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September 24, 2025Molecules8 citationsOpen Access

Mycotoxin Contamination: Occurrence, Biotransformation, Pathogenic Mechanisms, and Strategies for Nutritional Intervention

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CYChaofan YaoMYMengyu YeCWCong Wang

Key Points

  • Mycotoxins cause severe contamination in food and feed, threatening safety and public health.
  • Key mycotoxins like aflatoxin B1, ochratoxin A, and zearalenone exhibit diverse toxic effects.
  • Biotransformation of mycotoxins leads to reactive metabolites causing oxidative stress and inflammation.
  • Nutritional interventions can help counteract the negative effects of mycotoxin exposure.

Abstract

Mycotoxins, toxic fungal secondary metabolites, exhibit a diverse array of toxicological effects, including hepatotoxicity, carcinogenicity, estrogenicity, immunotoxicity, and neurotoxicity. These toxins cause severe contamination in food, feed, and traditional Chinese medicines (TCMs), threatening global food security and imposing substantial economic burdens. Among over 400 distinct mycotoxins identified to date, aflatoxin B1 (AFB1), ochratoxin A (OTA), and zearalenone (ZEN) stand out for their pervasive contamination and grave toxicities. Upon absorption, these toxins undergo biotransformation into reactive metabolites that exert multifaceted toxicities via mechanisms such as carcinogenesis, estrogenic effects, oxidative stress, inflammation, and abnormal apoptosis, collectively threatening human and livestock health. The application of natural and engineered enterosorbents suppresses intestinal absorption and subsequent bioactivation of mycotoxins, while dietary small-molecule bioactive compounds neutralize post-absorption toxicity via biotransformation intervention and cytoprotective reinforcement, collectively preventing the onset and progression of related diseases. This paper reviews the biosynthetic routes of three representative mycotoxins (AFB1, OTA, and ZEN), along with their biotransformation and underlying pathogenic mechanisms. Furthermore, nutritional intervention approaches targeting the underlying mechanisms to ameliorate mycotoxin-induced damage are discussed. This review not only provides valuable insights for future research on mycotoxin toxicity, but also establishes a theoretical foundation for utilizing dietary strategies to counteract mycotoxin-induced physical damage.

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Cite This Study

Yao et al. (2025) studied this question.

synapsesocial.com/papers/68d6e0fc8b2b6861e4c3f622https://doi.org/10.3390/molecules30193860
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