渗透
儿茶素
化学
酪氨酸酶
色谱法
药理学
体内
抗氧化剂
膜
有机化学
生物化学
医学
多酚
生物
生物技术
酶
作者
Wan-Chu Hsieh,Chih-Wun Fang,Muhammad Suhail,Quoc Lam Vu,Chih-Hung Chuang,Pao‐Chu Wu
标识
DOI:10.1016/j.ijpharm.2021.121030
摘要
The aim of the study was to prepare catechin-loaded transfersomes to enhance drug permeability through topical administration for the skin protection against ultraviolet radiation induced photo-damage. The results showed that the catechin-loaded transfersomes were monodispersed with polydispersity index (PDI) < 0.2, <200 nm in particle size and with high encapsulation efficiency (E.E.%) greater than 85%. The in vitro skin permeation test indicated that the catechin-loaded transfersomes enhanced the skin permeability by 85% compared to the catechin aqueous solution. Similarly, the in-vivo skin whitening study demonstrated that F5 transfersome formulation was effective in tyrosinase inhibition and had good biocompatibility to the guinea pig skin. Finally, the stability study showed that both physicochemical properties and E.E.% of the F5 transferosome formulation were fairly stable after 3 months storage. Therefore, topical administration of catechin-loaded transfersomes could be considered as a potential strategy for the treatment of UV-induced oxidative damage to the skin.
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