A Genital Infection-Attenuated Chlamydia muridarum Mutant Infects the Gastrointestinal Tract and Protects against

Sandra G Morrison1, Amanda M Giebel2, Evelyn Toh2

  • 1Department of Microbiology & Immunology, University of Arkansas for Medical Sciences, Little Rock, Arkansas, USA.

Mbio
|November 4, 2020
PubMed

Insights

A new study shows a mutant Chlamydia muridarum strain (GIAM-1) can colonize the gastrointestinal tract and protect against genital Chlamydia infections. This live-attenuated mutant offers potential for a safe and effective Chlamydia vaccine.

Area of Science:

  • Microbiology and Immunology
  • Vaccine Development
  • Bacterial Pathogenesis

Background:

  • Chlamydia spp. infect multiple mucosal sites, including the gastrointestinal (GI) and urogenital tracts.
  • Chlamydial GI tropism is influenced by chromosomal and plasmid factors.
  • There is a critical need for an effective Chlamydia vaccine due to high prevalence and potential complications like pelvic inflammatory disease and infertility.

Purpose of the Study:

  • To describe a Chlamydia muridarum mutant (GIAM-1) specifically attenuated in the murine genital tract.
  • To evaluate the potential of GIAM-1 as a live-attenuated vaccine candidate against Chlamydia genital infections.

Main Methods:

  • Generation and characterization of a genital infection-attenuated Chlamydia muridarum mutant (GIAM-1).
  • Infection of female mice with GIAM-1 to assess GI tract colonization and genital tract virulence.
  • Evaluation of transmucosal immune responses elicited by GIAM-1 infection.
  • Assessment of protection against subsequent challenge with wild-type Chlamydia muridarum.

Main Results:

  • GIAM-1 infected the murine GI tract similarly to wild-type (WT) Chlamydia muridarum.
  • GIAM-1 was profoundly attenuated in the murine genital tract, failing to cause lower or upper genital tract infection or hydrosalpinx.
  • GI infection with GIAM-1 elicited a protective transmucosal immune response against subsequent WT Chlamydia muridarum genital challenge.

Conclusions:

  • Chlamydia mutants with organ-specific attenuation can be derived.
  • Live-attenuated vaccine strains that colonize the GI tract without causing genital disease can confer protection against Chlamydia genital infection.
  • These findings provide compelling evidence for the feasibility of developing safe and effective live-attenuated Chlamydia vaccines.

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