Porphyromonas somerae Invasion of Endometrial Cancer Cells

Taylor A Crooks1,2, Joseph D Madison1,3,4, Dana M Walsh1

  • 1Microbiome Program, Center for Individualized Medicine, Mayo Clinic, Rochester, MN, United States.

Insights

Porphyromonas somerae bacteria show increased growth with 17β-estradiol and can invade endometrial cells, suggesting a potential role in endometrial cancer progression. Further research is needed to understand this association.

Area of Science:

  • Microbiology
  • Gynecologic Oncology
  • Bacteriology

Background:

  • Endometrial cancer is linked to the understudied bacterium *Porphyromonas somerae*.
  • Previous studies show *P. somerae* is abundant in the uterine microbiome of endometrial cancer patients.
  • The *Porphyromonas* genus is associated with oral cancer, suggesting a similar pathogenic role for *P. somerae* in endometrial cancer.

Purpose of the Study:

  • To characterize *Porphyromonas somerae* biology due to limited existing data.
  • To investigate the hypothesis that *P. somerae* plays a pathogenic role in endometrial cancer via intracellular activity.
  • To examine the influence of 17β-estradiol, an endometrial cancer risk factor, on *P. somerae* growth and invasion.

Main Methods:

  • Characterized *P. somerae* growth curves and antibiotic susceptibility.
  • Assessed *P. somerae* growth in response to 17β-estradiol and performed metabolomic profiling.
  • Conducted *in vitro* invasion assays of endometrial adenocarcinoma cells under hypoxic conditions, with and without 17β-estradiol.
  • Utilized microscopy, bacterial recovery, and *in silico* analyses to confirm intracellular invasion.

Main Results:

  • *P. somerae* demonstrated increased growth in the presence of various concentrations of 17β-estradiol.
  • No significant changes in metabolite levels were observed in response to 17β-estradiol.
  • *P. somerae* was found to invade endometrial adenocarcinoma cells *in vitro*.
  • 17β-estradiol did not alter the frequency of *P. somerae* invasion.

Conclusions:

  • *P. somerae* exhibits potential intracellular pathogenic phenotypes within the uterine microbiome.
  • The bacterium's growth is enhanced by 17β-estradiol, a known endometrial cancer risk factor.
  • These findings raise new questions about the role of *P. somerae* in endometrial cancer progression.