Facilitated Transdermal Drug Delivery Using Nanocarriers-Embedded Electroconductive Hydrogel Coupled with Reverse Electrodialysis-Driven Iontophoresis

透皮 离子导入 纳米载体 材料科学 药物输送 反向电渗析 纳米技术 化学 药品 生物医学工程 药理学 电渗析 医学 生物化学 放射科
作者
Young‐Hyeon An,Joon Lee,Dong Uk Son,Dong Hyeon Kang,Mihn Jeong Park,Kyoung Won Cho,Semin Kim,Su‐Hwan Kim,Junghyeon Ko,Myoung-Hoon Jang,Jae Young Lee,Dae‐Hyeong Kim,Nathaniel S. Hwang
出处
期刊:ACS Nano [American Chemical Society]
卷期号:14 (4): 4523-4535 被引量:100
标识
DOI:10.1021/acsnano.0c00007
摘要

We herein developed an iontophoretic transdermal drug delivery system for the effective delivery of electrically mobile drug nanocarriers (DNs). Our system consists of a portable and disposable reverse electrodialysis (RED) battery that generates electric power for iontophoresis through the ionic exchange. In addition, in order to provide a drug reservoir to the RED-driven iontophoretic system, an electroconductive hydrogel composed of polypyrrole-incorporated poly(vinyl alcohol) (PYP) was used. The PYP hydrogel facilitated electron transfer from the RED battery and accelerated the mobility of electrically mobile DNs released from the PYP hydrogel. In this study, we showed that fluconazole- or rosiglitazone-loaded DNs could be functionalized with charge-inducing agents, and DNs with charge modification resulted in facilitated transdermal transport via repulsive RED-driven iontophoresis. In addition, topical application and RED-driven iontophoresis of rosiglitazone-loaded DNs resulted in an effective antiobese condition displaying decreased bodyweight, reduced glucose level, and increased conversion of white adipose tissues to brown adipose tissues in vivo. Consequently, we highlight that this transdermal drug delivery platform would be extensively utilized for delivering diverse therapeutic agents in a noninvasive way.
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