BMC Medicine (Sep 2010)

Blood cell gene expression associated with cellular stress defense is modulated by antioxidant-rich food in a randomised controlled clinical trial of male smokers

  • Arnesen Harald,
  • Laake Petter,
  • Duttaroy Asim K,
  • Moskaug Jan Ø,
  • Seljeflot Ingebjørg,
  • Svendsen Mette,
  • Erlund Iris,
  • Tunheim Siv,
  • Karlsen Anette,
  • Holden Marit,
  • Thoresen Magne,
  • Myhrstad Mari C,
  • Bøhn Siv K,
  • Tonstad Serena,
  • Collins Andrew,
  • Drevon Christan A,
  • Blomhoff Rune

DOI
https://doi.org/10.1186/1741-7015-8-54
Journal volume & issue
Vol. 8, no. 1
p. 54

Abstract

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Abstract Background Plant-based diets rich in fruit and vegetables can prevent development of several chronic age-related diseases. However, the mechanisms behind this protective effect are not elucidated. We have tested the hypothesis that intake of antioxidant-rich foods can affect groups of genes associated with cellular stress defence in human blood cells. Trial registration number: NCT00520819 http://clinicaltrials.gov. Methods In an 8-week dietary intervention study, 102 healthy male smokers were randomised to either a diet rich in various antioxidant-rich foods, a kiwifruit diet (three kiwifruits/d added to the regular diet) or a control group. Blood cell gene expression profiles were obtained from 10 randomly selected individuals of each group. Diet-induced changes on gene expression were compared to controls using a novel application of the gene set enrichment analysis (GSEA) on transcription profiles obtained using Affymetrix HG-U133-Plus 2.0 whole genome arrays. Results Changes were observed in the blood cell gene expression profiles in both intervention groups when compared to the control group. Groups of genes involved in regulation of cellular stress defence, such as DNA repair, apoptosis and hypoxia, were significantly upregulated (GSEA, FDR q-values Conclusions The observed changes in the blood cell gene expression profiles suggest that the beneficial effects of a plant-based diet on human health may be mediated through optimization of defence processes.