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比较基于游离或包裹型紫外线滤光剂的防晒霜在皮肤渗透、滞留和光稳定性方面的行为差异。

Comparative behavior between sunscreens based on free or encapsulated UV filters in term of skin penetration, retention and photo-stability.

机构信息

Department of Drug Science, University di Pavia, via Taramelli 11, Pavia, Italy; TRI Princeton, 601 Prospect Ave, Princeton, NJ, USA.

Department of Drug Science, University di Pavia, via Taramelli 11, Pavia, Italy.

出版信息

Eur J Pharm Sci. 2018 Aug 30;121:309-318. doi: 10.1016/j.ejps.2018.06.001. Epub 2018 Jun 3.

Abstract

BACKGROUND

The growing incidence of photodamaging effects caused by UV radiation (e.g. sunburn, skin cancer) has increased the attention from health authorities which recommend the topical application of sunscreens to prevent these skin damages. The economic stakes for those companies involved in this international market are to develop new UV filters and innovative technologies to provide the most efficient, flexible and robust sunscreen products. Today the development of innovative and competitive sunscreen products is a complex formulation challenge. Indeed, the current sunscreens must protect against skin damages, while also being safe for the skin and being sensory and visually pleasant for the customers when applied on the skin. Organic UV filters, while proposing great advantages, also present the risk to penetrate the stratum corneum and diffuse into underlying structures with unknown consequences; moreover, their photo-stability are noted thorny outcomes in sunscreen development and subsequent performance. In recent years, the evaluation of the interaction between skin and sunscreen in terms of penetration after topical application has been considered from European authority but still its testing as their photo-stability assessment are not mandatory in most countries.

OBJECTIVE

This study, based on in-vitro approaches, was performed to evaluate and compare the retention and the penetration of organic UV filters in free or encapsulated form inside the skin as well as their respective photo-stability.

METHODS

Sunscreen formulation with a combination of Avobenzone and Octocrylene in "free form" and a formulation using the same UV filters but encapsulated in a sol-gel silica capsule, were analyzed and compared by FTIR Imaging Spectroscopy. Tape stripping method was used to investigate the penetration of these UV filters inside the stratum corneum. Their photo-stabilities were evaluated by spectroscopic measurements (FTIR, UV/Vis) and standard measurements were calculated: AUC (Area Under the Curve) and SPF (Sun Protection Factor).

RESULT

With traditional formulation, the organic UV filters penetrated significantly into the stratum corneum while the same UV filters combined with encapsulation technology remained on the skin surface. The encapsulation technology also improved significantly their stability.

CONCLUSION

Encapsulation technology is a promising strategy to improve the efficacy of sunscreen product using organic UV filters and to reduce safety problem. On the other hand, this study highlighted the pertinence of the FTIR Spectroscopy to test, compare and investigate sunscreen formulations.

摘要

背景

由于紫外线(例如晒伤、皮肤癌)引起的光损伤效应的发病率不断增加,这引起了卫生当局的关注,他们建议局部应用防晒霜来预防这些皮肤损伤。那些参与这个国际市场的公司的经济利益在于开发新的紫外线滤光片和创新技术,以提供最有效、灵活和强大的防晒霜产品。如今,开发创新和有竞争力的防晒霜产品是一个复杂的配方挑战。事实上,目前的防晒霜必须既能防止皮肤损伤,又要对皮肤安全,而且涂抹在皮肤上时对顾客的感官和视觉也要舒适。有机紫外线滤光片虽然有很大的优势,但也有渗透角质层并扩散到未知后果的潜在风险;此外,它们的光稳定性是防晒霜开发和后续性能评估中的棘手问题。近年来,欧洲当局已经考虑从皮肤与防晒霜的相互作用方面对面部应用后的渗透进行评估,但在大多数国家,其光稳定性评估及其测试并非强制性的。

目的

本研究采用体外方法,评估和比较有机紫外线滤光片以游离或包裹形式在皮肤内的保留和渗透及其各自的光稳定性。

方法

采用傅里叶变换红外成像光谱法对含有阿伏苯宗和奥克立林的防晒霜配方(“游离形式”)和使用相同紫外线滤光片但包裹在溶胶-凝胶二氧化硅胶囊中的配方进行分析和比较。采用胶带剥离法研究这些紫外线滤光片在角质层中的渗透情况。采用光谱测量(FTIR、UV/Vis)和标准测量(AUC(曲线下面积)和 SPF(防晒因子))评估其光稳定性。

结果

传统配方中,有机紫外线滤光片明显渗透到角质层中,而含有包裹技术的相同紫外线滤光片则保留在皮肤表面。包裹技术还显著提高了它们的稳定性。

结论

包裹技术是提高含有机紫外线滤光片的防晒霜产品功效和降低安全性问题的有前途的策略。另一方面,本研究强调了傅里叶变换红外光谱法在测试、比较和研究防晒霜配方方面的相关性。

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