外用类维甲酸药物阿达帕烯的光敏特性

IF 3.8 3区 医学 Q2 CHEMISTRY, MEDICINAL
Juan A. Soler-Orenes, Gemma M. Rodríguez-Muñiz, Javier Hernández-Gil, Miguel A. Miranda, Inmaculada Andreu and Virginie Lhiaubet-Vallet*, 
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引用次数: 0

摘要

光反应性是外用药物的一个重要问题,特别是当这些药物应用于暴露在阳光下的皮肤区域时。在这种情况下,第三代类维生素a因其共轭化学结构和用于治疗痤疮而引起特别关注。本文利用体外3T3中性红色摄取(NRU)试验确定了其中一种药物阿达帕烯的光毒性潜能。光物理研究表明,II型过程与单线态氧的有效形成有关。有趣的是,氧对阿达帕烯单线态歧管的猝灭导致通过标记o2增强的系统间交叉过程增加活性氧的产生。综上所述,从毒理学的角度来看,这些结果是相关的,因为阿达帕烯可以被认为是一把双刃剑:它可以是不希望的皮肤光敏反应的起源,也可以被认为是局部光动力治疗的候选药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Photosensitizing Properties of the Topical Retinoid Drug Adapalene

Photosensitizing Properties of the Topical Retinoid Drug Adapalene

Photoreactivity is an important issue for topical drugs especially when these are applied on the sun-exposed skin area. In this context, third-generation retinoids are of special interest due to their conjugated chemical structure and their use in the treatment of acne. Herein, the phototoxic potential of one of these drugs, adapalene, is established using an in vitro 3T3 Neutral Red Uptake (NRU) test. Photophysical studies demonstrate the involvement of a Type II process with an efficient formation of singlet oxygen. Interestingly, quenching of the adapalene singlet manifold by oxygen leads to an increased production of this reactive oxygen species through the tagged O2-enhanced intersystem crossing process. Taken together, these results are relevant from a toxicological point of view as adapalene could be considered as a double-edged sword: it can be at the origin of undesired skin photosensitivity reactions or be considered as a candidate for topical photodynamic therapy.

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来源期刊
CiteScore
7.90
自引率
7.30%
发文量
215
审稿时长
3.5 months
期刊介绍: Chemical Research in Toxicology publishes Articles, Rapid Reports, Chemical Profiles, Reviews, Perspectives, Letters to the Editor, and ToxWatch on a wide range of topics in Toxicology that inform a chemical and molecular understanding and capacity to predict biological outcomes on the basis of structures and processes. The overarching goal of activities reported in the Journal are to provide knowledge and innovative approaches needed to promote intelligent solutions for human safety and ecosystem preservation. The journal emphasizes insight concerning mechanisms of toxicity over phenomenological observations. It upholds rigorous chemical, physical and mathematical standards for characterization and application of modern techniques.
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