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利用耗散粒子动力学研究聚合物接枝双层的熔融和弯曲模量。

Investigations on the melting and bending modulus of polymer grafted bilayers using dissipative particle dynamics.

出版信息

Biomicrofluidics. 2010 Sep 30;4(3):32203. doi: 10.1063/1.3473720.

Abstract

Understanding the influence of polymer grafted bilayers on the physicomechanical properties of lipid membranes is important while developing liposomal based drug delivery systems. The melting characteristics and bending moduli of polymer grafted bilayers are investigated using dissipative particle dynamics simulations as a function of the amount of grafted polymer and lipid tail length. Simulations are carried out using a modified Andersen barostat, whereby the membrane is maintained in a tensionless state. For lipids made up of four to six tail beads, the transition from the low temperature L(β) phase to the L(α) phase is lowered only above a grafting fraction of G(f)=0.12 for polymers made up of 20 beads. Below G(f)=0.12 small changes are observed only for the HT(4) bilayer. The bending modulus of the bilayers is obtained as a function of G(f) from a Fourier analysis of the height fluctuations. Using the theory developed by Marsh et al. [Biochim. Biophys. Acta 1615, 33 (2003)] for polymer grafted membranes, the contributions to the bending modulus due to changes arising from the grafted polymer and bilayer thinning are partitioned. The contributions to the changes in κ from bilayer thinning were found to lie within 11% for the lipids with four to six tail beads, increasing to 15% for the lipids containing nine tail beads. The changes in the area stretch modulus were also assessed and were found to have a small influence on the overall contribution from membrane thinning. The increase in the area per head group of the lipids was found to be consistent with the scalings predicted by self-consistent mean field results.

摘要

在开发基于脂质体的药物传递系统时,了解聚合物接枝双层对脂质膜的物理机械性能的影响非常重要。使用耗散粒子动力学模拟研究了聚合物接枝双层的熔融特性和弯曲弹性模量,作为接枝聚合物量和脂质尾长的函数。模拟使用改进的 Andersen 压力计进行,其中膜保持无张力状态。对于由四个到六个尾珠组成的脂质,仅在接枝分数 G(f)=0.12 以上,从低温 L(β)相到 L(α)相的转变才会降低,对于由 20 个珠子组成的聚合物,G(f)=0.12 以下只观察到 HT(4)双层的微小变化。从高度波动的傅里叶分析中获得双层的弯曲弹性模量作为 G(f)的函数。使用 Marsh 等人[Biochim. Biophys. Acta 1615, 33 (2003)]为聚合物接枝膜开发的理论,将由于接枝聚合物和双层变薄引起的弯曲弹性模量变化的贡献进行了划分。发现对于具有四个到六个尾珠的脂质,由于双层变薄引起的 κ 变化的贡献在 11%以内,对于含有九个尾珠的脂质,增加到 15%。还评估了面积拉伸模量的变化,发现它们对膜变薄的总贡献的影响很小。发现脂质的每个头基团的面积增加与自洽平均场结果预测的标度一致。

相似文献

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Elastic constants of polymer-grafted lipid membranes.聚合物接枝脂质膜的弹性常数
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