Transdermal delivery of elastin peptide assisted by betaine-based deep eutectic solvent to ameliorate skin photoaging

透皮 光老化 弹性蛋白 化学 深共晶溶剂 共晶体系 角质层 药理学 皮肤病科 医学 生物化学 有机化学 病理 合金
作者
De Bai,Zhenyuan Wang,Yuan Xiao,Tianqi Liu,Yan Pu,Huaiqing Sun,Mi Wang,Chaowan Guo,Jiaheng Zhang
出处
期刊:Biomaterials advances [Elsevier BV]
卷期号:163: 213965-213965 被引量:11
标识
DOI:10.1016/j.bioadv.2024.213965
摘要

The unique amino acid composition of elastin peptide (EP) makes it an excellent resource to obtain antioxidant peptides. It exhibits high elastase inhibitory activity with the potential to resist skin aging and is currently used in a many cosmetic products. However, the inherent low permeability of the skin limits its ability to penetrate the skin. To address this issue, a deep eutectic solvent (SAB) with excellent bioactivity was synthesized from betaine and succinic acid and used as a permeation enhancer to improve the absorption and utilization of EP in this paper. The results showed that low SAB concentrations significantly increased the transdermal delivery of EP. The 3D epidermal skin model (EpiKutis®) demonstrated that SAB/EP induced the synthesis of hyaluronic acid (HA) and filaggrin (FLG), accelerated skin barrier repair, and reduced water loss. Additionally, the zebrafish embryonic model showed that SAB/EP could reduce melanin secretion, decrease melanin deposition, and have an ameliorative effect on skin photoaging. Cellular experiments proved that SAB/EP can stimulate human skin fibroblasts to secrete procollagen I and elastin, improving skin elasticity and anti-wrinkle. The combination of EP and DES is a new attempt that is expected to be used as a safe and effective anti-wrinkle cosmetic material.
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