Lee Joon, Kwon Kilsung, Kim Minyoung, Min Joonhong, Hwang Nathaniel S, Kim Won-Serk
a Biosensor Laboratories Incoperated, Seoul National University , Seoul , Republic of Korea.
b School of Chemical and Biological Engineering, Seoul National University , Seoul , Republic of Korea , and.
Drug Deliv. 2017 Nov;24(1):701-706. doi: 10.1080/10717544.2017.1282555.
Reverse electrodialysis (RED) technology generates energy from the salinity gradient by contacting waters with different salinity. Herein, we develop the disposable skin patch using this eco-friendly energy. The current density, which can be controlled easily without special circuit, is enough to iontophoretic drug delivery. In vitro study, this iontophoretic system enhanced the transdermal delivery of peptide, which is difficult to penetrate the skin barrier by simple diffusion. We design the disposable iontophoretic skin patch using RED system and suggest this patch can be apply on new cosmetic patch or disposable drug patch.
反向电渗析(RED)技术通过使不同盐度的水接触,利用盐度梯度产生能量。在此,我们利用这种环保能源开发了一次性皮肤贴片。其电流密度无需特殊电路即可轻松控制,足以用于离子电渗药物递送。在体外研究中,这种离子电渗系统增强了肽的透皮递送,而肽通过简单扩散难以穿透皮肤屏障。我们使用RED系统设计了一次性离子电渗皮肤贴片,并表明这种贴片可应用于新型化妆品贴片或一次性药物贴片。