Center for Integrated Nanotechnologies, Sandia National Laboratories, Albuquerque, New Mexico 87185, United States.
Langmuir. 2011 May 3;27(9):5481-91. doi: 10.1021/la2001305. Epub 2011 Apr 4.
Supported lipid bilayers containing phosphatidylcholine headgroups are observed to undergo reorganization from a 2D fluid, lipid bilayer assembly into an array of complex 3D structures upon exposure to extreme pH environments. These conditions induce a combination of molecular packing and electrostatic interactions that can create dynamic morphologies of highly curved lipid membrane structures. This work demonstrates that fluid, single-component lipid bilayer assemblies can create complex morphologies, a phenomenon typically only associated with lipid bilayers of mixed composition.
当暴露于极端 pH 环境时,含有膦脂酰胆碱头基的支撑脂质双层会经历从二维流体、脂质双层组装到复杂的三维结构阵列的重组。这些条件诱导分子堆积和静电相互作用的组合,从而可以创建高度弯曲的脂质膜结构的动态形态。这项工作表明,流体、单一成分的脂质双层组件可以创建复杂的形态,这种现象通常仅与混合组成的脂质双层相关联。