연구논문

세부과제번호 2014M3A9D5A01073658 단계 2단계 2차년도
세부과제명 마우스 골격계 표현형분석을 통한 골질환 진단 및 골격계 질환 분석 공동 유/무 Y
SCI여부 Y 게재년월 2018-01
논문제목 Electrodeless Reverse Electrodialysis Patches as an Ionic Power Source for Active Transdermal Drug Delivery
총저자명 Seung‐Ryong Kwon So Hee Nam Clara Yongjoo Park Seol Baek Joomyung Jang Xiangguo Che Su Hong Kwak Yu‐Ra Choi Na‐Rae Park Je‐Yong Choi Yan Lee Taek Dong Chung
학술지명 Adv Funct Mater 게재권(호) 28(15)
저널구분 - 페이지수 -
참여연구원 - 연구책임자 최제용
과제기여도 25 PMID -
사사기관수 - IF (년도) 13.325
제1저자 Seung Ryong Kwon 교신저자 Taek Dong Chung
공동저자 Je‐Yong Choi
초록
Reverse electrodialysis (RED) is one of the promising sustainable technologies generating electric power from the mixing energy of two different salt solutions. Most of the reports on the RED systems are focused on scale‐up development and the improvement of maximum power density. However, regarding biocompatible and eco‐friendly natures, the RED system also has a great potential use where low electrical power is necessary, in particular for skin‐wearable biomedical devices. In this work, electronics‐free RED patches are devised as an ionic power source for active transdermal drug delivery. The electrodeless RED patches generate reliable voltages, which are proportional to the number of ion‐exchange membranes and salinity ratios, and successfully facilitate in vitro delivery of ionic drugs through mouse skin without involving any electronic component for the first time; 9, 20, and 36‐fold increases with lidocaine, ketorolac, and risedronate, respectively. Indeed, by using an osteoporosis‐induced mouse model, the RED patch delivery demonstrates powerful in vivo therapeutic effects against the diffusion‐based topical administration. The new ionic power source can allow transport of various types of drugs in the transdermal route and, more importantly, can be used for the operation of other portable biomedical devices.
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