Department of Physics and Astronomy, Institute for the Physics of Living Systems, University College London, London WC1E 6BT, UK.
Soft Matter. 2021 Apr 14;17(14):3798-3806. doi: 10.1039/d0sm02012e. Epub 2021 Feb 25.
We study the effects of osmotic shocks on lipid vesicles via coarse-grained molecular dynamics simulations by explicitly considering the solute in the system. We find that depending on their nature (hypo- or hypertonic) such shocks can lead to bursting events or engulfing of external material into inner compartments, among other morphology transformations. We characterize the dynamics of these processes and observe a separation of time scales between the osmotic shock absorption and the shape relaxation. Our work consequently provides an insight into the dynamics of compartmentalization in vesicular systems as a result of osmotic shocks, which can be of interest in the context of early proto-cell development and proto-cell compartmentalisation.
我们通过粗粒化分子动力学模拟,通过显式考虑系统中的溶质,研究了渗透压冲击对脂质体的影响。我们发现,根据它们的性质(低渗或高渗),这种冲击可能导致爆裂事件或外部物质被吞噬到内部隔室中,以及其他形态转变。我们描述了这些过程的动力学,并观察到渗透压吸收和形状松弛之间的时间尺度分离。我们的工作因此提供了对渗透压冲击导致的囊泡系统分隔动力学的深入了解,这在早期原细胞发育和原细胞分隔化的背景下可能具有重要意义。