Quantifying the Effects of Preventive Food on the Metabolism of a Prostate Carcinogen in Humans and in Prostate Cells Grown in Culture

Abstract

We are investigating the effects of foods associated with reduced prostate cancer risk on a dietary carcinogen known to be associated with cooked meat and elevated cancer risk. Cooked muscle meats contain potent mutagens and carcinogens belonging to the heterocyclic amine class of compounds. One of these, PhIP, is a genotoxic carcinogen that has been shown to cause DNA damage in prostate tissue and prostate tumor formation in rats. We have developed a method to quantify urinary metabolites of PhIP in human volunteers that have been fed a meal of cooked chicken. Using this method, we have shown that PhIP metabolism may be affected by diet and lifestyle factors and that soy may influence the relative amounts of PhIP metabolite excretion. At the cellular level we are investigating the metabolism of PhIP in human prostate cancer cells and have shown that there may be unique metabolic pathways for PhIP and N-OH-PhI in prostate cancer cells. This research uses state-of-the-art analytical measurement methods to support conclusions about the role of diet and prostate cancer in humans. Although still preliminary, our results indicate that other components of the diet, such as soy and broccoli, may have an effect on the metabolism of a commonly-occurring food carcinogen.

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Document Details

Document Type
Technical Report
Publication Date
Apr 01, 2002
Accession Number
ADA407309

Entities

People

  • James S. Felton

Organizations

  • Lawrence Livermore National Laboratory

Tags

DTIC Thesaurus Topics

  • Birds
  • Breast Cancer
  • Cancer
  • Carcinogens
  • Cell Line
  • Cell Physiological Processes
  • Cells
  • Chemistry
  • Colon Cancer
  • Detection
  • Liquid Chromatography
  • Mass Spectrometers
  • Mass Spectrometry
  • Metabolic Pathways
  • Neoplasms
  • Prostate Cancer
  • Tumor Cell Line

Fields of Study

  • Medicine

Readers

  • Gender and Food Studies
  • Geochemistry
  • Molecular and genetic basis of cancer.