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Non-Brownian Diffusion of Membrane Molecules in Nanopatterned Supported Lipid Bilayers

机译:纳米图案支持脂质双层中膜分子的非布朗扩散。

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摘要

Molecules associated with the outer surface of living cells exhibit complex, non-Brownian patterns of diffusion. In this report, supported lipid bilayers were patterned with nanoscale barriers to capture key aspects of this anomalous diffusion in a controllable format. First, long-range diffusion coefficients of membrane-associated molecules were significantly reduced by the presence of the barriers, while short-range diffusion was unaffected. Second, this modulation was more pronounced for large molecular complexes than for individual lipids. Surprisingly, the quantitative effect of these barriers on long-range lipid diffusion could be accurately simulated using a simple, continuum-based model of diffusion on a nanostructured surface; we thus describe a metamaterial that captures the properties of the outer membrane of living cells.
机译:与活细胞外表面相关的分子表现出复杂的非布朗扩散模式。在本报告中,用纳米级屏障对支持的脂质双层进行了图案化,以可控制的形式捕获了这种异常扩散的关键方面。首先,由于存在屏障,膜相关分子的远距离扩散系数显着降低,而近距离扩散则不受影响。第二,这种调制对于大分子复合物比对单个脂质更明显。出人意料的是,可以使用简单的,基于连续介质的纳米结构表面扩散模型,精确地模拟这些屏障对长距离脂质扩散的定量作用。因此,我们描述了一种捕获活细胞外膜特性的超材料。

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