Genotoxic effect of meat consumption: A mini review

Laura Pelland-St-Pierre1, Samantha Christine Sernoskie2, Marc-André Verner3

  • 1Department of Social and Preventive Medicine, École de Santé Publique de l'Université de Montréal (ESPUM), Université de Montréal, Montréal, Québec, Canada; Health Innovation and Evaluation Hub, Université de Montréal Hospital Research Centre (CRCHUM), Montréal, Québec, Canada.

Insights

Meat consumption is linked to DNA damage, suggesting genotoxicity mechanisms may explain cancer risks. Further research is needed to confirm these associations in humans.

Area of Science:

  • Toxicology
  • Cancer Research
  • Human Health

Background:

  • Processed meat is classified as carcinogenic (Group 1) and red meat as probably carcinogenic (Group 2A) by the International Agency for Research on Cancer.
  • Mechanisms linking meat consumption to cancer in humans, especially direct DNA damage, require further investigation.
  • Genotoxicity biomarkers, including DNA strand breaks, DNA adducts, and micronucleus formation, are key indicators of DNA damage.

Purpose of the Study:

  • To evaluate and summarize recent literature (post-2000) on meat consumption and genotoxicity biomarkers in humans.
  • To assess the association between dietary meat intake and measures of DNA damage.
  • To identify potential mechanisms of carcinogenicity related to meat consumption.

Main Methods:

  • Systematic literature review of studies published since 2000.
  • Inclusion of experimental and observational studies examining meat consumption and DNA damage biomarkers.
  • Classification of studies based on design and dietary assessment methods, and analysis of genotoxicity assays (comet assay, DNA adducts, micronucleus formation).

Main Results:

  • A majority of observational and experimental studies reported positive associations between meat consumption and DNA damage.
  • 13 of 20 DNA adduct studies and 7 of 9 micronucleus studies showed a positive association.
  • Limitations include small sample sizes, poor methodological reporting, single-sample analysis, and potential publication bias.

Conclusions:

  • The reviewed literature suggests a preponderance of evidence supporting genotoxicity mechanisms in the meat-cancer association.
  • Meat consumption may induce DNA damage, contributing to its carcinogenic potential in humans.
  • Further high-quality research with robust methodologies is needed to elucidate these complex relationships.

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