Late Stages of the “Pearling" Instability in Lipid Bilayers

J. L. Coveas, S. Milner, W. Russel
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引用次数: 6

Abstract

Applying laser tweezers to cylindrical vesicles of lipid bilayers produces an instability which propagates down the vesicle leaving behind it a peristaltic state, which appears under the microscope as pearls on a string. We investigate the late stages of this “pearling” instability, where the pearls are observed to drift slowly towards the laser trap (the spot at which the tweezers are applied, into which the surfactant is drawn) where they jam up. We model the hydrodynamics of the drifting pearls as a combination of translation of the string of pearls, and “slipping” of the bilayer skin over the pearls, to relate the speed of the pearls to the underlying flux of surfactant into the trap. We find that the pearl drift is slower than the skin-slip speed by a factor of order a/R where a is the radius of the tethers connecting the pearls, and R is the pearl radius.
脂质双层“珠光”不稳定性的后期阶段
将激光镊子应用于脂质双层的圆柱形囊泡,会产生一种不稳定性,这种不稳定性会沿着囊泡向下传播,留下一种蠕动状态,在显微镜下看起来就像一串珍珠。我们研究了这种“珍珠”不稳定性的后期阶段,在那里观察到珍珠缓慢地向激光陷阱(应用镊子的地方,表面活性剂被吸入)漂移,在那里它们卡住了。我们将漂浮珍珠的流体动力学建模为珍珠串的平移和双层皮肤在珍珠上的“滑动”的组合,将珍珠的速度与表面活性剂进入陷阱的底层通量联系起来。我们发现珍珠漂移速度比皮肤滑动速度慢a/R阶,其中a是连接珍珠的系绳半径,R是珍珠半径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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