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Effects of the mycotoxin patulin at the level of nuclear receptor transcriptional activity and steroidogenesis in vitro

Frizzell C, Elliott CT, Connolly L2014Toxicology LettersJournal Article
10.1016/j.toxlet.2014.06.847PubMed
Endocrine (ADH/ACTH/MSH)Hypothalamic-Pituitary
Mycotoxins

Abstract

Patulin (PAT) is a mycotoxin produced by various species of fungi, with Penicillium expansum being the most commonly occurring. Apples and apple products are the main sources of PAT contamination. This mycotoxin has been shown to induce toxic effects in animals, a few of which include reproductive toxicity and interference with the endocrine system. Here the endocrine disrupting potential of PAT has been investigated in vitro to identify disruption at the level of oestrogen, androgen, progestagen and glucocorticoid nuclear receptor transcriptional activity, and to assess interferences in estradiol, testosterone and progesterone steroid hormone production. At the receptor level, 0.5-5000ng/ml (0.0032-32μM) PAT did not appear to induce any specific (ant) agonistic responses in reporter gene assays (RGAs); however, nuclear transcriptional activity was affected. A >6 fold increase in the glucocorticoid receptor transcriptional activity was observed following treatment with 5000ng/ml PAT in the presence of cortisol. At the hormone production level, despite cytotoxicity being observed after treatment with 5000ng/ml PAT, estradiol levels had increased >2 fold. At 500ng/ml PAT treatment, an increase in progesterone and a decrease in testosterone production were observed. The findings of this study could be considered in assessing the health risks following exposure to PAT.

Key Biomarkers

Estradiol levelsGlucocorticoid receptor transcriptional activityNuclear receptor activityProgesterone productionTestosterone production

Symptom Clusters

Endocrine disruptionReproductive toxicitySteroidogenesis interference

Cited By (1)

  • Sex- and Gender-Specific Considerations in Mycotoxin Screening: Assessing Differential Exposure, Health Impacts, and Mitigation StrategiesMicrobiology Research · 2024

References (2)

  • Absorption of the mycotoxin patulin from the rat stomachFood and Chemical Toxicology · 2004
  • Rapid degradation of the mycotoxin patulin in man quantified by stable isotope dilution assaysFood Additives & Contaminants · 2003

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