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首页> 外文期刊>International Journal of Pharmaceutics >Planar lipid bilayers formed from thermodynamically-optimized liposomes as new featured carriers for drug delivery systems through human skin
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Planar lipid bilayers formed from thermodynamically-optimized liposomes as new featured carriers for drug delivery systems through human skin

机译:由热力学优化的脂质体形成的平面脂质双层作为通过人体皮肤的药物递送系统的新特种载体

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摘要

The fundamental objective pursued in this work is to investigate how liposomes formed with a thermodynamically optimized molar composition formed by the main components of the stratum corneum matrix behave on the human skin surface when used as drug delivery systems. To this purpose we engineered liposomes using phosphatidylcholines, ceramides and cholesterol. The specific molar ratio of the three components was established after studying the mixing properties of the lipid monolayers of the lipid components formed at the air-water interface. Liposomes loaded and unloaded with ibuprofen and hyaluronic acid were characterized by quasi-elastic light scattering and fluorescence polarization. Optimized liposomes, with and without drugs, were applied onto human skin and the structures formed evaluated using atomic force microscopy. Since penetration enhancers improve the permeation of the drugs encapsulated, we also examined the effects of Tween (R) 80 on the physical properties of the liposomes and on their extensibility over skin.
机译:在这项工作中追求的基本目标是研究用由地层基质基质的主要成分形成的热力学优化的摩尔组合物的脂质体在用作药物递送系统时表现在人体皮肤表面上。为此目的,我们使用磷脂酰胆碱,神经酰胺和胆固醇设计脂质体。在研究在空气界面中形成的脂质组分的脂质单层的混合性质之后建立三种组分的特定摩尔比。通过准弹性光散射和荧光偏振表征加载和卸载的脂质体并卸载。施用优化的脂质体,具有和不含药物,施加在人体皮肤上,并使用原子力显微镜评估的结构进行评估。由于渗透增强剂改善了包封的药物的渗透性,我们还研究了Tween(R)80对脂质体的物理性质的影响以及对皮肤的可伸展性。

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