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The Effects of Alkyl Chain Combinations on the Structural and Mechanical Properties of Biomimetic Ion Pair Amphiphile Bilayers

机译:烷基链组合对仿生离子对两亲双层结构和力学性能的影响

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摘要

Ion pair amphiphile (IPA), a lipid-like complex composed of a pair of cationic and anionic surfactants, has great potentials in various pharmaceutical applications. In this work, we utilized molecular dynamics (MD) simulation to systematically examine the structural and mechanical properties of the biomimetic bilayers consist of alkyltrimethyl-ammonium-alkylsulfate (CmTMA+-CnS) IPAs with various alkyl chain combinations. Our simulations show an intrinsic one-atom offset for the CmTMA+ and CnS alignment, leading to the asymmetric index definition of ΔC = m − (n + 1). Larger |ΔC| gives rise to higher conformational fluctuations of the alkyl chains with the reduced packing order and mechanical strength. In contrast, increasing the IPA chain length enhances the van der Waals interactions within the bilayer and thus improves the bilayer packing order and mechanical properties. Further elongating the CmTMA+-CnS alkyl chains to m and n ≥ 12 causes the liquid disorder to gel phase transition of the bilayer at 298 K, with the threshold membrane properties of 0.45 nm2 molecular area, deuterium order parameter value of 0.31, and effective bending rigidity of 20 kBT, etc. The combined results provide molecular insights into the design of biomimetic IPA bilayers with wide structural and mechanical characteristics for various applications.
机译:离子对两亲物(IPA)是由一对阳离子和阴离子表面活性剂组成的类脂质复合物,在各种药物应用中具有巨大潜力。在这项工作中,我们利用分子动力学(MD)模拟系统地研究了由烷基三甲基铵-烷基硫酸盐(CmTMA + -CnS -)具有各种烷基链组合的IPA。我们的模拟显示CmTMA + 和CnS -排列的固有单原子偏移,导致ΔC= m −(n +1)的不对称折射率定义。 |ΔC|更大会导致堆积顺序和机械强度降低的烷基链更高的构象变化。相反,增加IPA链长度可增强双层内的范德华相互作用,从而改善双层堆积顺序和机械性能。将CmTMA + -CnS -烷基链进一步延长至m和n≥12会导致液体紊乱,使双层在298 K时发生凝胶相转变,并具有临界膜性能0.45 nm 2 分子面积,氘阶参数值0.31和有效弯曲刚度20 kBT等。组合结果为分子生物学的研究提供了广泛的结构和机械特性的仿生IPA双层设计适用于各种应用。

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