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Generation and Multi-phenotypic High-content Screening of Coxiella burnetii Transposon Mutants
Published on: May 13, 2015
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.
Abstract:
Coxiella burnetii, the etiological agent of Q fever, is a Gram-negative bacterium transmitted to humans by inhalation of contaminated aerosols. Acute Q fever is often self-limiting, presenting as a febrile illness that can result in atypical pneumonia. In some cases, Q fever becomes chronic, leading to endocarditis that can be life threatening. The formalin-inactivated whole-cell vaccine (WCV) confers long-term protection but has significant side effects when administered to presensitized individuals. Designing new vaccines against C. burnetii remains a challenge and requires the use of clinically relevant modes of transmission in appropriate animal models. We have developed a safe and reproducible C. burnetii aerosol challenge in three different animal models to evaluate the effects of pulmonary acquired infection. Using a MicroSprayer aerosolizer, BL/6 mice and Hartley guinea pigs were infected intratracheally with C. burnetii Nine Mile phase I (NMI) and demonstrated susceptibility as determined by measuring bacterial growth in the lungs and subsequent dissemination to the spleen. Histological analysis of lung tissue showed significant pathology associated with disease, which was more severe in guinea pigs. Infection using large-particle aerosol (LPA) delivery was further confirmed in nonhuman primates, which developed fever and pneumonia. We also demonstrate that vaccinating mice and guinea pigs with WCV prior to LPA challenge is capable of eliciting protective immunity that significantly reduces splenomegaly and the bacterial burden in spleen and lung tissues. These data suggest that these models can have appreciable value in using the LPA delivery system to study pulmonary Q fever pathogenesis as well as designing vaccine countermeasures to C. burnetii aerosol transmission.
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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