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Insulin Transport Across Porous Charged Membranes: Effect of the Electrostatic Interaction

机译:胰岛素跨多孔带电膜的运输:静电相互作用的影响。

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Insulin transport phenomena across a series of porous charged membranes were studied at two pH conditions (pH 3.3 and pH 7.4) in this article. The membranes were prepared by pore-surface modification of porous poly(acrylonitrile) (PAN) membranes by grafting with weak acidic and basic functional groups. The insulin partition coefficient K between the membrane and solution was estimated from the equilibrium adsorption amount in the batch adsorption experiment. The insulin effective diffusion coefficient D inside the membrane was determined as a fitting parameter by matching the diffusion model with the experimental data of the diffusion measurement. Both K and D correlated well with the charge properties of the insulin and membrane: when the insulin and membrane carried opposite net charge, the partition coefficient showed relatively larger values, while the effective diffusion coefficient was reduced. The insulin permeability coefficient P obtained from the experimental results agreed with that estimated from the partition coefficient and effective diffusion coefficient. These results suggested that the combined effects of the solubility and diffusivity on the permeability coefficient complicated the relationship between the permeability and the charge properties of the insulin and membrane. Additionally, our calculation supported that insulin permeability was reduced by the boundary layer between the membrane and solution.
机译:本文在两个pH条件(pH 3.3和pH 7.4)下研究了胰岛素在一系列多孔带电膜上的转运现象。该膜是通过接枝弱酸性和碱性官能团而对多孔聚丙烯腈(PAN)膜进行孔表面改性而制备的。在间歇吸附实验中,由平衡吸附量估算膜与溶液之间的胰岛素分配系数K。通过使扩散模型与扩散测量的实验数据匹配,将膜内的胰岛素有效扩散系数D确定为拟合参数。 K和D都与胰岛素和膜的电荷特性密切相关:当胰岛素和膜带有相反的净电荷时,分配系数显示相对较大的值,而有效扩散系数降低。从实验结果获得的胰岛素渗透系数P与从分配系数和有效扩散系数估算的结果相吻合。这些结果表明,溶解度和扩散率对渗透率系数的综合影响使胰岛素和膜的渗透率与电荷性质之间的关系复杂化。另外,我们的计算支持了胰岛素渗透性由于膜和溶液之间的边界层而降低。

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