Literature DB >> 29156079

The GARD platform for potency assessment of skin sensitizing chemicals.

Kathrin S Zeller1, Andy Forreryd1, Tim Lindberg1, Robin Gradin1,2, Aakash Chawade3, Malin Lindstedt1.   

Abstract

Contact allergy induced by certain chemicals is a common health concern, and several alternative methods have been developed to fulfill the requirements of European legislation with regard to hazard assessment of potential skin sensitizers. However, validated methods, which provide information about the potency of skin sensitizers, are still lacking. The cell-based assay Genomic Allergen Rapid Detection (GARD), targeting key event 3, dendritic cell activation, of the skin sensitization AOP, uses gene expression profiling and a machine learning approach for the prediction of chemicals as sensitizers or non-sensitizers. Based on the GARD platform, we here expanded the assay to predict three sensitizer potency classes according to the European Classification, Labelling and Packaging (CLP) Regulation, targeting categories 1A (strong), 1B (weak) and no cat (non-sensitizer). Using a random forest approach and 70 training samples, a potential biomarker signature of 52 transcripts was identified. The resulting model could predict an independent test set consisting of 18 chemicals, six from each CLP category and all previously unseen to the model, with an overall accuracy of 78%. Importantly, the model was shown to be conservative and only underestimated the class label of one chemical. Furthermore, an association of defined chemical protein reactivity with distinct biological pathways illustrates that our transcriptional approach can reveal information contributing to the understanding of underlying mechanisms in sensitization.

Entities:  

Keywords:  in vitro assay; potency; sensitization; biomarkers; random forest

Mesh:

Substances:

Year:  2017        PMID: 29156079     DOI: 10.14573/altex.1701101

Source DB:  PubMed          Journal:  ALTEX        ISSN: 1868-596X            Impact factor:   6.043


  5 in total

1.  Whole genome microarray analysis of neural progenitor C17.2 cells during differentiation and validation of 30 neural mRNA biomarkers for estimation of developmental neurotoxicity.

Authors:  Kristina Attoff; Anda Gliga; Jessica Lundqvist; Ulf Norinder; Anna Forsby
Journal:  PLoS One       Date:  2017-12-20       Impact factor: 3.240

2.  Skin sensitization: Uncertainties, challenges, and opportunities for improved risk assessment.

Authors:  Nicola Gilmour; Ian Kimber; Jason Williams; Gavin Maxwell
Journal:  Contact Dermatitis       Date:  2018-12-07       Impact factor: 6.600

3.  The GARDpotency Assay for Potency-Associated Subclassification of Chemical Skin Sensitizers-Rationale, Method Development, and Ring Trial Results of Predictive Performance and Reproducibility.

Authors:  Robin Gradin; Angelica Johansson; Andy Forreryd; Emil Aaltonen; Anders Jerre; Olivia Larne; Ulrika Mattson; Henrik Johansson
Journal:  Toxicol Sci       Date:  2020-08-01       Impact factor: 4.849

4.  Quantitative assessment of sensitizing potency using a dose-response adaptation of GARDskin.

Authors:  Robin Gradin; Andy Forreryd; Ulrika Mattson; Anders Jerre; Henrik Johansson
Journal:  Sci Rep       Date:  2021-09-23       Impact factor: 4.379

5.  Weight of Evidence Approach for Skin Sensitization Potency Categorization of Fragrance Ingredients.

Authors:  Mihwa Na; Devin O'Brien; Maura Lavelle; Isabelle Lee; G Frank Gerberick; Anne Marie Api
Journal:  Dermatitis       Date:  2022 Mar-Apr 01       Impact factor: 4.867

  5 in total

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