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Computer Simulations of Lipid Nanoparticles

机译:脂质纳米粒子的计算机模拟

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Lipid nanoparticles (LNP) are promising soft matter nanomaterials for drug delivery applications. In spite of their interest, little is known about the supramolecular organization of the components of these self-assembled nanoparticles. Here, we present a molecular dynamics simulation study, employing the Martini coarse-grain forcefield, of self-assembled LNPs made by tripalmitin lipid in water. We also study the adsorption of Tween 20 surfactant as a protective layer on top of the LNP. We show that, at 310 K (the temperature of interest in biological applications), the structure of the lipid nanoparticles is similar to that of a liquid droplet, in which the lipids show no nanostructuration and have high mobility. We show that, for large enough nanoparticles, the hydrophilic headgroups develop an interior surface in the NP core that stores liquid water. The surfactant is shown to organize in an inhomogeneous way at the LNP surface, with patches with high surfactant concentrations and surface patches not covered by surfactant.
机译:脂质纳米颗粒(LNP)是对药物递送应用的柔软物质纳米材料。尽管他们的兴趣,关于这些自组装纳米颗粒的组分的超分子组织知之甚少。在这里,我们提出了一种采用马提尼粗谷谷物力域的分子动力学模拟研究,其自组装的LNP由水脂质在水中制成。我们还研究了在LNP顶部的保护层的吐温20表面活性剂的吸附。我们表明,在310K(生物应用中的感兴趣的温度)下,脂质纳米颗粒的结构类似于液滴的结构,其中脂质不显示纳米结构并具有高迁移率。我们表明,对于足够大的纳米颗粒,亲水性头组在储存液态水的NP芯中开发内表面。显示表面活性剂在LNP表面以非均匀的方式组织,具有高表面活性剂浓度的贴剂和表面活性剂未覆盖的表面贴剂。

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