← Explorer/Network

Antigenotoxic studies of different substances to reduce the DNA damage induced by aflatoxin B(1) and ochratoxin A

Madrigal-Santillan E, Morales-Gonzalez J, Vargas-Mendoza N +5 more2010ToxinsReview
10.3390/toxins2040738PubMedFree full text
GastrointestinalHematologicalImmune/InnateNeurological
Indoor Mold (Stachybotrys, Aspergillus, etc.)Mycotoxins

Abstract

Mycotoxins are produced mainly by the mycelial structure of filamentous fungi, or more specifically, molds. These secondary metabolites are synthesized during the end of the exponential growth phase and appear to have no biochemical significance in fungal growth and development. The contamination of foods and feeds with mycotoxins is a significant problem for the adverse effects on humans, animals, and crops that result in illnesses and economic losses. The toxic effect of the ingestion of mycotoxins in humans and animals depends on a number of factors including intake levels, duration of exposure, toxin species, mechanisms of action, metabolism, and defense mechanisms. In general, the consumption of contaminated food and feed with mycotoxin induces to neurotoxic, immunosuppressive, teratogenic, mutagenic, and carcinogenic effect in humans and/or animals. The most significant mycotoxins in terms of public health and agronomic perspective include the aflatoxins, ochratoxin A (OTA), trichothecenes, fumonisins, patulin, and the ergot alkaloids. Due to the detrimental effects of these mycotoxins, several strategies have been developed in order to reduce the risk of exposure. These include the degradation, destruction, inactivation or removal of mycotoxins through chemical, physical and biological methods. However, the results obtained with these methods have not been optimal, because they may change the organoleptic characteristics and nutritional values of food. Another alternative strategy to prevent or reduce the toxic effects of mycotoxins is by applying antimutagenic agents. These substances act according to several extra- or intracellular mechanisms, their main goal being to avoid the interaction of mycotoxins with DNA; as a consequence of their action, these agents would inhibit mutagenesis and carcinogenesis. This article reviews the main strategies used to control AFB1 and ochratoxin A and contains an analysis of some antigenotoxic substances that reduce the DNA damage caused by these mycotoxins.

References (2)

  • Occurrence of ochratoxin A and ochratoxigenic mycoflora in corn and corn based foods and feeds in some South American countriesMycopathologia · 2007
  • Strategies to prevent mycotoxin contamination of food and animal feed: a reviewCritical Reviews in Food Science and Nutrition · 2006

Related Papers

  • The toxicology of chlorineEnvironmental Research · 2001 · 6 shared tags
  • Relationships of Fusarium toxins to tumours and other disorders in livestock.Journal of Veterinary Pharmacology and Therapeutics · 1981 · 6 shared tags
  • Characterization of Airborne Molds, Endotoxins, and Glucans in Homes in New Orleans after Hurricanes Katrina and RitaApplied and Environmental Microbiology · 2007 · 6 shared tags
  • Sequential upregulation of innate immune responses during acute acquisition of illness in patients exposed prospectively to water-damaged buildings. ASTMH, Philadelphia, PA · 6 shared tags
  • Toxins of filamentous fungiChemical immunology · 2002 · 6 shared tags
  • Sick building syndrome (SBS) and exposure to water-damaged buildings: Time series study, clinical trial and mechanismsNeurotoxicology and Teratology · 2006 · 6 shared tags