Incorporation of Metabolic Activation in the HPTLC-SOS-Umu-C Bioassay to Detect Low Levels of Genotoxic Chemicals in Food Contact Materials

Author:

Debon Emma,Rogeboz Paul,Latado Hélia,Morlock Gertrud E.ORCID,Meyer DanielORCID,Cottet-Fontannaz Claudine,Scholz GabrieleORCID,Schilter Benoît,Marin-Kuan MaricelORCID

Abstract

The safety evaluation of food contact materials requires excluding mutagenicity and genotoxicity in migrates. Testing the migrates using in vitro bioassays has been proposed to address this challenge. To be fit for that purpose, bioassays must be capable of detecting very low, safety relevant concentrations of DNA-damaging substances. There is currently no bioassay compatible with such qualifications. High-performance thin-layer chromatography (HPTLC), coupled with the planar SOS Umu-C (p-Umu-C) bioassay, was suggested as a promising rapid test (~6 h) to detect the presence of low levels of mutagens/genotoxins in complex mixtures. The current study aimed at incorporating metabolic activation in this assay and testing it with a set of standard mutagens (4-nitroquinoline-N-oxide, aflatoxin B1, mitomycin C, benzo(a)pyrene, N-ethyl nitrourea, 2-nitrofluorene, 7,12-dimethylbenzanthracene, 2-aminoanthracene and methyl methanesulfonate). An effective bioactivation protocol was developed. All tested mutagens could be detected at low concentrations (0.016 to 230 ng/band, according to substances). The calculated limits of biological detection were found to be up to 1400-fold lower than those obtained with the Ames assay. These limits are lower than the values calculated to ensure a negligeable carcinogenic risk of 10−5. They are all compatible with the threshold of toxicological concern for chemicals with alerts for mutagenicity (150 ng/person). They cannot be achieved by any other currently available test procedures. The p-Umu-C bioassay may become instrumental in the genotoxicity testing of complex mixtures such as food packaging, foods, and environmental samples.

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

Reference31 articles.

1. Scientific opinion on genotoxicity testing strategies applicable to food and feed safety assessment;Agency:;EFSA J.,2011

2. Guidance on best practices on the risk assessment of on-intentionally added substances (NIAS) in food contact materials and articles;Koster;ILSI Eur. Rep. Ser.,2015

3. Value and limitation of in vitro bioassays to support the application of the threshold of toxicological concern to prioritise unidentified chemicals in food contact materials;Schilter;Food Addit. Contam. Part A Chem. Anal. Control Expo. Risk Assess.,2019

4. Evaluation of the Suitability of Mammalian In Vitro Assays to Assess the Genotoxic Potential of Food Contact Materials;Pinter;Foods,2020

5. Mutagenicity assessment of food contact material migrates with the Ames MPF assay;Rainer;Food Addit. Contam. Part A Chem. Anal. Control Expo. Risk Assess.,2019

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