Murine vaginal colonization model for investigating asymptomatic mucosal carriage of Streptococcus pyogenes

Michael E Watson1, Hailyn V Nielsen, Scott J Hultgren

  • 1Divison of Pediatric Infectious Diseases, Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri, USA.

Insights

This study developed a new mouse model for Streptococcus pyogenes vaginal colonization. Estradiol prolonged carriage and reduced inflammation, while CcpA regulation of LctO is key for S. pyogenes mucosal colonization.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Host-Pathogen Interactions

Background:

  • Streptococcus pyogenes causes invasive disease, but factors for asymptomatic mucosal carriage are unclear.
  • Understanding carriage is crucial for controlling S. pyogenes transmission and disease.

Purpose of the Study:

  • To develop and validate a murine model for prolonged asymptomatic vaginal colonization by S. pyogenes.
  • To investigate host and bacterial factors influencing S. pyogenes mucosal carriage.

Main Methods:

  • Adapted a pre-estrogenized murine vaginal colonization model for S. pyogenes.
  • Utilized estradiol treatment to modulate host environment and assessed its impact on colonization and inflammation.
  • Generated and analyzed a catabolite control protein A (CcpA) mutant to evaluate its role in vaginal colonization.

Main Results:

  • The model supported reproducible, asymptomatic S. pyogenes colonization for 3-4 weeks.
  • Estradiol treatment prolonged colonization and reduced vaginal inflammation and leukocyte presence.
  • A CcpA mutant showed impaired colonization, linked to dysregulated lactate oxidase (lctO) expression and hydrogen peroxide production.

Conclusions:

  • The murine vaginal colonization model is effective for studying S. pyogenes mucosal carriage.
  • Estradiol influences the host environment to promote prolonged S. pyogenes colonization.
  • CcpA is critical for S. pyogenes mucosal colonization, partly through regulating lctO to prevent self-toxic hydrogen peroxide accumulation.