Kranenburg Marieke, Venturoli Maddalena, Smit Berend
Department of Chemical Engineering, University of Amsterdam, The Netherlands.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Jun;67(6 Pt 1):060901. doi: 10.1103/PhysRevE.67.060901. Epub 2003 Jun 18.
Dissipative particle dynamics simulations are used to study the self-assembly of lipids into bilayers. With a simple mesoscopic lipid-water model, we observe the formation of the liquid crystalline phase L(alpha) and gel phases in which the tails are interdigitated L(betaI) or noninterdigitated L(beta). For double-tail lipids experiments show all three phases, while for single-tail lipids only L(beta) and L(alpha) are observed. We show that at sufficiently high head-head repulsion the L(betaI) is stable for single-tail lipids. This suggests that it might be possible to induce an L(beta)-->L(betaI) transition by adding chaotropic salts.
耗散粒子动力学模拟用于研究脂质自组装成双层膜的过程。通过一个简单的介观脂质 - 水模型,我们观察到液晶相L(α)以及尾部相互交错的凝胶相L(βI)或非交错的凝胶相L(β)的形成。对于双尾脂质,实验显示出所有这三个相,而对于单尾脂质,仅观察到L(β)和L(α)相。我们表明,在足够高的头部 - 头部排斥力下,L(βI)相对于单尾脂质是稳定的。这表明通过添加离液盐诱导L(β)→L(βI)转变可能是可行的。