Suzuki Takamasa, Aoki Tomohiro, Saito Masato, Hijikuro Ichiro, Itakura Shoko, Todo Hiroaki, Sugibayashi Kenji
Graduate School of Pharmaceutical Sciences, Josai University, 1-1 Keyakidai, Sakado, Saitama, 350-0295, Japan.
Faculty of Pharmacy and Pharmaceutical Sciences, Josai University, 1-1 Keyakidai, Sakado, Saitama, 350-0295, Japan.
Pharm Res. 2021 Feb;38(2):289-299. doi: 10.1007/s11095-021-02996-z. Epub 2021 Jan 29.
Penetration enhancers are necessary to overcome a formidable barrier function of the stratum corneum in the development of topical formulations. Recently, non-lamella liquid crystal (NLLC)-forming lipids such as glycerol monooleate and phytantriol (PHY) are gaining increasing attention as a novel skin permeation enhancer. In the present study, fluorescein sodium (FL-Na) was used as a model hydrophilic drug, and acryl-base pressure-sensitive adhesive (PSA) tape containing NLLC forming lipids, mono-O-(5,9,13-trimethyl-4-tetradecenyl) glycerol ester (MGE) or PHY, was prepared to enhance drug permeation through the skin.
A PSA patch containing FL-Na was prepared by mixing FL-Na entrapped in NLLC and acrylic polymer. FL permeation through excised hairless rat skin, and also human skin, was investigated. Changes in lipid structure, folding/unfolding state of keratin in the stratum corneum, and penetration of MGE into the stratum corneum were investigated using confocal Raman microscopy.
Enhanced FL permeation was observed by the application of a PSA patch containing MGE and PHY. Especially, dramatically enhancement effect was confirmed by 15% of MGE contained formulation. Penetration of MGE provided diminished orthorhombic crystal structure and a peak shift of the aliphatic CH vibration of keratin chains toward lower wavenumbers.
The present results suggested that the formulation development by adding MGE may be useful for improving the skin permeation of mal-permeable drugs such as hydrophilic drugs.
在局部用制剂的研发中,渗透促进剂对于克服角质层强大的屏障功能是必不可少的。近来,形成非层状液晶(NLLC)的脂质,如单油酸甘油酯和植烷三醇(PHY),作为一种新型的皮肤渗透促进剂正受到越来越多的关注。在本研究中,荧光素钠(FL-Na)被用作模型亲水性药物,并制备了含有形成NLLC的脂质、单-O-(5,9,13-三甲基-4-十四碳烯基)甘油酯(MGE)或PHY的丙烯酸类压敏胶(PSA)胶带,以增强药物经皮肤的渗透。
通过将包封于NLLC中的FL-Na与丙烯酸聚合物混合,制备了含FL-Na的PSA贴剂。研究了FL透过切除毛发的大鼠皮肤以及人体皮肤的情况。使用共聚焦拉曼显微镜研究了角质层脂质结构的变化、角蛋白的折叠/展开状态以及MGE渗透进入角质层的情况。
通过应用含有MGE和PHY的PSA贴剂,观察到FL的渗透增强。特别是,含15% MGE的制剂证实了显著增强效果。MGE的渗透导致正交晶体结构减少,以及角蛋白链脂肪族CH振动的峰向较低波数移动。
目前的结果表明,添加MGE进行制剂研发可能有助于改善亲水性药物等渗透性差的药物的皮肤渗透。