Literature DB >> 17604947

The EpiSkin phototoxicity assay (EPA): development of an in vitro tiered strategy using 17 reference chemicals to predict phototoxic potency.

Damien Lelièvre1, Pascale Justine, François Christiaens, Nicole Bonaventure, Julie Coutet, Laurent Marrot, José Cotovio.   

Abstract

The aim of the study was to investigate the ability of human reconstructed epidermis EpiSkin(LM) to identify the phototoxic potency of topically or systemically applied chemicals (EPA: EpiSkin phototoxicity assay). Three classes, according to their available human phototoxic potential, were evaluated: systemic phototoxic compounds, topical phototoxic chemicals and non-phototoxic compounds. Non-cytotoxic concentrations of chemicals were applied topically or directly added to the underlying culture medium in order to mimic a systemic-like administration. Following treatment, tissues were exposed to non-cytotoxic dose of UVA (50 J cm(-2)). Cell viability and pro-inflammatory mediators (IL-1alpha) were investigated 22 h after UVA exposure. Our results show that the phototoxic potential of chemicals can be determined using cell viability combined with inflammatory mediator measurements (cytokine IL-1alpha) in a 3-D epidermis model. Moreover, the EPA was able to discriminate efficiently between phototoxic and non-phototoxic products. Furthermore, the EPA is sensitive to the administration route in the prediction of the phototoxic potency of the tested chemical. Differences observed between the two routes of administration (topical or systemic-like) may be linked in part to chemicals bioavailability which depends on specific penetration potential, epidermis barrier function and also on keratinocytes absorption/metabolization processes. Results were very promising and showed a very good sensitivity (92.3%) and an excellent specificity (100%) with an overall accuracy of 94.1%. The performances of the EPA showed that the EpiSkin(LM) model is an interesting tool able to integrate decision-making processes to address the question of phototoxicity linked to the application site.

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Year:  2007        PMID: 17604947     DOI: 10.1016/j.tiv.2007.04.012

Source DB:  PubMed          Journal:  Toxicol In Vitro        ISSN: 0887-2333            Impact factor:   3.500


  13 in total

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Review 4.  -Omics potential of in vitro skin models for radiation exposure.

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5.  Less is more: reducing the reliance on animal models for nausea and vomiting research.

Authors:  V Robinson
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Review 6.  Phototoxicity: Its Mechanism and Animal Alternative Test Methods.

Authors:  Kyuri Kim; Hyeonji Park; Kyung-Min Lim
Journal:  Toxicol Res       Date:  2015-06

7.  Development of a Full-Thickness Human Skin Equivalent In Vitro Model Derived from TERT-Immortalized Keratinocytes and Fibroblasts.

Authors:  Christianne M A Reijnders; Amanda van Lier; Sanne Roffel; Duco Kramer; Rik J Scheper; Susan Gibbs
Journal:  Tissue Eng Part A       Date:  2015-08-03       Impact factor: 3.845

8.  Comet assay in reconstructed 3D human epidermal skin models--investigation of intra- and inter-laboratory reproducibility with coded chemicals.

Authors:  Astrid A Reus; Kerstin Reisinger; Thomas R Downs; Gregory J Carr; Andreas Zeller; Raffaella Corvi; Cyrille A M Krul; Stefan Pfuhler
Journal:  Mutagenesis       Date:  2013-11       Impact factor: 3.000

9.  Phototoxicity Evaluation of Pharmaceutical Substances with a Reactive Oxygen Species Assay Using Ultraviolet A.

Authors:  Yong Sun Lee; Jung-Sun Yi; Hye Rim Lim; Tae Sung Kim; Il Young Ahn; Kyungyuk Ko; JooHwan Kim; Hye-Kyung Park; Soo Jung Sohn; Jong Kwon Lee
Journal:  Toxicol Res       Date:  2017-01-15

10.  Tissue engineered human skin equivalents.

Authors:  Zheng Zhang; Bozena B Michniak-Kohn
Journal:  Pharmaceutics       Date:  2012-01-06       Impact factor: 6.321

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