Coxiella burnetii Intratracheal Aerosol Infection Model in Mice, Guinea Pigs, and Nonhuman Primates

A E Gregory1, E J van Schaik1, K E Russell-Lodrigue2

  • 1Department of Microbial Pathogenesis and Immunology, College of Medicine, Texas A&M University, Bryan, Texas, USA.

Infection and Immunity
|September 11, 2019
PubMed

Insights

Researchers developed a new aerosol challenge model for studying Q fever (caused by Coxiella burnetii). This model effectively simulates pulmonary infection in animals, aiding vaccine development against this significant bacterial threat.

Area of Science:

  • Microbiology
  • Immunology
  • Infectious Diseases

Background:

  • Coxiella burnetii causes Q fever, a zoonotic disease transmitted via aerosols.
  • Current vaccines have limitations, necessitating new research into pulmonary infection models.
  • Understanding Q fever pathogenesis is crucial for developing effective countermeasures.

Purpose of the Study:

  • To develop and validate a safe and reproducible aerosol challenge model for Coxiella burnetii.
  • To evaluate pulmonary Q fever infection in mice, guinea pigs, and nonhuman primates.
  • To assess the efficacy of a whole-cell vaccine (WCV) in a pulmonary challenge model.

Main Methods:

  • Intratracheal inoculation of Coxiella burnetii Nine Mile phase I (NMI) using a MicroSprayer aerosolizer.
  • Assessment of bacterial load in lungs and spleen, histological analysis of lung tissue.
  • Evaluation of fever and pneumonia in nonhuman primates post-aerosol challenge.

Main Results:

  • Mice and guinea pigs showed susceptibility to NMI infection, with bacterial dissemination to the spleen and significant lung pathology.
  • Guinea pigs exhibited more severe lung pathology compared to mice.
  • Nonhuman primates developed fever and pneumonia following aerosolized infection.
  • WCV vaccination provided protective immunity, reducing splenomegaly and bacterial burden in vaccinated animals.

Conclusions:

  • The developed aerosol challenge model is valuable for studying pulmonary Q fever pathogenesis.
  • This model system supports the evaluation of vaccine candidates against Coxiella burnetii aerosol transmission.
  • The findings provide a foundation for developing new strategies against Q fever.

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