Development of curcumin-loaded composite phospholipid ethosomes for enhanced skin permeability and vesicle stability

姜黄素 透皮 磷脂 化学 磷脂酰胆碱 脂质体 哈卡特 角质层 小泡 生物利用度 药理学 差示扫描量热法 生物物理学 色谱法 生物化学 医学 物理 病理 热力学 生物 体外
作者
Yu Li,Fei Xu,Xiang Li,Siying Chen,Lin-Yu Huang,Yaoyao Bian,Jia Wang,Ye-Ting Shu,Guojun Yan,Jie Dong,Shaoping Yin,Wei Gu,Jun Chen
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:592: 119936-119936 被引量:53
标识
DOI:10.1016/j.ijpharm.2020.119936
摘要

Ethosomes are widely applied as the carriers for the transdermal delivery of hydrophobic and hydrophilic drugs. Herein, curcumin-loaded ethosomes (CE) with different phospholipid composition were formulated and thoroughly compared. A significant interaction between the unsaturated phosphatidylcholine (PC) and saturated hydrogenated phosphatidylcholine (HPC) was found by molecular simulation and differential scanning calorimetry (DSC), which led to the reduction of PC peroxidation with the presence of HPC. Subsequently, the composite phospholipid ethosomes containing curcumin were prepared for the first time to evaluate their properties in comparison with the conventional ethosomes composed of PC (CE-P) or HPC (CE-H). CE with PC/HPC ratio of 1:1 (CE-P1H1) with the best vesicle stability and flexibility significantly decreased the uptake by HaCaT cells compared to CE-H and free curcumin, indicating reduced skin cell toxicity. Compared with free curcumin, CE-P1H1 had the highest transdermal efficiency (p < 0.001), followed by CE-P (p < 0.05), partly due to the fact that CE-P1H1 could disturb lipid domain of stratum corneum (SC). Moreover, CE-P1H1 was found to promote curcumin for deep penetration of the skin via the hair follicles route. Our study has shown that using composite phospholipid ethosomes as lipid vesicular carriers could enhance transdermal penetration of drugs and increase in the vesicle stability.

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