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Direct Observation of Transitions between Surface-Dominated and Bulk Diffusion Regimes in Nanochannels

机译:直接观察纳米通道中表面主导型和体扩散型之间的过渡。

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The diffusion of charged proteins in liquid-filled nanometer-sized apertures with charged surfaces has been investigated with fluorescence correlation spectroscopy (FCS). Based on a two-dimensional (2D) multicomponent diffusion model, key parameters such as the number of molecules diffusing freely inside the nanochannel or interacting with the surfaces, together with the specific diffusion parameters, could be extracted. Different regimes of diffusion have been observed and described by a model, which takes into account the steric exclusion, the reversible surface adsorption of the biomolecules, and the exclusion-enrichment effect that is due to the charge of the proteins and the ionic strength of the solution, Conditions where the diffusion of proteins through nanoconfined spaces can be of the same magnitude as in the bulk were both predicted and experimentally verified.
机译:已经用荧光相关光谱法(FCS)研究了带电蛋白质在带电荷表面的充满液体的纳米孔中的扩散。基于二维(2D)多组分扩散模型,可以提取关键参数,例如在纳米通道内自由扩散或与表面相互作用的分子数,以及特定的扩散参数。已经通过模型观察到并描述了不同的扩散方式,该模型考虑了空间排斥,生物分子的可逆表面吸附以及由于蛋白质的电荷和蛋白质的离子强度而导致的排斥富集效应。可以预测和实验验证蛋白质通过纳米密闭空间扩散的程度与散装相同的条件。

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