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聚合物接枝对双层凝胶向液晶相转变的影响。

Effect of polymer grafting on the bilayer gel to liquid-crystalline transition.

机构信息

Department of Chemical Engineering, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Phys Chem B. 2010 Mar 4;114(8):2738-48. doi: 10.1021/jp9100762.

Abstract

Grafted polymers on the surface of lipid membranes have potential applications in liposome-based drug delivery and supported membrane systems. The effect of polymer grafting on the phase behavior of bilayers made up of single-tail lipids is investigated using dissipative particle dynamics. The bilayer is maintained in a tensionless state using a barostat. Simulations are carried out by varying the grafting fraction, G(f), defined as the ratio of the number of polymer molecules to the number of lipid molecules, and the length of the lipid tails. At low G(f), the bilayer shows a sharp transition from the gel (L(beta)) to the liquid-crystalline (L(alpha)) phase. This main melting transition temperature is lowered as G(f) is increased, and above a critical value of G(f), the interdigitated L(betaI) phase is observed prior to the main transition. The temperature range over which the intermediate phases are observed is a function of the lipid tail length and G(f). At higher grafting fractions, the presence of the L(betaI) phase is attributed to the increase in the area per head group due to the lateral pressure exerted by the polymer brush. The areal expansion and decrease in the melting temperatures as a function of G(f) were found to follow the scalings predicted by the self-consistent mean field theories for grafted polymer membranes. Our study shows that the grafted polymer density can be used to effectively control the temperature range and occurrence of a given bilayer phase.

摘要

接枝聚合物在脂质膜表面上具有在基于脂质体的药物输送和支撑膜系统中的潜在应用。使用耗散粒子动力学研究了由单尾脂质组成的双层中聚合物接枝对双层相行为的影响。使用压力计保持双层处于无张力状态。通过改变接枝分数 G(f)(定义为聚合物分子数与脂质分子数的比值)和脂质尾长来进行模拟。在低 G(f) 下,双层表现出从凝胶(L(beta))到液晶(L(alpha))相的急剧转变。随着 G(f) 的增加,主熔融转变温度降低,并且在超过临界 G(f)值后,观察到交错的 L(betaI)相在主转变之前。观察到中间相的温度范围是脂质尾长和 G(f)的函数。在较高的接枝分数下,由于聚合物刷施加的侧向压力,由于头基基团的面积增加,存在 L(betaI)相。发现面积膨胀和熔融温度随 G(f)的变化遵循接枝聚合物膜的自洽平均场理论预测的标度。我们的研究表明,可以有效地控制给定双层相的温度范围和出现的接枝聚合物密度。

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