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日光光动力疗法中使用的不同防晒霜的光谱透过率分析

Spectral Transmittance Analysis of Different Sunscreens Used in Daylight Photodynamic Therapy.

作者信息

Gracia-Cazaña Tamara, Sánchez-Cano Ana, Aporta Justiniano, Gilaberte Yolanda

机构信息

Department of Dermatology, Miguel Servet University Hospital, IIS Aragón, Zaragoza, Spain.

Department of Medicine, Psychiatry and Dermatology, University of Zaragoza, Zaragoza, Spain.

出版信息

Photodermatol Photoimmunol Photomed. 2025 Sep;41(5):e70040. doi: 10.1111/phpp.70040.

Abstract

INTRODUCTION

The protocol for daylight photodynamic therapy (DL-PDT) includes the application of sunscreen with an SPF > 30 to block UV radiation and prevent sunburn during the 2 h of exposure to sunlight. Inorganic filters such as titanium dioxide and zinc oxide are not recommended, as they block the visible light needed to activate the photosensitizer. However, some sunscreens containing only organic filters can block 60% of the absorption spectrum of Protoporphyrin IX (PpIX).

MATERIALS AND METHODS

Different sunscreens commonly used to perform DL-PDT in clinical practice were investigated by measuring their spectral transmittance. Skydome irradiances were used to calculate the absorption of PpIX, combined with these sunscreens. To perform a comprehensive analysis of this activation cream in combination with them, five distinct spectral regions were delineated for examination based on specific regions of interest (ROI): R-I (λ < 475 nm), R-II (475 ≤ λ < 525 nm), R-III (525 ≤ λ < 560 nm), R-IV (560 ≤ λ < 610 nm), and R-V (610 nm ≤ λ).

RESULTS

The results indicate significant variations in the spectral transmittance and PpIX activation efficiency across different sunscreens. In the R-I region, which is critical for PpIX activation, the PpIX activation without sunscreen was highest at 85%, while the addition of sunscreens drastically reduced activation, ranging from 28% to 8%, depending on the sunscreen. In regions from R-II to R-V, the activation levels were consistently low across all sunscreens evaluated. They showed similar values of approximately 5% in R-II, 3% in R-III, 2% in R-IV, and 1% in R-V, slightly lower than the corresponding PpIX alone values of 7%, 4%, 3%, and 1%, respectively.

CONCLUSION

There are significant differences between sunscreens in terms of their absorption in the PpIX absorption spectrum. These differences do not depend on whether or not they contain inorganic filters but depend on the absorption spectrum of the filters contained in their formulation. These results highlight the impact of sunscreen selection on the efficacy of PpIX activation in DL-PDT.

摘要

引言

日光光动力疗法(DL-PDT)方案包括涂抹防晒系数(SPF)>30的防晒霜,以在2小时日照期间阻挡紫外线辐射并预防晒伤。不推荐使用二氧化钛和氧化锌等无机滤光剂,因为它们会阻挡激活光敏剂所需的可见光。然而,一些仅含有有机滤光剂的防晒霜可阻挡原卟啉IX(PpIX)60%的吸收光谱。

材料与方法

通过测量不同临床实践中常用于DL-PDT的防晒霜的光谱透射率来进行研究。结合这些防晒霜,利用天空穹顶辐照度计算PpIX的吸收情况。为了对这种激活乳膏与它们的组合进行全面分析,基于特定感兴趣区域(ROI)划定了五个不同的光谱区域进行检查:R-I(λ<475nm)、R-II(475≤λ<525nm)、R-III(525≤λ<560nm)、R-IV(560≤λ<610nm)和R-V(610nm≤λ)。

结果

结果表明不同防晒霜的光谱透射率和PpIX激活效率存在显著差异。在对PpIX激活至关重要的R-I区域,不使用防晒霜时PpIX的激活率最高,为85%,而添加防晒霜后激活率大幅降低,根据防晒霜的不同,范围在28%至8%之间。在从R-II到R-V的区域,所有评估的防晒霜的激活水平始终较低。它们在R-II中显示出约5%的相似值,在R-III中为3%,在R-IV中为2%,在R-V中为1%,略低于相应的单独PpIX值,分别为7%、4%、3%和1%。

结论

防晒霜在PpIX吸收光谱中的吸收存在显著差异。这些差异不取决于它们是否含有无机滤光剂,而是取决于其配方中所含滤光剂的吸收光谱。这些结果突出了防晒霜选择对DL-PDT中PpIX激活效果的影响。

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