Chaiprateep Em-On, Sengupta Soma, Keck Cornelia M
Department of Pharmaceutics and Biopharmaceutics, Philipps-Universität Marburg, Robert-Koch-Str. 4, 35037 Marburg, Germany.
Faculty of Integrative Medicine, Rajamangala University of Technology Thanyaburi (RMUTT), Thanyaburi 12130, Thailand.
Micromachines (Basel). 2025 Jan 29;16(2):155. doi: 10.3390/mi16020155.
Dermal drug delivery presents a significant challenge for poorly soluble active compounds like curcumin, which often struggle to penetrate the skin barrier effectively. In this study, the dermal penetration efficacy of curcumin nanocrystals and bulk suspensions when applied to skin using microneedles of varying lengths-0.25 mm, 0.5 mm, and 1.0 mm-was investigated in an ex vivo porcine ear model. The findings revealed that all formulations, in conjunction with microneedle application, facilitated transepidermal penetration; however, the combination of microneedles and curcumin nanocrystals demonstrated the highest efficacy. Notably, the 1.0 mm microneedle length provided optimal penetration, significantly enhancing curcumin delivery compared with bulk suspensions alone. Additionally, even the use of 0.25 mm microneedles resulted in a high level of efficiency, indicating that shorter microneedles can still effectively facilitate drug delivery. Overall, this study underscores the potential of microneedle technology in improving the transepidermal absorption of poorly soluble actives like curcumin, suggesting that the integration of nanocrystals with microneedles could enhance the therapeutic effects of topical curcumin applications.
对于姜黄素等难溶性活性化合物而言,皮肤给药是一项重大挑战,这类化合物往往难以有效穿透皮肤屏障。在本研究中,使用长度分别为0.25毫米、0.5毫米和1.0毫米的微针将姜黄素纳米晶体和粗悬液应用于皮肤后,在离体猪耳模型中研究了它们的皮肤渗透效果。研究结果显示,所有配方与微针联合应用均促进了经皮渗透;然而,微针与姜黄素纳米晶体的组合显示出最高的效果。值得注意的是,1.0毫米的微针长度提供了最佳的渗透效果,与单独使用粗悬液相比,显著提高了姜黄素的递送量。此外,即使使用0.25毫米的微针也能达到较高的效率,这表明较短的微针仍能有效地促进药物递送。总体而言,本研究强调了微针技术在改善姜黄素等难溶性活性成分经皮吸收方面的潜力,表明纳米晶体与微针的结合可以增强局部应用姜黄素的治疗效果。