An update on T-2 toxin and its modified forms: metabolism, immunotoxicity mechanism, and human exposure assessment
Archives of Toxicology, ISSN: 1432-0738, Vol: 94, Issue: 11, Page: 3645-3669
2020
- 75Citations
- 62Captures
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Metrics Details
- Citations75
- Citation Indexes74
- 74
- CrossRef7
- Policy Citations1
- Policy Citation1
- Captures62
- Readers62
- 62
Review Description
T-2 toxin is the most toxic trichothecene mycotoxin, and it exerts potent toxic effects, including immunotoxicity, neurotoxicity, and reproductive toxicity. Recently, several novel metabolites, including 3′,4′-dihydroxy-T-2 toxin and 4′,4′-dihydroxy-T-2 toxin, have been uncovered. The enzymes CYP3A4 and carboxylesterase contribute to T-2 toxin metabolism, with 3′-hydroxy-T-2 toxin and HT-2 toxin as the corresponding primary products. Modified forms of T-2 toxin, including T-2–3-glucoside, exert their immunotoxic effects by signaling through JAK/STAT but not MAPK. T-2–3-glucoside results from hydrolyzation of the corresponding parent mycotoxin and other metabolites by the intestinal microbiota, which leads to enhanced toxicity. Increasing evidence has shown that autophagy, hypoxia-inducible factors, and exosomes are involved in T-2 toxin-induced immunotoxicity. Autophagy promotes the immunosuppression induced by T-2 toxin, and a complex crosstalk between apoptosis and autophagy exists. Very recently, “immune evasion” activity was reported to be associated with this toxin; this activity is initiated inside cells and allows pathogens to escape the host immune response. Moreover, T-2 toxin has the potential to trigger hypoxia in cells, which is related to activation of hypoxia-inducible factor and the release of exosomes, leading to immunotoxicity. Based on the data from a series of human exposure studies, free T-2 toxin, HT-2 toxin, and HT-2–4-glucuronide should be considered human T-2 toxin biomarkers in the urine. The present review focuses on novel findings related to the metabolism, immunotoxicity, and human exposure assessment of T-2 toxin and its modified forms. In particular, the immunotoxicity mechanisms of T-2 toxin and the toxicity mechanism of its modified form, as well as human T-2 toxin biomarkers, are discussed. This work will contribute to an improved understanding of the immunotoxicity mechanism of T-2 toxin and its modified forms.
Bibliographic Details
http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85090794673&origin=inward; http://dx.doi.org/10.1007/s00204-020-02899-9; http://www.ncbi.nlm.nih.gov/pubmed/32910237; https://link.springer.com/10.1007/s00204-020-02899-9; https://dx.doi.org/10.1007/s00204-020-02899-9; https://link.springer.com/article/10.1007/s00204-020-02899-9
Springer Science and Business Media LLC
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