Jönsson Peter, Beech Jason P, Tegenfeldt Jonas O, Höök Fredrik
Division of Solid State Physics, Lund University, SE-22100 Lund, Sweden.
Langmuir. 2009 Jun 2;25(11):6279-86. doi: 10.1021/la8042268.
Shear forces from a pressure-driven bulk flow in a microfluidic channel can be used to induce and control the motion of a supported lipid bilayer (SLB) formed on the walls of the channel. We here present a theoretical model that relates the experimentally observed drift velocities of an egg yolk phosphatidylcholine (egg PC) SLB to the hydrodynamic drag force from the bulk flow, the intermonolayer friction coefficient, b, of the bilayer, and the friction coefficient, bls, between the lower leaflet of the bilayer and the supporting substrate. The drift velocity and diffusivity of the lipids in the SLB were obtained by photobleaching a delimited area of fluorescently labeled lipids and subsequently monitoring the recovery and convective motion of the bleached spot. A striking observation was that the drift velocity of the lipids was observed to be nearly 6 orders of magnitude smaller than the bulk velocity at the center of the channel. This predicts a value for bls that is at least 25 times as high as predicted by the traditional model with the SLB and the support spaced by a homogeneous 1 nm thick film of water. In addition, the intermonolayer friction coefficient was estimated to 2x10(7) Pa s/m, a value that increased after addition of glycerol to the bulk solution. This increase was accompanied by an equal decrease in the lipid diffusivity, with both observations indicating an increased viscous drag within the bilayer when glycerol was added to the bulk solution.
微流控通道中压力驱动的整体流动产生的剪切力可用于诱导和控制在通道壁上形成的支撑脂质双层(SLB)的运动。我们在此提出一个理论模型,该模型将实验观察到的蛋黄磷脂酰胆碱(egg PC)SLB的漂移速度与整体流动产生的流体动力学阻力、双层的层间摩擦系数b以及双层下叶与支撑底物之间的摩擦系数bls联系起来。通过对荧光标记脂质的限定区域进行光漂白,然后监测漂白斑点的恢复和对流运动,获得了SLB中脂质的漂移速度和扩散率。一个引人注目的观察结果是,观察到脂质的漂移速度比通道中心处的整体速度小近6个数量级。这预测的bls值至少是传统模型预测值的25倍,在传统模型中,SLB与支撑物之间由均匀的1nm厚水膜隔开。此外,层间摩擦系数估计为2×10⁷ Pa·s/m,在向整体溶液中添加甘油后该值增加。这种增加伴随着脂质扩散率的同等降低,这两个观察结果都表明当向整体溶液中添加甘油时,双层内的粘性阻力增加。