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基于丁基甲氧基二苯甲酰甲烷的脂质纳米颗粒:体外 UVA 阻断效果。

Lipid nanoparticles based on butyl-methoxydibenzoylmethane: in vitro UVA blocking effect.

机构信息

Faculty of Applied Chemistry and Materials Science, University POLITEHNICA of Bucharest, Polizu Street No 1, 011061 Bucharest, Romania.

出版信息

Nanotechnology. 2012 Aug 10;23(31):315704. doi: 10.1088/0957-4484/23/31/315704. Epub 2012 Jul 13.

Abstract

The aim of the present study was to obtain efficient lipid nanoparticles loaded with butyl-methoxydibenzoylmethane (BMDBM) in order to develop cosmetic formulations with enhanced UVA blocking effect. For this purpose, two adequate liquid lipids (medium chain triglycerides and squalene) have been used in combination with two solid lipids (cetyl palmitate and glyceryl stearate) in order to create appropriate nanostructured carriers with a disordered lipid network able to accommodate up to 1.5% BMDBM. The lipid nanoparticles (LNs) were characterized in terms of particle size, zeta potential, entrapment efficiency, loading capacity and in vitro UVA blocking effect. The efficiency of lipid nanoparticles in developing some cosmetic formulations has been evaluated by determining the in vitro erythemal UVA protection factor. In order to quantify the photoprotective effect, some selected cream formulations based on BMDBM-LNs and a conventional emulsion were exposed to photochemical UV irradiation at a low energy to simulate the solar energy during the midday. The results obtained demonstrated the high ability of cream formulations based on BMDBM-LNs to absorb more than 96% of UVA radiation. Moreover, the developed cosmetic formulations manifest an enhanced UVA blocking effect, the erythemal UVA protection factor being four times higher than those specific to conventional emulsions.

摘要

本研究的目的是获得高效的负载丁基甲氧基二苯甲酰基甲烷(BMDBM)的脂质纳米粒,以便开发具有增强的 UVA 阻断效果的化妆品制剂。为此,使用了两种合适的液体脂质(中链甘油三酯和角鲨烯)与两种固体脂质(十六烷醇棕榈酸酯和甘油硬脂酸酯)相结合,以创建具有无序脂质网络的适当纳米结构载体,能够容纳高达 1.5%的 BMDBM。脂质纳米粒(LN)在粒径、Zeta 电位、包封效率、载药量和体外 UVA 阻断效果方面进行了表征。通过测定体外红斑 UVA 保护因子,评估了脂质纳米粒在开发一些化妆品制剂中的效率。为了定量评估光保护效果,一些基于 BMDBM-LN 的选定乳膏制剂和常规乳液在低能量的光化学 UV 照射下暴露于模拟正午阳光的太阳能下。结果表明,基于 BMDBM-LN 的乳膏制剂具有吸收超过 96%的 UVA 辐射的高能力。此外,开发的化妆品制剂表现出增强的 UVA 阻断效果,红斑 UVA 保护因子比常规乳液高四倍。

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