de Araújo Margarete M, Schneid Andressa C, Oliveira Mariana S, Mussi Samuel V, de Freitas Miller N, Carvalho Flávia C, Bernes Junior Edson A, Faro Renato, Azevedo Hatylas
Aché Laboratórios Farmacêuticos, Rod. Pres. Dutra-Porto da Igreja, Guarulhos 07034-904, SP, Brazil.
Ferring Pharmaceuticals, Av. Engenheiro Luis Carlos Berrini-Cidade Monções, São Paulo 04571-010, SP, Brazil.
Pharmaceutics. 2024 Mar 20;16(3):427. doi: 10.3390/pharmaceutics16030427.
The topical use of sunscreens is recommended for avoiding the damaging effects of UV radiation. However, improvements are still needed in the existing products to enhance their photoprotection effectiveness and safety. This involves minimizing the use of chemical UV filters while providing enhanced and prolonged photoprotection. This work investigated novel sunscreen formulations and their UV protection effects by encapsulating Uvinul A, Tinosorb S, and Uvinul T150 into nanostructured lipid carriers (NLCs) based on bacuri butter and raspberry seed oil. First, the impact of critical formulation and process parameters on NLCs' particle size was evaluated using a 2 Face Centered Central Composite Design. Then, formulations were evaluated in terms of critical quality factors, in vitro skin permeation, and in vitro and in vivo photoprotection activities. The developed NLCs-containing formulations exhibited appropriate size (122-135 nm), PdI (<0.3), encapsulation efficiency (>90%), and drug content (>80%), which were preserved for at least 90 days under different stability conditions. Moreover, these NLCs-based formulations had equivalent skin permeation to emulsion-based controls, and the addition of NLCs into sunscreen cream bases in the optimum proportion of 20% (/) resulted in enhanced UVA and UVB photoprotection levels, despite a 10% reduction in the total filters content. Altogether, these results describe the application of nanoencapsulated organic UV filters in innovative sunscreen formulations to achieve superior photoprotection and cosmeceutical properties.
建议局部使用防晒霜以避免紫外线辐射的有害影响。然而,现有产品仍需改进,以提高其光保护效果和安全性。这涉及在提供增强和持久的光保护的同时尽量减少化学紫外线过滤剂的使用。这项工作通过将Uvinul A、Tinosorb S和Uvinul T150封装到基于巴西莓果脂和覆盆子籽油的纳米结构脂质载体(NLCs)中,研究了新型防晒霜配方及其紫外线防护效果。首先,使用二水平中心复合设计评估关键配方和工艺参数对NLCs粒径的影响。然后,根据关键质量因素、体外皮肤渗透以及体外和体内光保护活性对配方进行评估。所开发的含NLCs的配方表现出合适的尺寸(122 - 135 nm)、多分散指数(PdI)(<0.3)、包封效率(>90%)和药物含量(>80%),在不同稳定性条件下可保持至少90天。此外,这些基于NLCs的配方与乳液型对照具有相当的皮肤渗透性,并且以20%(/)的最佳比例将NLCs添加到防晒霜基质中,尽管总过滤剂含量降低了10%,但UVA和UVB光保护水平有所提高。总之,这些结果描述了纳米封装有机紫外线过滤剂在创新型防晒霜配方中的应用,以实现卓越的光保护和药妆特性。