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首页> 外文期刊>ACS nano >Calcium binding and ionic conduction in single conical nanopores with polyacid chains: Model and experiments
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Calcium binding and ionic conduction in single conical nanopores with polyacid chains: Model and experiments

机译:具有多元酸链的单个锥形纳米孔中钙的结合和离子传导:模型和实验

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摘要

Calcium binding to fixed charge groups confined over nanoscale regions is relevant to ion equilibrium and transport in the ionic channels of the cell membranes and artificial nanopores. We present an experimental and theoretical description of the dissociation equilibrium and transport in a single conical nanopore functionalized with pH-sensitive carboxylic acid groups and phosphonic acid chains. Different phenomena are simultaneously present in this basic problem of physical and biophysical chemistry: (i) the divalent nature of the phosphonic acid groups fixed to the pore walls and the influence of the pH and calcium on the reversible dissociation equilibrium of these groups; (ii) the asymmetry of the fixed charge density; and (iii) the effects of the applied potential difference and calcium concentration on the observed ionic currents. The significant difference between the carboxylate and phosphonate groups with respect to the calcium binding is clearly observed in the corresponding current-voltage (I-V) curves and can be rationalized by using a simple molecular model based on the grand partition function formalism of statistical thermodynamics. The I-V curves of the asymmetric nanopore can be described by the Poisson and Nernst-Planck equations. The results should be of interest for the basic understanding of divalent ion binding and transport in biological ion channels, desalination membranes, and controlled drug release devices.
机译:钙与限制在纳米级区域上的固定电荷基团的结合与离子平衡和细胞膜和人工纳米孔的离子通道中的转运有关。我们提出了一个解离平衡和运输的单个圆锥形纳米孔,具有pH敏感的羧酸基团和膦酸链的实验和理论描述。在这一物理和生物物理化学基本问题中同时存在着不同的现象:(i)固定在孔壁上的膦酸基团的二价性质以及pH和钙对这些基团可逆离解平衡的影响; (ii)固定电荷密度的不对称性; (iii)施加的电势差和钙浓度对观察到的离子电流的影响。在相应的电流-电压(I-V)曲线中可以清楚地观察到羧酸根和膦酸根之间钙结合的显着差异,并且可以使用基于统计热力学大分配函数形式的简单分子模型来合理化。非对称纳米孔的I-V曲线可以用Poisson和Nernst-Planck方程描述。该结果对于在生物离子通道,脱盐膜和可控药物释放装置中对二价离子的结合和转运的基本理解应该是有意义的。

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