角质层
脂质体
渗透(战争)
透皮
渗透
菲克扩散定律
层状结构
拉曼光谱
材料科学
生物物理学
化学
色谱法
膜
纳米技术
扩散
复合材料
生物
光学
工程类
生物化学
药理学
物理
运筹学
热力学
遗传学
作者
Antoine Bernasqué,Muriel Cario,Stéphanie Krisa,Sophie Lecomte,Chrystel Faure
标识
DOI:10.1080/08982104.2023.2177309
摘要
AbstractHydrocortisone (HyC), a hydrophobic pharmaceutical active, was encapsulated in multi-lamellar liposomes (MLLs) composed of P100, a mixture of phospholipids, and Tween®80. Three different HyC-loaded formulations were designed to target the stratum corneum, the living epidermis and the hypodermis. The impact of encapsulation on their size, elasticity and zeta potential, the three key factors controlling MLLs skin penetration, was studied. Raman mapping of phospholipids and HyC allowed the localisation of both components inside an artificial skin, Strat-M®, demonstrating the efficiency of the targeting. Percutaneous permeation profiles through excised human skin were performed over 48 h, supporting results on artificial skin. Their modelling revealed that HyC encapsulated in MLLs, designed to target the stratum corneum and living epidermis, exhibited a non-Fickian diffusion process. In contrast, a Fickian diffusion was found for HyC administered in solution, in a pharmaceutical cream and in transdermal MLLs. These results allowed us to propose a mechanism of interaction between HyC-containing MLLs and the skin.Keywords: Targetingskin layersmulti-lamellar liposomeshydrocortisoneconfocal Raman mappingdiffusion model AcknowledgementsThe authors want to thank S. Villette for her technical support in Raman spectroscopy. A. Bernasqué wants to thank the University of Bordeaux for his PhD grant.Additional informationFundingThe author(s) reported there is no funding associated with the work featured in this article.
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