School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China.
School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China.
Int J Pharm. 2023 Dec 15;648:123624. doi: 10.1016/j.ijpharm.2023.123624. Epub 2023 Nov 18.
Androgenetic alopecia (AGA) is the primary hair loss with impairing patients' quality of life. Finasteride (FIN) is an SRD5A2 inhibitor for AGA treatment, but oral FIN causes systemic adverse effects. Topical FIN delivery is anticipated to overcome this problem. Ferulic acid (FA) is a natural phenolic acid with vascular remodeling and anti-inflammatory effects. Herein, an active pharmaceutical ingredient ionic liquid (API IL) based on choline and FA (CF-IL) is for the first time constructed to load FIN for fabricating FIN CF-IL. CF-IL aims to act as carriers and cargos and enhance hair follicle (HF) co-delivery of FA and FIN for synergistic anti-alopecia. Thermal and spectroscopic analysis combined with quantum chemistry calculations and molecular dynamics confirm the formation of CF-IL. The CF-IL simultaneously increases the solubility of FA (∼648-fold) and FIN (∼686-fold), enhances the permeation and retention of FIN and FA through the follicular pathway, and promotes cellular uptake. FIN CFIL regulates the abnormal mRNA expressions in dihydrotestosterone-irritated hDPCs, and promotes hair regrowth in AGA mice in a combined manner with FIN and FA. These findings suggest that FA-based API IL is a promising approach for percutaneously co-delivering FA and FIN to HF, providing an enhanced targeting treatment for AGA.
雄激素性脱发(AGA)是导致患者生活质量受损的主要脱发类型。非那雄胺(FIN)是一种用于 AGA 治疗的 SRD5A2 抑制剂,但口服 FIN 会引起全身不良反应。局部 FIN 给药有望克服这一问题。阿魏酸(FA)是一种天然酚酸,具有血管重塑和抗炎作用。本文首次构建了基于胆碱和 FA 的活性药物成分离子液体(API IL)载 FIN 以制备 FIN CF-IL。CF-IL 旨在充当载体和 cargo,增强 FA 和 FIN 对毛囊(HF)的协同递送,以达到协同抗脱发的效果。热分析、光谱分析以及量子化学计算和分子动力学相结合,证实了 CF-IL 的形成。CF-IL 同时增加了 FA(约 648 倍)和 FIN(约 686 倍)的溶解度,增强了 FIN 和 FA 通过毛囊途径的渗透和保留,并促进了细胞摄取。FIN CFIL 调节了二氢睾酮刺激的 hDPCs 中异常的 mRNA 表达,并与 FIN 和 FA 联合促进 AGA 小鼠的毛发生长。这些发现表明,基于 FA 的 API IL 是一种有前途的方法,可用于经皮共递送 FA 和 FIN 到 HF,为 AGA 提供增强的靶向治疗。