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泊洛沙姆分子及溶解于水和靠近脂质双层的泊洛沙姆胶束的性质:计算机模拟结果

Properties of Poloxamer Molecules and Poloxamer Micelles Dissolved in Water and Next to Lipid Bilayers: Results from Computer Simulations.

作者信息

Adhikari Upendra, Goliaei Ardeshir, Tsereteli Levan, Berkowitz Max L

机构信息

Department of Chemistry, University of North Carolina at Chapel Hill , Chapel Hill, North Carolina 27599, United States.

Department of Biochemistry and Biophysics and Program in Molecular and Cellular Biophysics, University of North Carolina at Chapel Hill , Chapel Hill, North Carolina 27599, United States.

出版信息

J Phys Chem B. 2016 Jul 7;120(26):5823-30. doi: 10.1021/acs.jpcb.5b11448. Epub 2016 Jan 14.

Abstract

To study the properties of poloxamer molecules P85 and P188 and micelles containing these poloxamers in bulk water and also next to lipid bilayers, we performed coarse-grained molecular dynamics computer simulations. We used MARTINI force-field and adjusted Lennard-Jones nonbonded interaction strength parameters for poloxamer beads to take into account the presence of polarizable water. Simulations of systems containing poloxamer molecules or micelles solvated in bulk water showed that structural properties, such as radii of gyration of the molecules and micelles, agree with the ones inferred from experiments. We observed that P85 micelle is almost spherical in shape, whereas the P188 micelle is distorted from being spherical. Simulations containing systems with the water-lipid bilayer interface showed that hydrophilic blocks of poloxamers interact with lipid headgroups of the bilayer and remain at the interface, whereas hydrophobic blocks prefer to insert into the central hydrophobic region of the bilayer. Simulations containing poloxamer micelles next to lipid bilayer showed no permeation of these micelles into the bilayer. To study the "healing" properties of P188 poloxamer, we performed simulations on a system containing a P188 micelle next to "damaged" lipid bilayer containing a pore. We observed that hydrophobic chains of poloxamers got inserted into the bilayer through the pore region, ultimately closing the pore.

摘要

为了研究泊洛沙姆分子P85和P188以及含有这些泊洛沙姆的胶束在大量水中以及脂质双层附近的性质,我们进行了粗粒度分子动力学计算机模拟。我们使用了MARTINI力场,并调整了泊洛沙姆珠子的 Lennard-Jones 非键相互作用强度参数,以考虑可极化水的存在。对在大量水中溶剂化的含有泊洛沙姆分子或胶束的系统进行的模拟表明,分子和胶束的结构性质,如回转半径,与从实验推断的结果一致。我们观察到P85胶束几乎呈球形,而P188胶束则偏离球形。含有水-脂质双层界面系统的模拟表明,泊洛沙姆的亲水嵌段与双层的脂质头部基团相互作用并保留在界面处,而疏水嵌段则倾向于插入双层的中央疏水区域。含有脂质双层附近泊洛沙姆胶束的模拟表明,这些胶束不会渗透到双层中。为了研究P188泊洛沙姆的“修复”性质,我们对一个系统进行了模拟,该系统包含一个P188胶束,旁边是一个含有孔的“受损”脂质双层。我们观察到泊洛沙姆的疏水链通过孔区域插入双层中,最终关闭了孔。

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