Chen Yanying, Wang Zhenguo, Ji Yongyun, He Linli, Wang Xianghong, Li Shiben
Department of Physics, Wenzhou University, Wenzhou 325035, China.
Membranes (Basel). 2021 Aug 26;11(9):655. doi: 10.3390/membranes11090655.
We investigate the phase behavior of the asymmetric lipid membranes under shear flows, using the dissipative particle dynamics simulation. Two cases, the weak and strong shear flows, are considered for the asymmetric lipid microstructures. Three typical asymmetric structures, the membranes, tubes, and vesicle, are included in the phase diagrams, where the effect of two different types of lipid chain length on the formation of asymmetric membranes is evaluated. The dynamic processes are demonstrated for the asymmetric membranes by calculating the average radius of gyration and shape factor. The result indicates that different shear flows will affect the shape of the second type of lipid molecules; the shape of the first type of lipid molecules is more stable than that of the second type of lipid molecules. The mechanical properties are investigated for the asymmetric membranes by analyzing the interface tension. The results reveal an absolute pressure at the junctions of different types of particles under the weak shear flow; the other positions are almost in a state of no pressure; there is almost no pressure inside the asymmetric lipid membrane structure under the strong shear flow. The findings will help us to understand the potential applications of asymmetric lipid microstructures in the biological and medical fields.
我们使用耗散粒子动力学模拟研究了剪切流作用下不对称脂质膜的相行为。针对不对称脂质微结构,考虑了两种情况,即弱剪切流和强剪切流。相图中包含了三种典型的不对称结构,即膜、管和囊泡,其中评估了两种不同类型的脂质链长度对不对称膜形成的影响。通过计算平均回转半径和形状因子,展示了不对称膜的动态过程。结果表明,不同的剪切流会影响第二类脂质分子的形状;第一类脂质分子的形状比第二类脂质分子的形状更稳定。通过分析界面张力研究了不对称膜的力学性能。结果表明,在弱剪切流下不同类型粒子的交界处存在绝对压力;其他位置几乎处于无压力状态;在强剪切流下不对称脂质膜结构内部几乎没有压力。这些发现将有助于我们理解不对称脂质微结构在生物和医学领域的潜在应用。