Enhanced skin retention and permeation of a novel peptide via structural modification, chemical enhancement, and microneedles

渗透 酪氨酸酶 油酸 化学 亲脂性 色素沉着 痤疮 人体皮肤 渗透(战争) 色谱法 有机化学 生物化学 皮肤病科 运筹学 生物 工程类 遗传学 医学
作者
Jungen Chen,Junxing Bian,Basil M. Hantash,Lamyaa Albakr,David E. Hibbs,Xiaoqiang Xiang,Peng Xie,Chunyong Wu,Lifeng Kang
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:606: 120868-120868 被引量:30
标识
DOI:10.1016/j.ijpharm.2021.120868
摘要

Hyperpigmentation is a common skin condition with serious psychosocial consequences. Decapeptide-12, a novel peptide, has been found to be safer than hydroquinone in reducing melanin content, with efficacy up to more than 50% upon 16 weeks of twice-daily treatment. However, the peptide suffers from limited transcutaneous penetration due to its hydrophilicity and high molecular weight. Therefore, decapeptide-12 was modified by adding a palmitate chain in an attempt to overcome this limitation. Molecular docking results showed that the two peptides exhibited similar biological activity towards tyrosinase. We also tested the effect of chemical penetration enhancers and microneedles to deliver the two peptides into and through skin, using an in vitro human skin permeation method. It was shown that the palm-peptide achieved the best skin retention owing to the increased lipophilicity. In addition, skin permeation of the palm-peptides was enhanced by the chemical skin penetration enhancers, namely, oleic acid and menthol. Skin permeation of the native peptide was enhanced by the microneedle patch but not the chemical skin penetration enhancers. Cutaneous absorption of the palm-peptides was estimated to have achieved its therapeutic concentration within skin. The combinatory approach of using molecular modification, chemical penetration enhancement, and microneedle patch proves to be useful to enhanceskin permeation of the peptides.
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