Department of Chemical Engineering, Indian Institute of Science, Bangalore 560012, India.
J Chem Phys. 2011 Sep 14;135(10):104901. doi: 10.1063/1.3631940.
The influence of polymer grafting on the phase behavior and elastic properties of two tail lipid bilayers have been investigated using dissipative particle dynamics simulations. For the range of polymer lengths studied, the L(c) to L(α) transition temperature is not significantly affected for grafting fractions, G(f) between 0.16 and 0.25. A decrease in the transition temperature is observed at a relatively high grafting fraction, G(f) = 0.36. At low temperatures, a small increase in the area per head group, a(h), at high G(f) leads to an increase in the chain tilt, inducing order in the bilayer and the solvent. The onset of the phase transition occurs with the nucleation of small patches of thinned membrane which grow and form continuous domains as the temperature increases. This region is the co-existence region between the L(β)(thick) and the L(α)(thin) phases. The simulation results for the membrane area expansion as a function of the grafting density conform extremely well to the scalings predicted by self-consistent mean field theories. We find that the bending modulus shows a small decrease for short polymers (number of beads, N(p) = 10) and low G(f), where the influence of polymer is reduced when compared to the effect of the increased a(h). For longer polymers (N(p) > 15), the bending modulus increases monotonically with increase in grafted polymer. Using the results from mean field theory, we partition the contributions to the bending modulus from the membrane and the polymer and show that the dominant contribution to the increased bending modulus arises from the grafted polymer.
采用耗散粒子动力学模拟研究了聚合物接枝对两条疏水尾双层膜的相行为和弹性性质的影响。在所研究的聚合物长度范围内,接枝分数 G(f) 在 0.16 到 0.25 之间时,L(c) 到 L(α) 转变温度没有明显变化。在相对较高的接枝分数 G(f) = 0.36 时,观察到转变温度降低。在低温下,高 G(f) 时每个头基团的面积 a(h) 略有增加会导致链倾斜增加,从而使双层膜和溶剂有序化。相变的起始是通过薄化膜的小补丁的成核发生的,随着温度的升高,这些小补丁会生长并形成连续的域。这个区域是 L(β)(厚)和 L(α)(薄)相的共存区域。膜面积随接枝密度的扩展作为模拟结果与自洽平均场理论预测的标度非常吻合。我们发现,对于短聚合物(珠子数 N(p) = 10)和低 G(f),弯曲弹性模量略有减小,此时聚合物的影响与增加的 a(h) 的影响相比减小。对于较长的聚合物(N(p) > 15),弯曲弹性模量随着接枝聚合物的增加而单调增加。利用平均场理论的结果,我们将弯曲弹性模量的贡献从膜和聚合物中分离出来,并表明增加的弯曲弹性模量主要来自接枝聚合物。