首页> 外文期刊>Skin pharmacology and physiology >Drug release and skin penetration from solid lipid nanoparticles and a base cream: a systematic approach from a comparison of three glucocorticoids.
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Drug release and skin penetration from solid lipid nanoparticles and a base cream: a systematic approach from a comparison of three glucocorticoids.

机译:固体脂质纳米颗粒和基础乳膏的药物释放和皮肤渗透作用:比较三种糖皮质激素的系统方法。

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摘要

Solid lipid nanoparticles (SLNs) can enhance drug penetration into the skin, yet the mechanism of the improved transport is not known in full. To unravel the influence of the drug-particle interaction on penetration enhancement, 3 glucocorticoids (GCs), prednisolone (PD), the diester prednicarbate (PC) and the monoester betamethasone 17-valerate (BMV), varying in structure and lipophilicity, were loaded onto SLNs. Theoretical permeability coefficients (cm/s) of the agents rank BMV (-6.38) >/= PC (-6.57) > PD (-7.30). GC-particle interaction, drug release and skin penetration were investigated including a conventional oil-in-water cream for reference. Both with SLN and cream, PD release was clearly superior to PC release which exceeded BMV release. With the cream, the rank order did not change when studying skin penetration, and skin penetration is thus predominantly influenced by drug release. Yet, the penetration profile for the GCs loaded onto SLNs completely changed, and differences between the steroids were almost lost. Thus, SLNs influence skin penetration by an intrinsic mechanism linked to a specific interaction of the drug-carrier complex and the skin surface, which becomes possible by the lipid nature and nanosize of the carrier and appears not to be derived by testing drug release. Interestingly, PC and PD uptake from SLN even resulted in epidermal targeting. Thus, SLNs are not only able to improve skin penetration of topically applied drugs, but may also be of particular interest when specifically aiming to influence epidermal dysfunction.
机译:固体脂质纳米颗粒(SLN)可以增强药物向皮肤的渗透,但是改善转运的机制尚不完全清楚。为了揭示药物-颗粒相互作用对渗透增强的影响,加载了三种糖皮质激素(GC),泼尼松龙(PD),二酯泼尼甲酸酯(PC)和单酯倍他米松17-戊酸酯(BMV),它们的结构和亲脂性各不相同。到SLN上。药物的理论渗透系数(cm / s)为BMV(-6.38)> / = PC(-6.57)> PD(-7.30)。研究了包括传统水包油乳膏在内的GC-颗粒相互作用,药物释放和皮肤渗透。无论是SLN还是乳霜,PD释放明显优于PC释放,后者超过BMV释放。对于乳霜,研究皮肤渗透性时的等级顺序没有改变,因此皮肤渗透性主要受药物释放的影响。但是,加载到SLN上的GC的渗透曲线完全改变了,类固醇之间的差异几乎消失了。因此,SLN通过与药物-载体复合物和皮肤表面的特定相互作用相关的内在机制影响皮肤渗透,这通过载体的脂质性质和纳米尺寸成为可能,并且似乎不是通过测试药物释放而得出。有趣的是,从SLN摄取PC和PD甚至导致表皮靶向。因此,SLN不仅能够改善局部应用药物的皮肤渗透性,而且在特别旨在影响表皮功能障碍时也可能引起特别关注。

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