Department of Chemical and Materials Engineering, National Central University, Jhongli, Taiwan 320, Republic of China.
Department of Chemical Engineering, National Taiwan University, Taipei, Taiwan 106, Republic of China.
Phys Rev E. 2019 Jan;99(1-1):012403. doi: 10.1103/PhysRevE.99.012403.
Hybrid lipid-polymer vesicles can integrate benefits of liposomes and polymersomes. In this work, the phase behavior of hybrid membranes containing lipids and diblock copolymers is explored by dissipative particle dynamics simulations. The influences of lipid unsaturation and thickness mismatch between lipids and polymers are considered. The transition from the mixing state (homogeneous distribution) to the demixing state (formation of bilayered lipid-rich domains) is always observed as the lipid concentration (φ_{l}) exceeds a critical value, which increases with the degree of unsaturation. It is found that phase separation is driven by weak energy incompatibility between the hydrophobic segments of lipids and polymers. When the effect of thickness mismatch becomes significant, the occurrence of the demixing state is retarded, and monolayer lipid rafts emerge before phase separation. Lipid fluidity associated with the physical state of a hybrid membrane can be characterized by lateral lipid diffusivity (D_{l}). In the polymer-rich membrane, D_{l} is higher in the mixing state, but decreases generally with φ_{l} due to lipid-lipid interactions and interdigitation.
混合脂质-聚合物囊泡可以结合脂质体和聚合物囊泡的优点。在这项工作中,通过耗散粒子动力学模拟研究了含有脂质和两亲性嵌段共聚物的混合膜的相行为。考虑了脂质不饱和度和脂质与聚合物之间厚度不匹配的影响。随着脂质浓度(φ_{l})超过临界值,从混合状态(均匀分布)到相分离状态(双层富含脂质的区域形成)的转变总是会发生,该临界值随着不饱和度的增加而增加。研究发现,相分离是由脂质和聚合物的疏水性片段之间的弱能量不兼容性驱动的。当厚度不匹配的影响变得显著时,相分离状态的发生会被延迟,并且在相分离之前会出现单层脂质筏。与混合膜物理状态相关的脂质流动性可以通过侧向脂质扩散率(D_{l})来表征。在聚合物富集的膜中,D_{l}在混合状态下较高,但由于脂质-脂质相互作用和互贯,它通常随 φ_{l}的增加而降低。