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Deoxynivalenol-Induced Proinflammatory Gene Expression: Mechanisms and Pathological Sequelae

Pestka J2010ToxinsReview
10.3390/toxins2061300PubMedFree full text
Endocrine (ADH/ACTH/MSH)GastrointestinalImmune/Innate
Mycotoxins

Abstract

The trichothecene mycotoxin deoxynivalenol (DON) is commonly encountered in human cereal foods throughout the world as a result of infestation of grains in the field and in storage by the fungus Fusarium. Significant questions remain regarding the risks posed to humans from acute and chronic DON ingestion, and how to manage these risks without imperiling access to nutritionally important food commodities. Modulation of the innate immune system appears particularly critical to DON’s toxic effects. Specifically, DON induces activation of mitogen-activated protein kinases (MAPKs) in macrophages and monocytes, which mediate robust induction of proinflammatory gene expression—effects that can be recapitulated in intact animals. The initiating mechanisms for DON-induced ribotoxic stress response appear to involve the (1) activation of constitutive protein kinases on the damaged ribosome and (2) autophagy of the chaperone GRP78 with consequent activation of the ER stress response. Pathological sequelae resulting from chronic low dose exposure include anorexia, impaired weight gain, growth hormone dysregulation and aberrant IgA production whereas acute high dose exposure evokes gastroenteritis, emesis and a shock-like syndrome. Taken together, the capacity of DON to evoke ribotoxic stress in mononuclear phagocytes contributes significantly to its acute and chronic toxic effects in vivo. It is anticipated that these investigations will enable the identification of robust biomarkers of effect that will be applicable to epidemiological studies of the human health effects of this common mycotoxin.

Key Biomarkers

ER stress responseGRP78 autophagyIgA productionMAPK activationProinflammatory gene expression

Symptom Clusters

AnorexiaEmesisGastroenteritisGrowth hormone dysregulationImpaired weight gainShock-like syndrome

Cited By (2)

  • From the gut to the brain: journey and pathophysiological effects of the food-associated trichothecene mycotoxin deoxynivalenolToxins · 2012
  • Global protein phosphorylation dynamics during deoxynivalenol-induced ribotoxic stress response in the macrophageToxicology and Applied Pharmacology · 2013

References (6)

  • Transcriptional and posttranscriptional roles for p38 mitogen-activated protein kinase in upregulation of TNF-α expression by deoxynivalenol (vomitoxin)Toxicology and Applied Pharmacology · 2003
  • Invited Review: TOXICOLOGY OF DEOXYNIVALENOL (VOMITOXIN)Journal of Toxicology and Environmental Health · 1996
  • Vomitoxin-induced cyclooxygenase-2 gene expression in macrophages mediated by activation of ERK and p38 but not JNK mitogen-activated protein kinasesToxicological Sciences · 2002
  • Relationship of Trichothecene Structure to Cox-2 Induction in the Macrophage: Selective Action of Type B (8-Keto) TrichothecenesJournal of Toxicology and Environmental Health · 2003

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