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基于两性霉素B的通道用于正向渗透的水传输和离子扩散研究:一项模拟研究

Water Transport and Ion Diffusion Investigation of an Amphotericin B-Based Channel Applied to Forward Osmosis: A Simulation Study.

作者信息

Wu Hao-Chen, Yoshioka Tomohisa, Nakagawa Keizo, Shintani Takuji, Matsuyama Hideto

机构信息

Research Center for Membrane and Film Technology, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.

Department of Chemical Science and Engineering, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.

出版信息

Membranes (Basel). 2021 Aug 24;11(9):646. doi: 10.3390/membranes11090646.

Abstract

The use of an Amphotericin B_Ergosterol (AmBEr) channel as an artificial water channel in forward osmosis filtration (FO) was studied via molecular dynamics (MD) simulation. Three channel models were constructed: a common AmBEr channel and two modified C3deOAmB_Ergosterol (C3deOAmBEr) channels with different diameters (12 Å and 18 Å). During FO filtration simulation, the osmotic pressure of salt-water was a driving force for water permeation. We examined the effect of the modified C3deOAmBEr channel on the water transport performance. By tracing the change of the number of water molecules along with simulation time in the saltwater region, the water permeability of the channel models could be calculated. A higher water permeability was observed for a modified C3deOAmBEr channel, and there was no ion permeation during the entire simulation period. The hydrated ions and water molecules were placed into the channel to explore the ion leakage behavior of the channels. The mean squared displacement (MSD) of ions and water molecules was obtained to study the ion leakage performance. The Amphotericin B-based channels showed excellent selectivity of water molecules against ions. The results obtained on an atomistic scale could assist in determining the properties and the optimal filtration applications for Amphotericin B-based channels.

摘要

通过分子动力学(MD)模拟研究了两性霉素B-麦角固醇(AmBEr)通道作为正向渗透过滤(FO)中的人工水通道的应用。构建了三种通道模型:一个普通的AmBEr通道和两个不同直径(12 Å和18 Å)的修饰的C3deOAmB_麦角固醇(C3deOAmBEr)通道。在FO过滤模拟过程中,盐水的渗透压是水渗透的驱动力。我们研究了修饰的C3deOAmBEr通道对水传输性能的影响。通过追踪盐水区域中水分子数量随模拟时间的变化,可以计算通道模型的水渗透率。对于修饰的C3deOAmBEr通道,观察到较高的水渗透率,并且在整个模拟期间没有离子渗透。将水合离子和水分子放入通道中以探索通道的离子泄漏行为。获得离子和水分子的平均平方位移(MSD)以研究离子泄漏性能。基于两性霉素B的通道对水分子显示出优异的离子选择性。在原子尺度上获得的结果有助于确定基于两性霉素B的通道的性质和最佳过滤应用。

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