一种高效皮肤粘附型半固体防晒纳米配方的评价

IF 2.8 4区 医学 Q2 DERMATOLOGY
L. Frank, R. P. Gazzi, A. Pohlmann, S. Guterres, R. V. Contri
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引用次数: 2

摘要

简介:防晒霜是涂在皮肤表面的物质,保护皮肤免受紫外线的有害影响。纳米粒子可以作为物理屏障,增加防晒霜在皮肤表面的停留时间和功效。本实验旨在研究壳聚糖包被负载二苯甲酮-3脂核纳米胶囊(CH-LCN)对防晒霜皮肤粘附性和光防护效果的影响。方法:采用预成型聚合物界面沉积法制备CH-LNC。以羟乙基纤维素为成胶聚合物,得到了合适的半固体配方。在体外进行皮肤粘附实验,将该配方涂于猪皮肤上,并将其置于32°C的水中长达60分钟。通过该配方在体外保护光不稳定物质(白藜芦醇)免受紫外线降解的能力来分析其光保护作用。结果:CH-LNC粒径约为150 nm,多分散性低,zeta电位正,壳聚糖包封率接近100% (3 mg/mL)。该凝胶具有适合皮肤使用的浓度和pH,二苯甲酮-3浓度约为3mg /g。虽然包被和未包被的脂核纳米胶囊在浸泡10分钟后都能增加二苯甲酮-3的皮肤粘附性,但在60分钟后,只有包被壳聚糖的纳米胶囊才能增加二苯甲酮-3的皮肤粘附性。在暴露60分钟后,壳聚糖包被的纳米胶囊增加了防晒霜在UVA和UVB光下的光防护,这可能是由于壳聚糖的成膜特性。结论:壳聚糖包被CH-LCN增强了皮肤粘附力和防晒剂的光防护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of an Efficient and Skin-Adherent Semisolid Sunscreen Nanoformulation
Introduction: Sunscreens are substances applied on the skin surface to protect the skin from the harmful effects of UV light. Nanoparticles can increase the retention time of the sunscreen on the skin surface and its efficacy, by acting as physical barriers. The present investigation aimed to evaluate the influence of the chitosan coating of benzophenone-3-loaded lipid-core nanocapsules (CH-LCN) on the skin adhesion and photoprotective effect of the sunscreen. Methods: CH-LNC were obtained by the interfacial deposition of preformed polymer. A suitable semisolid formulation was obtained by using hydroxyethyl cellulose as the gel-forming polymer. Skin adhesion experiments were performed in vitro by applying the formulation on porcine skin and keeping it under water at 32 °C for up to 60 min. Photoprotective effect was analyzed in vitro by the capacity of the formulations to protect a photo unstable substance (resveratrol) from degradation under UV light. Results: CH-LNC presented size of around 150 nm, with low polydispersity, positive zeta potential, due to chitosan, and benzophenone-3 encapsulation efficiency of close to 100% (3 mg/mL). The proposed gel presented suitable consistence and pH for skin application and benzophenone-3 concentration of around 3 mg/g. Although coated and uncoated lipid-core nanocapsules increased benzophenone-3 skin adhesion after 10 min of water immersion, only the nanoparticles coated with chitosan were able to do so after 60 min. The chitosan coating of the nanocapsules increased the photoprotection of the sunscreen under UVA and UVB light after 60 min of exposure, probably due to the film-forming properties of chitosan. Conclusion: The chitosan coating of CH-LCN increased the skin adhesion and the photoprotective effect of the sunscreen.
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来源期刊
Skin Pharmacology and Physiology
Skin Pharmacology and Physiology 医学-皮肤病学
CiteScore
5.20
自引率
7.40%
发文量
23
审稿时长
>12 weeks
期刊介绍: In the past decade research into skin pharmacology has rapidly developed with new and promising drugs and therapeutic concepts being introduced regularly. Recently, the use of nanoparticles for drug delivery in dermatology and cosmetology has become a topic of intensive research, yielding remarkable and in part surprising results. Another topic of current research is the use of tissue tolerable plasma in wound treatment. Stimulating not only wound healing processes but also the penetration of topically applied substances into the skin, this novel technique is expected to deliver very interesting results.
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