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Hydrodynamic trapping of molecules in lipid bilayers

机译:脂质双层中分子的流体动力学捕集

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In this work we show how hydrodynamic forces can be used to locally trap molecules in a supported lipid bilayer (SLB). The method uses the hydrodynamic drag forces arising from a flow through a conical pipette with a tip radius of 1-1.5 μm, placed approximately 1 nm above the investigated SLB. This results in a localized force-field that acts on molecules protruding from the SLB, yielding a hydrodynamic trap with a size approximately given by the size of the pipette tip. We demonstrate this concept by trapping the protein streptavidin, bound to biotin receptors in the SLB. It is also shown how static and kinetic information about the intermolecular interactions in the lipid bilayer can be obtained by relating how the magnitude of the hydrodynamic forces affects the accumulation of protein molecules in the trap.
机译:在这项工作中,我们展示了如何使用流体动力将分子局部捕获在支持的脂质双层(SLB)中。该方法使用的流体动力是由流经圆锥形移液器的流体阻力产生的,该尖端的半径为1-1.5μm,位于所研究的SLB上方约1 nm。这导致作用在从SLB突出的分子上的局部力场,产生液力阱,其尺寸大约由移液器吸头的尺寸给定。我们通过捕获与链霉菌毒素中的生物素受体结合的蛋白链霉亲和素来证明这一概念。还显示了如何通过关联流体动力的大小如何影响陷阱中蛋白质分子的积累来获得有关脂质双层中分子间相互作用的静态和动力学信息。

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