Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.
Medical Information Technology Team, Convergence Center, LG Electronics, Inc., Seoul, Republic of Korea.
AAPS PharmSciTech. 2019 Jan 29;20(3):96. doi: 10.1208/s12249-019-1309-z.
Transdermal drug delivery has advantages of topical drug administration compared to the other conventional administration methods. However, the skin penetration of drugs is limited by the barrier properties of stratum corneum. The combinational strategy has been investigated to improve the skin permeability of the drug. For this study, we devised an improved device that can perform not only the single application of sonophoresis or iontophoresis but also the simultaneous application. The enhancement effect of sonophoresis was evaluated for various cosmeceutical drugs using a Franz diffusion cell. The enhancement ratio of niacinamide and retinol with sonophoresis was increased to 402% and 292%, respectively. The relationship was found between the enhancement effect of sonophoresis and the physicochemical properties of drugs. In particular, the simultaneous treatment of sonophoresis and iontophoresis enhanced skin penetration of glutamic acid to 240% using the fabricated device. The simultaneous application showed significantly higher enhancement ratio than application of sonophoresis or iontophoresis alone. Moreover, the improved device achieved skin penetration enhancement of various cosmeceutical drugs with lower intensity and a short application time. This combined strategy of transdermal physical enhancement methods is advantageous in terms of decline in energy density, thereby reducing the skin irritation. The miniaturized device with sonophoresis and iontophoresis is a promising approach due to enhanced transdermal drug delivery and feasibility of self-administration in cosmetic and therapeutic fields.
经皮给药相对于其他常规给药方法具有局部给药的优势。然而,药物的皮肤渗透受到角质层屏障特性的限制。已经研究了联合策略来提高药物的皮肤通透性。在这项研究中,我们设计了一种改进的装置,不仅可以进行单次声透或离子导入应用,还可以同时进行应用。使用 Franz 扩散池评估了各种化妆品药物的声透作用增强效果。经声透处理后,烟酰胺和视黄醇的增强比分别增加到 402%和 292%。发现声透作用的增强效果与药物的物理化学性质有关。特别是,使用所制造的装置,同时进行声透处理和离子导入处理可将谷氨酸的皮肤渗透增强到 240%。与单独应用声透处理或离子导入处理相比,同时应用显示出更高的增强比。此外,该改进的装置能够以较低的强度和较短的应用时间增强各种化妆品药物的皮肤渗透。这种经皮物理增强方法的联合策略在能量密度下降方面具有优势,从而减少皮肤刺激。具有声透和离子导入的小型化装置在美容和治疗领域具有增强经皮药物输送和自我给药的可行性,是一种很有前途的方法。