阿魏酸
化学
透皮
生物利用度
神经酰胺
抗氧化剂
药理学
氧化应激
吸收(声学)
皮肤美白
毒性
药代动力学
体内
溶解度
生物化学
尼奥体
哈卡特
脂褐素
前药
香豆酸
作者
Zhi Qin,Zhixin Wen,Hang Lu,Haoquan Yu,Yiyuan Liu,Jinwen Feng,Xiangyu Sun,Wei Lei,Ping Zhao
标识
DOI:10.1080/08982104.2025.2596935
摘要
Ferulic acid (FA) has multiple anti-aging functions but is limited by poor solubility, low bioavailability, and unclear mechanism in skincare. To overcome these challenges, we have developed ferulic acid ethosomes (FA-ES) co-modified with astragaloside IV and ceramide IIIB. Stability of FA-ES was confirmed through physicochemical characterization and molecular dynamics simulations. Comparative studies in zebrafish models showed FA-ES significantly reduced embryonic toxicity and β-galactosidase activity, improved skin hydration, repair capabilities, and antioxidant effects. In C. elegans models, FA-ES increased transdermal absorption efficiency, extended lifespan, enhanced reproductive capacity, reduced lipofuscin accumulation, and improved resistance to oxidative stress and high-temperature conditions. Overall, FA-ES addresses FA's solubility and bioavailability issues and offers superior skin anti-aging effects, making it a promising transdermal formulation platform for cosmetics.
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