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Comparative metabolism of aflatoxin B1 in mouse, rat and human primary hepatocytes using HPLC–MS/MS

Andrea Gerdemann; Benedikt Cramer; Gisela H. Degen; Jannik Veerkamp; Georgia Günther; Wiebke Albrecht; Matthias Behrens; Melanie Esselen; Ahmed Ghallab; Jan G. Hengstler; Hans-Ulrich Humpf
Archives of Toxicology · Vol. 97, Issue 12 · pp. 3179-3196 · 2023

Abstract

Aflatoxin B 1 (AFB 1 ) is a highly hepatotoxic and carcinogenic mycotoxin produced by Aspergillus species. The compound is mainly metabolized in the liver and its metabolism varies between species. The present study quantified relevant AFB 1 - metabolites formed by mouse, rat, and human primary hepatocytes after treatment with 1 µM and 10 µM AFB 1 . The use of liquid chromatographic separation coupled with tandem mass spectrometric detection enabled the selective and sensitive determination of phase I and phase II metabolites of AFB 1 over incubation times of up to 24 h. The binding of AFB 1 to macromolecules was also considered. The fastest metabolism of AFB 1 was observed in mouse hepatocytes which formed aflatoxin P 1 as a major metabolite and also its glucuronidated form, while AFP 1 occurred only in traces in the other species. Aflatoxin M 1 was formed in all species and was, together with aflatoxin Q 1 and aflatoxicol, the main metabolite in human cells. Effective epoxidation led to high amounts of DNA adducts already 30 min post-treatment, especially in rat hepatocytes. Lower levels of DNA adducts and fast DNA repair were found in mouse hepatocytes. Also, protein adducts arising from reactive intermediates were formed rapidly in all three species. Detoxification via glutathione conjugation and subsequent formation of the N -acetylcysteine derivative appeared to be similar in mice and in rats and strongly differed from human hepatocytes which did not form these metabolites at all. The use of qualitative reference material of a multitude of metabolites and the comparison of hepatocyte metabolism in three species using advanced methods enabled considerations on toxification and detoxification mechanisms of AFB 1 . In addition to glutathione conjugation, phase I metabolism is strongly involved in the detoxification of AFB 1 .

Bibliographic Information

JournalArchives of Toxicology
PublisherSpringer
Publication Date2023-12-01
Publication Year2023
Volume97
Issue12
Pages3179-3196
Document TypeJournal Article
Print ISSN0340-5761
eISSN1432-0738
DOI10.1007/s00204-023-03607-z

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NARA Access Coverage1930-01-01~Current
Journal Homepagehttps://www.springer.com/journal/204
Publisher PageOpen Publisher Page
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