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A novel method to enhance the efficiency of drug transdermal iontophoresis delivery by using complexes of drug and ion-exchange fibers

机译:通过使用药物和离子交换纤维的复合物来提高药物透皮离子电渗传递效率的新方法

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The main reason for generally low efficiency of the transdermal iontophoretic drug delivery is that the fraction of the total current contributed by the drug ions is very small. The objective of this study was to find a method to increase the fraction of the total current contributed by the drug ions so as to enhance the drug's iontophoretic delivery. Iontophoretic transport of diclofenac solution and diclofenac assisted by ion exchange materials, including ion-exchange resin, ion-exchange membrane and ion-exchange fiber, across the rat skin were investigated. Both in vitro and in vivo iontophoretic transport experiments showed the amount of diclofenac permeated across rat skin from the diclofenac-fibers was highest among those from the diclofenac simple solutions and ion exchange materials complexes. The results of this study suggested that there is an enhancement of drug across rat skin by ion-exchange fibers in ion-exchange fibers assisted iontophoresis. The present study has demonstrated the potential of a new approach using ion-exchange fibers to enhance transdermal iontophoretic transport of an ionizable drug.
机译:透皮离子电渗疗法药物递送的效率通常较低的主要原因是药物离子贡献的总电流的比例很小。这项研究的目的是找到一种方法来增加药物离子贡献的总电流的一部分,从而增强药物的离子电渗疗法。研究了双氯芬酸溶液和双氯芬酸在离子交换材料(包括离子交换树脂,离子交换膜和离子交换纤维)的帮助下在大鼠皮肤上的电渗传输。体外和体内离子电渗转运实验均显示,在双氯芬酸简单溶液和离子交换材料复合物中,双氯芬酸纤维在大鼠皮肤中渗透的双氯芬酸的量最高。这项研究的结果表明,在离子交换纤维辅助离子电渗疗法中,离子交换纤维增强了整个大鼠皮肤的药物吸收。本研究证明了使用离子交换纤维增强可电离药物的透皮离子电渗转运的新方法的潜力。

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