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Fas antigen-mediated apoptosis of ovarian surface epithelial cells

S M Quirk1, R G Cowan, S H Huber

  • 1Department of Animal Science, Cornell University, Ithaca, New York 14853, USA. SMQ1@cornell.edu

Endocrinology
|November 5, 1997
PubMed

Insights

Interferon-gamma (IFN) pretreatment sensitizes ovarian surface epithelial cells (OSE) to Fas-mediated apoptosis. This finding has implications for understanding normal ovarian function and the development of ovarian cancers.

Area of Science:

  • Reproductive biology
  • Cell biology
  • Immunology

Background:

  • Fas antigen (Fas) is a cell surface receptor that mediates apoptosis upon engagement.
  • Interferon-gamma (IFN) is known to upregulate Fas antigen expression in various cell types.
  • Ovarian surface epithelial cells (OSE) play crucial roles in ovulation and ovarian surface repair, and are the cell of origin for most ovarian cancers.

Purpose of the Study:

  • To investigate the effect of an agonistic monoclonal antibody to mouse Fas antigen (Fas mAb) on the viability of cells from mouse corpora lutea (CL) cultures.
  • To determine if IFN pretreatment enhances Fas-mediated apoptosis in OSE.
  • To explore the implications for normal ovarian function and ovarian oncogenesis.

Main Methods:

  • Dispersed CL cultures and enriched OSE cultures were prepared from pseudopregnant mice.
  • Cultures were pretreated with varying concentrations of murine IFN.
  • Cells were subsequently treated with Fas mAb, and apoptosis was assessed via morphological changes, cell counting, DNA fragmentation (TUNEL assay), and immunocytochemistry for Fas antigen and cytokeratin.
  • Quantitative reverse transcriptase-PCR was used to measure Fas antigen mRNA levels.

Main Results:

  • Fas mAb treatment induced apoptosis specifically in OSE within CL cultures, characterized by membrane blebbing, detachment, and disappearance.
  • IFN pretreatment, particularly at higher concentrations (10-1000 U/ml), significantly enhanced Fas mAb-induced OSE death.
  • Enriched OSE cultures also showed increased sensitivity to Fas mAb after IFN pretreatment.
  • IFN pretreatment upregulated Fas antigen expression and mRNA levels in OSE.
  • No significant effect of Fas mAb was observed on luteal, stromal, or endothelial cells in CL cultures.

Conclusions:

  • OSE undergo apoptosis in response to Fas mAb when pretreated with IFN, indicating a sensitization mechanism.
  • These findings suggest that the Fas/FasL pathway, modulated by IFN, could be involved in the programmed cell death of OSE during ovulation and in the pathogenesis of ovarian cancer.
  • The study highlights the potential role of OSE apoptosis in normal ovarian physiology and ovarian cancer development.

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