Sun Lingling, Pan Fan, Li Shiben
Department of Physics, Wenzhou University, Wenzhou 325035, China.
Membranes (Basel). 2022 Jul 23;12(8):730. doi: 10.3390/membranes12080730.
The self-assembly of lipid mixtures in aqueous solution was investigated by dissipative particle dynamics simulation. Two types of lipid molecules were modelled, where three mixed structures, i.e., the membrane, perforated membrane and vesicle, were determined in the self-assembly processes. Phase behaviour was investigated by using the phase diagrams based on the tail chain lengths for the two types of lipids. Several parameters, such as chain number and average radius of gyration, were employed to explore the structural formations of the membrane and perforated membrane in the dynamic processes. Interface tension was used to demonstrate the mechanical properties of the membrane and perforated membrane in the equilibrium state and dynamics processes. Results help us to understand the self-assembly mechanism of the biomolecule mixtures, which has a potential application for designing the lipid molecule-based bio-membranes in solutions.
通过耗散粒子动力学模拟研究了脂质混合物在水溶液中的自组装过程。对两种类型的脂质分子进行了建模,在自组装过程中确定了三种混合结构,即膜、穿孔膜和囊泡。通过基于两种脂质尾链长度的相图研究了相行为。采用链数和平均回转半径等几个参数来探索动态过程中膜和穿孔膜的结构形成。界面张力用于证明膜和穿孔膜在平衡态和动力学过程中的力学性能。研究结果有助于我们理解生物分子混合物的自组装机制,这对于设计溶液中基于脂质分子的生物膜具有潜在应用价值。