modeling large conformational transitions of surfactant systems while allowing simultaneous proton titration of constituent molecules. We suggest that CpHMD simulations may become a useful tool to aid in the design and development of pH-sensitive nanocarriers for a variety of biomedical and technological applications.
机译:对靶向肿瘤部位的基于表面活性剂的纳米递送系统的开发的最新兴趣激发了我们的好奇心,以了解pH敏感表面活性剂的自组装和相变的详细机制。为了实现这一目标,我们应用了最先进的模拟技术,具有混合溶剂方案和基于pH值的复制交换协议的连续恒定pH分子动力学(CpHMD),来研究30和40的从头自组装月桂酸,一种简单的可滴定表面活性剂模型。我们观察到在中低pH值下形成了凝胶态双层,在高pH值下形成了球形胶束,相变始于20%至30%的电离,完成于50%的电离。过渡的合作程度从30-mer升高到40-mer。计算的表观或本体pKa值对于30聚体是7.0,对于40聚体是7.5。与实验一致,这些数据表明CpHMD能够准确地模拟表面活性剂系统的大构象转变,同时允许组成分子的质子滴定。我们建议CpHMD模拟可能成为帮助设计和开发各种生物医学和技术应用中的pH敏感纳米载体的有用工具。

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