Metformin Affects the Transcriptomic Profile of Chicken Ovarian Cancer Cells

Lalitha Gopalan1, Aswathy Sebastian2, Craig A Praul2

  • 1Department of Animal Science, The Pennsylvania State University, University Park, PA 16802, USA.

Genes
|January 21, 2022
PubMed

Insights

Metformin significantly reduced ovarian cancer cell sphere formation and invasion. This study identified novel gene targets and pathways, including ASCL1, potentially inhibited by metformin.

Area of Science:

  • Gynecological Oncology
  • Pharmacology
  • Genomics

Background:

  • Ovarian cancer is a leading cause of cancer death in women.
  • Metformin is linked to lower ovarian cancer incidence and improved survival.

Purpose of the Study:

  • To investigate metformin's effects on ovarian cancer cell behavior (sphere formation, invasion) and gene expression.
  • To analyze the transcriptome profile of chicken ovarian cancer cells (COVCAR) treated with metformin.

Main Methods:

  • COVCAR cells were treated with varying metformin concentrations (0.5, 1, 2 mM).
  • Sphere formation and extracellular matrix invasion assays were performed.
  • RNA-sequencing (RNA-Seq) and Ingenuity Pathway Analysis (IPA) were utilized to analyze gene expression and pathways.

Main Results:

  • Metformin significantly decreased COVCAR cell sphere formation and invasiveness.
  • Differential gene expression analysis revealed changes in hundreds of genes, with dose-dependent effects.
  • IPA identified downregulation of genes (e.g., MMP7, AICDA) and predicted inhibition of regulators (e.g., NFKB, STAT3) involved in key cancer processes.
  • Upregulation of genes (e.g., RASD2, IHH) and predicted activation of regulators (e.g., VEGF, E2F1) related to angiogenesis and cell cycle were observed.
  • Novel causal networks suggested metformin's potential to inhibit ovarian cancer via master regulator ASCL1.

Conclusions:

  • Metformin exhibits anti-cancer properties against ovarian cancer cells by reducing key malignant behaviors.
  • Metformin alters the transcriptome of ovarian cancer cells, impacting pathways involved in epithelial-mesenchymal transition, DNA repair, lipid metabolism, angiogenesis, and cell cycle.
  • Advanced pathway analysis reveals potential novel therapeutic targets and mechanisms for metformin in ovarian cancer treatment.

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