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Transungual Iontophoretic Transport of Polar Neutral and Positively Charged Model Permeants: Effects of Electrophoresis and Electroosmosis

机译:极性中性和带正电荷的模型渗透物的经耳离子电渗转运:电泳和电渗的影响。

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摘要

Transungual iontophoretic transport of model neutral permeants mannitol (MA), urea (UR), and positively charged permeant tetraethylammonium ion (TEA) across fully hydrated human nail plates at pH 7.4 were investigated in vitro. Four protocols were involved in the transport experiments with each protocol divided into stages including passive and iontophoresis transport of 0.1 and 0.3 mA. Water and permeant uptake experiments of nail clippings were also conducted to characterize the hydration and binding effects of the permeants to the nails. Iontophoresis enhanced the transport of MA and UR from anode to cathode, but this effect (electroosmosis) was marginal. The transport of TEA was significantly enhanced by anodal iontophoresis and the experimental enhancement factors were consistent with the Nernst–Planck theory predictions. Hindered transport was also observed and believed to be critical in transungual delivery. The barrier of the nail plates was stable over the time course of the study, and no significant electric field-induced alteration of the barrier was observed. The present results with hydrated nail plates are consistent with electrophoresis-dominant (the direct field effect) transungual iontophoretic transport of small ionic permeants with small contribution from electroosmosis.
机译:在体外研究了模型中性渗透剂甘露醇(MA),尿素(UR)和带正电的渗透性四乙铵离子(TEA)在pH 7.4完全水合的人指甲板上的跨离子电渗传输。转运实验涉及四种方案,每种方案分为阶段,包括0.1和0.3 mA的被动转运和离子电渗转运。还进行了指甲剪的水和渗透物吸收实验,以表征渗透物与指甲的水合作用和结合作用。离子电渗疗法增强了MA和UR从阳极到阴极的转运,但是这种作用(电渗作用)很小。阳极离子电渗疗法显着增强了TEA的转运,实验上的增强因子与Nernst–Planck理论的预测一致。还观察到运输受阻,并被认为对经手递送至关重要。钉板的屏障在研究过程中是稳定的,并且未观察到电场引起的屏障的明显改变。水合钉板的当前结果与电泳占优势(直接场效应)的小离子渗透物的经离子穿刺电迁移相符,而电渗的贡献很小。

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