Effect of dietary genistein on cell replication indices in C57BL6 mice

S M Morris1, G S Akerman, A R Warbritton

  • 1Division of Genetic and Reproductive Toxicology, National Center for Toxicological Research, US Food and Drug Administration, HFT-120/DGRT/NCTR, 3900 NCTR Road, Jefferson, AR 72079, USA. smorris@nctr.fda.gov

Cancer Letters
|May 28, 2003
PubMed

Insights

Genistein, a soy isoflavone, was studied in mice and found to affect DNA synthesis. This phytoestrogen accumulates in the small intestine, impacting cell replication and potentially topoisomerase-II activity.

Area of Science:

  • * Molecular Biology
  • * Pharmacology
  • * Toxicology

Background:

  • * Genistein, a phytoestrogen and isoflavone, is known to inhibit DNA synthesis-related enzyme topoisomerase-II (topo-II) in cell cultures.
  • * Previous studies indicate genistein alters cell-cycle progression and induces cell death in vitro.

Purpose of the Study:

  • * To investigate the in vivo effects of dietary genistein on cell replication and cell death in mice.
  • * To determine genistein accumulation in serum and its impact on small intestine cell kinetics.

Main Methods:

  • * C57BL6 mice were fed diets with varying genistein doses (100-2000 ppm) for 28 days.
  • * Serum isoflavone levels were quantified using liquid chromatography with electrospray tandem mass spectrometry (LC-ES/MS/MS).
  • * Immunohistochemistry assessed cell replication and death rates in the small intestine.

Main Results:

  • * Dietary genistein increased serum isoflavone levels in a dose-dependent manner.
  • * Mice fed genistein exhibited altered cell-cycle distribution in the small intestine, with decreased G(0) and increased S-phase.
  • * These changes suggest genistein-induced S-phase arrest, consistent with topo-II inhibition.

Conclusions:

  • * Genistein accumulates to effective levels in the mouse small intestine following dietary administration.
  • * The observed cell-cycle alterations indicate genistein impacts topo-II activity in vivo.
  • * This study provides evidence for genistein's biological activity in a mammalian model.