Department of Chemistry, University of Washington, Seattle, Washington 98195, USA.
J Chem Phys. 2018 Nov 7;149(17):174901. doi: 10.1063/1.5045499.
We study the phase behavior of multicomponent lipid bilayer vesicles that can exhibit intriguing morphological patterns and lateral phase separation. We use a modified Landau-Ginzburg model capable of describing spatially uniform phases, microemulsions, and modulated phases on a spherical surface. We calculate its phase diagram for multiple vesicle sizes using analytical and numerical techniques as well as Monte Carlo simulations. Consistent with previous studies on planar systems, we find that thermal fluctuations move phase boundaries, stabilizing phases of higher disorder. We also show that the phase diagram is sensitive to the size of the system at small vesicle radii. Such finite size effects are likely relevant in experiments on small, unilamellar vesicles and should be considered in their comparison to theoretical and simulation results.
我们研究了多组分脂质双层囊泡的相行为,这些囊泡可以表现出有趣的形态模式和侧向相分离。我们使用了一种经过修正的朗之万-金兹堡模型,该模型能够描述空间均匀相、微乳液和在球面上的调制相。我们使用分析和数值技术以及蒙特卡罗模拟计算了多个囊泡大小的相图。与之前关于平面系统的研究一致,我们发现热波动会移动相边界,从而稳定更高无序度的相。我们还表明,在小囊泡半径下,相图对系统的大小敏感。这种有限尺寸效应在对小的单层囊泡的实验中可能是相关的,并且在将其与理论和模拟结果进行比较时应考虑到这些效应。