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Electric Stimulus Opens Intercellular Spaces in Skin
Authors:Susumu Hama  Yuki Kimura  Aya Mikami  Kanako Shiota  Mao Toyoda  Atsushi Tamura  Yukio Nagasaki  Kiyoshi Kanamura  Kazuaki Kajimoto  Kentaro Kogure
Affiliation:From the Department of Biophysical Chemistry, Kyoto Pharmaceutical University, Kyoto 607-8414, Japan.;the §Graduate School of Pure and Applied Sciences, University of Tsukuba, Ibaraki 305-8573, Japan.;TTI ellebeau Inc., Tokyo 140-0002, Japan, and ;the Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan
Abstract:Iontophoresis is a technology for transdermal delivery of ionic small medicines by faint electricity. Since iontophoresis can noninvasively deliver charged molecules into the skin, this technology could be a useful administration method that may enhance patient comfort. Previously, we succeeded in the transdermal penetration of positively charged liposomes (diameters: 200–400 nm) encapsulating insulin by iontophoresis (Kajimoto, K., Yamamoto, M., Watanabe, M., Kigasawa, K., Kanamura, K., Harashima, H., and Kogure, K. (2011) Int. J. Pharm. 403, 57–65). However, the mechanism by which these liposomes penetrated the skin was difficult to define based on general knowledge of principles such as electro-repulsion and electro-osmosis. In the present study, we confirmed that rigid nanoparticles could penetrate into the epidermis by iontophoresis. We further found that levels of the gap junction protein connexin 43 protein significantly decreased after faint electric stimulus (ES) treatment, although occludin, CLD-4, and ZO-1 levels were unchanged. Moreover, connexin 43 phosphorylation and filamentous actin depolymerization in vivo and in vitro were observed when permeation of charged liposomes through intercellular spaces was induced by ES. Ca2+ inflow into cells was promoted by ES with charged liposomes, while a protein kinase C inhibitor prevented ES-induced permeation of macromolecules. Consequently, we demonstrate that ES treatment with charged liposomes induced dissociation of intercellular junctions via cell signaling pathways. These findings suggest that ES could be used to regulate skin physiology.
Keywords:Actin   Calcium   Cell Junctions   Cell Signaling   Connexin   Iontophoresis   Transdermal Delivery   Electric Stimulus
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