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The encapsulation effect of UV molecular absorbers into biocompatible lipid nanoparticles

机译:紫外线分子吸收剂对生物相容性脂质纳米粒的包封作用

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摘要

The efficiency of a cosmetic product depends not only on the active ingredients, but also on the carrier system devoted to improve its bioavailability. This article aims to encapsulate two couples of UV molecular absorbers, with a blocking action on both UV-A and UV-B domains, into efficient lipid nanoparticles. The effect of encapsulation on the specific properties such as sun protection factor and photostability behaviour has been demonstrated. The lipid nanoparticles with size range 30-350 nm and a polydispersity index between 0.217 and 0.244 are obtained using a modified high shear homogenisation method. The nanoparticles had spherical shapes with a single crystallisation form of lipid matrices characteristic for the least ordered crystal structure (α-form). The in vitro determination of photoprotection has led to high SPF ratings, with values of about 20, which assure a good photoprotection and filtering about 95% of UV radiation. The photoprotection effect after irradiation stage was observed to be increased more than twice compared to initial samples as a result of isomerisation phenomena. All the results have shown that good photoprotection effect and improved photostability could be obtained using such sunscreen couples, thus demonstrating that UV absorbers-solid lipid nanoparticles are promising carriers for cosmetic formulations.
机译:化妆品的效率不仅取决于活性成分,还取决于致力于改善其生物利用度的载体系统。本文旨在将对UV-A和UV-B结构域均具有阻断作用的两对UV分子吸收剂封装到有效的脂质纳米颗粒中。已经证明了封装对诸如防晒系数和光稳定性行为的特定性质的影响。使用改进的高剪切均质化方法获得尺寸范围为30-350 nm和多分散指数在0.217和0.244之间的脂质纳米颗粒。纳米颗粒具有球形形状,具有脂质矩阵的单结晶形式,该脂质基质具有最不规则的晶体结构(α-形式)的特征。体外确定的光保护作用导致SPF值较高,约为20,这确保了良好的光保护作用并过滤了约95%的紫外线。由于异构化现象,与初始样品相比,辐照阶段后的光保护效果提高了两倍以上。所有结果表明,使用这样的防晒剂对可以获得良好的光保护效果和改善的光稳定性,从而证明UV吸收剂-固体脂质纳米颗粒是化妆品制剂的有希望的载体。

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