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Structure and dynamics of liposomes designed for drug delivery: coarse-grained molecular dynamics simulations to reveal the role of lipopolymer incorporation

机译:设计用于药物递送的脂质体的结构和动力学:粗粒分子动力学模拟,揭示脂聚合体掺入的作用

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In this work, coarse-grained molecular dynamics simulations are carried out in NPTH and NVTE statistical ensembles in order to study the structure and dynamics properties of liposomes coated with polyethylene glycol (PEG). The considered liposomes are made by membrane bilayer DPPC with DPPC-PEG incorporated lipopolymers, in an aqueous environment. We have described the two essential PEG conformation regimes, mushroom and brush, and their properties which depend on the grafting density. The effects of grafting density on the structure and dynamics of the membrane were also studied. Our simulations were then discussed by comparing with the available experimental results and by referring to the suitable theoretical models. The results from the NPTH simulations agree with the experimental data of X-ray diffraction and with scale and mean-field theories in terms of thickness of the PEG layer and thickness of the DPPC bilayer membrane. The results from NVTE simulations are found in good agreement with the experimental results from studying the diffusion of the DPPC bilayer membrane and the PEG. The analysis of the mean square displacement revealed that the dynamics of the membranes in the plane show a subdiffusion due to the cage effect and that the grafted PEG dynamics is better described by the Rouse diffusion-mode. Thus, from a macroscopic viewpoint, the incorporation of DPPC-PEG plays an important role in the protection and lubrication of the liposome.
机译:在这项工作中,粗粒化分子动力学模拟在NPTH和NVTE统计集合中进行,以研究涂有聚乙二醇(PEG)的脂质体的结构和动力学性质。所考虑的脂质体由膜双层DPPC与DPPC-PEG掺入脂质聚合物中的脂质聚合物制成。我们已经描述了两个必需的PEG构象制度,蘑菇和刷子,以及依赖于移植密度的性质。还研究了接枝密度对膜的结构和动力学的影响。然后通过与可用的实验结果进行比较并参考合适的理论模型来讨论我们的模拟。 NPTH模拟的结果与X射线衍射的实验数据和平均域理论的厚度和平均域理论一致,并且DPPC双层膜的厚度。 NVTE模拟的结果与研究DPPC双层膜和PEG的扩散的实验结果非常一致。平均方形位移的分析表明,由于笼效应,平面中膜的动态显示了诸如围绕散射模式更好地描述了由于笼效应而导致的子边范围。因此,从宏观观点来看,DPPC-PEG的掺入在脂质体的保护和润滑中起重要作用。

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