UPMC Univ. Paris, CNRS UMR, ESPCI ParisTech, France.
Phys Rev Lett. 2011 Aug 5;107(6):068301. doi: 10.1103/PhysRevLett.107.068301. Epub 2011 Aug 1.
Water-in-oil emulsion drops are formed and stabilized with phospholipids which can adhere and form a bilayer. Using microfluidics, adhesive drop pairs are then trapped and submitted to an ac electric field. We observe three distinct states as a function of the adhesion energy and the electric field intensity. The pair can be either stable, though slightly deformed, or unzip and separate, or coalesce. The frontiers between the different states directly reflect vesicle detachment forces and electroporation theories. The experimental approach that we propose for probing liquid interface wetting between monolayers allows us to finely tuned the tension in the bilayer and gives access to bilayer unzipping.
水包油乳液滴是由磷脂形成和稳定的,它们可以附着并形成双层。使用微流控技术,然后捕获粘性滴对,并将其置于交流电场中。我们观察到三种不同的状态,作为粘附能和电场强度的函数。对可以是稳定的,尽管稍微变形,或者 unzip 并分离,或者聚结。不同状态之间的边界直接反映了囊泡脱附力和电穿孔理论。我们提出的用于探测单层之间液-液界面润湿的实验方法允许我们精细地调节双层中的张力,并获得双层 unzip。