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Abrogation of cisplatin-induced programmed cell death in human breast cancer cells by epidermal growth factor

M Dixit1, J L Yang, M C Poirier

  • 1Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232-5536, USA.

Abstract

Insights

High epidermal growth factor receptor (EGF-R) expression is necessary for cisplatin-induced apoptosis in tumor cells. Blocking EGF-R signaling confers resistance to cisplatin, suggesting a role in DNA repair.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Epidermal growth factor receptor (EGF-R) signaling influences tumor cell sensitivity to chemotherapy.
  • EGF-R activation by ligands like EGF or TGF-alpha can sensitize tumor cells to cisplatin, but only those with high EGF-R expression.

Purpose of the Study:

  • To investigate the role of EGF-R expression levels in mediating cisplatin-induced cytotoxicity.
  • To determine if EGF-R signaling is essential for cisplatin's effectiveness against cancer cells.

Main Methods:

  • Human breast cancer cells (MDA-468) were transfected with antisense EGF-R cDNA to reduce EGF-R expression.
  • EGF-R levels were confirmed via 125I-EGF binding and Western blot.
  • Cisplatin sensitivity was assessed using colony-forming assays, xenograft models, cell cycle analysis, and DNA damage assays.
  • Drug uptake and DNA adduct formation were quantified.

Main Results:

  • EGF-R knockdown cells (MDA-468/AS-EGFR) showed >90% reduction in EGF-R and significantly increased resistance to cisplatin (IC50 >25 µM vs <2 µM).
  • Parental and vector control cells exhibited cisplatin-induced apoptosis and G2 arrest, which were absent in EGF-R knockdown cells.
  • Reduced EGF-R levels correlated with resistance in xenograft models and were associated with higher levels of cisplatin-DNA adducts, despite similar drug uptake.

Conclusions:

  • A critical level of EGF-R signaling is required for cisplatin to induce apoptosis in tumor cells.
  • The EGF-R pathway appears to inhibit the repair of cisplatin-induced DNA damage.
  • Targeting EGF-R could modulate cancer cell response to cisplatin therapy.

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