4.2 Article

Cell Growth of Ovarian Cancer Cells is Stimulated by Xenoestrogens through an Estrogen-Dependent Pathway, but Their Stimulation of Cell Growth Appears not to be Involved in the Activation of the Mitogen-Activated Protein Kinases ERK-1 and p38

Journal

JOURNAL OF REPRODUCTION AND DEVELOPMENT
Volume 55, Issue 1, Pages 23-29

Publisher

SOCIETY REPRODUCTION & DEVELOPMENT-SRD
DOI: 10.1262/jrd.20094

Keywords

Endocrine disrupting chemical; Estrogen receptor; Estrogen response element; Extracellular signal-regulated kinase; Mitogen-activated protein kinase

Funding

  1. Canadian Foundation for Women's Health
  2. Faculty of Medicine
  3. University of British Columbia
  4. Canadian Institutes of Health Research
  5. National Cancer Institute of Canada

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Although endocrine disrupting chemicals (EDCs) may interfere with the endocrine system(s) of our body and have estrogenicity or androgenicity, the exact mechanism(s) underlying their detrimental effects is not clearly understood. Thus, in this study, we evaluated the effects of EDCs on proliferation and regulation of transcription of estrogen receptor (ER)-positive BG-1 Ovarian cancer cells, and their possible mechanisms were further examined. Treatment with bisphenol A (BPA), nonylphenol (NP), octylphenol (OP) and rnethoxychlor (MXC) for 24 h resulted in an increase of cell proliferation. Treatment with BPA, NP, OP and MXC increased the estrogen response element (ERE) activity. The increase of cell proliferation and activation of ERE were reversed in the presence of all estrogen receptor antagonist, ICI 182780. These results suggest that ER is involved in EDC-mediated pathway in Ovarian cancer cells. Based on this, we further investigated the involvement of EDCs in activation of mitogen-activated protein kinase (MAPK) in relation to cell growth. BPA rapidly induced activation of extracellular signal-regulated kinase (ERK) 1/2 and p38 MAPK at 15 min, but the effect of BPA (10 mu M) on stimulation of cell growth was not blocked by pretreatment with inhibitors of MEK (PD98059) or p38 (SB203580) in a dose-dependent manner. Taken together, EDC-induced proliferation is mediated by a genomic effect through ERs and ERE, but EDC-activated MAPK is unlikely to be involved in EDC-induced cell growth in estrogen-responsive ovarian cancer cells.

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