Bioassay-directed analysis-based identification of relevant pyrrolizidine alkaloids
Autor: | Jochem Louisse, Patrick P. J. Mulder, Arjen Gerssen, Geert Stoopen, Deborah Rijkers, Milou G. M. van de Schans, Ad A. C. M. Peijnenburg |
---|---|
Jazyk: | angličtina |
Rok vydání: | 2022 |
Předmět: |
Project- en Accountmanagement
Health Toxicology and Mutagenesis Team Animal Drugs 1 Programme and Account Management LC-Orbitrap-MS Team Toxicology General Medicine Toxicology Pyrrolizidine alkaloids Team Natural Toxins γH2AX assay Tandem Mass Spectrometry HepaRG cells Biological Assay Bioassay LC-MS/MS Chromatography Liquid VLAG |
Zdroj: | Archives of Toxicology 96 (2022) 8 Archives of Toxicology, 96(8), 2299-2317 |
ISSN: | 0340-5761 |
Popis: | Pyrrolizidine alkaloids (PAs) are produced by various plant species and have been detected as contaminants in food and feed. Monitoring programmes should include PAs that are present in relevant matrices and that exhibit a high toxic potential. The aim of the present study was to use a bioassay-directed analysis approach to identify relevant PAs not yet included in monitoring programmes. To that end, extracts of Heliotropium europaeum and H. popovii were prepared and analysed with LC–MS/MS for the presence of 35 PAs included in monitoring programmes, as well as for genotoxic activity in the HepaRG/γH2AX assay. Europine, heliotrine and lasiocarpine were found to be the most abundant PAs. The extracts showed a higher γH2AX activity than related artificial mixtures of quantified known PAs, which might point to the presence of unknown toxic PAs. The H. europaeum extract was fractionated and γH2AX activities of individual fractions were determined. Fractions were further analysed applying LC–Orbitrap-MS analysis and Compound Discoverer software, identifying various candidate PAs responsible for the non-explained genotoxic activity. Altogether, the results obtained show that bioassay-directed analysis allows identification of candidate PAs that can be included in monitoring programmes. |
Databáze: | OpenAIRE |
Externí odkaz: |