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Epigenetic events during the process of cell transformation induced by carcinogens (review)

G Nguyen-Ba1, P Vasseur

  • 1Laboratory of Cellular and Molecular Pharmacology, CNRS-UMR 8612, Faculty of Pharmacy, 92290 Chatenay-Malabry, France.

Oncology Reports
|June 22, 1999
PubMed

Insights

Environmental carcinogens can trigger cancer through epigenetic changes, not just genetic damage. The Syrian hamster embryo cell assay reveals how carcinogens affect cell proliferation and death, crucial steps in cancer development.

Area of Science:

  • Toxicology and Carcinogenesis
  • Epigenetics and Cellular Biology

Background:

  • Multistage chemical carcinogenesis involves epigenetic events alongside genotoxic impacts.
  • Understanding early cellular changes in proliferation and programmed death is key to carcinogen detection.

Purpose of the Study:

  • To investigate the mechanisms of genotoxic and non-genotoxic agents in cell transformation.
  • To examine the role of ornithine decarboxylase (ODC) induction and apoptosis in early carcinogenesis.

Main Methods:

  • Utilized the Syrian hamster embryo (SHE) cell transformation assay, a model mimicking multistage carcinogenesis.
  • Employed one-stage and two-stage treatment protocols with various compounds, including carcinogens and non-carcinogens.
  • Measured ODC activity and apoptosis rates in SHE cells following carcinogen exposure.

Main Results:

  • Two-stage protocols identified all carcinogens (genotoxic and non-genotoxic) by inducing ODC activity and cell transformation.
  • Carcinogen exposure decreased apoptosis rates and upregulated Bcl-2 oncoprotein, an inhibitor of programmed cell death.
  • Non-carcinogens like phthalic anhydride also inhibited apoptosis but did not induce ODC activity.

Conclusions:

  • Both genotoxic and non-genotoxic carcinogens share common pathways in cancer development.
  • ODC superinduction and apoptosis inhibition, potentially via Bcl-2, cooperate in early carcinogenesis.
  • The SHE cell assay effectively detects carcinogens and elucidates their mechanistic pathways.

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