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Lipid Nanoparticles as Novel Carrier for Broad-spectrum Sunscreen Formulations

机译:脂质纳米颗粒作为广谱防晒制剂的新型载体

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The most widely used UVA absorber in broad-spectrum sunscreens is avobenzone. In the sunlight, however, it will be photolysised rapidly and its photoprotection against UVA will greatly decrease. A photoprotective formulation was developed with an increased sun protection factor(SPF), compared to a conventional formulations, but having the same concentration. In the present paper, the effectiveness of a sunscreen mixture, incorporated into the novel topical delivery systems, i.e. solid lipid nanoparticles (SLN) and nanostructured lipid carriers (NLC), used as ultraviolet (UV) protector enhancers with a distinctly higher loading capacity has been developed and evaluated. After the production by hot high pressure homogenization, the NLC were analyzed in terms of particle size, physical state, particle shape, ultraviolet absorbance and stability. The determination of 3 organic UMilters was performed by HPLC with UV spectrophotometric detection. The loading capacities for molecular sunscreens reported before now are in the range of 10-15%. It was possible to load NLC with up to 40% with molecular sunscreen. The particle size for all NLC was around 300 nm after production. In the sunlight, the retention rate of avobenzone was up to 90% .
机译:在广谱防晒霜中使用最广泛的UVA吸收剂是阿伏苯宗。但是,在阳光下,它会迅速被光解,并且其对UVA的光防护能力将大大降低。与常规制剂相比,开发了具有增加的防晒系数(SPF)的光保护制剂,但浓度相同。在本文中,掺入新型局部给药系统中的防晒霜混合物的有效性,即固体脂质纳米颗粒(SLN)和纳米结构脂质载体(NLC),被用作紫外线(UV)保护剂增强剂,具有明显更高的负载能力被开发和评估。通过热高压均质化生产后,对NLC进行了粒度,物理状态,颗粒形状,紫外线吸收率和稳定性方面的分析。通过HPLC和UV分光光度法检测进行3种有机UMilters的测定。以前报道的分子防晒霜的负载量在10-15%的范围内。使用分子防晒霜可以将最多40%的NLC负载。生产后所有NLC的粒径约为300 nm。在阳光下,阿伏苯宗的保留率高达90%。

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