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Updated: Jan 25, 2026

Whole-Body Nanoparticle Aerosol Inhalation Exposures
Published on: May 7, 2013
Development, Characterization, and Standardization of a Nose-Only Inhalation Exposure System for Exposure of Rabbits
Katherine J O'Malley1, Jennifer D Bowling1, Eileen M Barry2
1Center for Vaccine Research, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Abstract:
Inhalation of Francisella tularensis causes pneumonic tularemia in humans, a severe disease with a 30 to 60% mortality rate. The reproducible delivery of aerosolized virulent bacteria in relevant animal models is essential for evaluating medical countermeasures. Here we developed optimized protocols for infecting New Zealand White (NZW) rabbits with aerosols containing F. tularensis We evaluated the relative humidity, aerosol exposure technique, and bacterial culture conditions to optimize the spray factor (SF), a central metric of aerosolization. This optimization reduced both inter- and intraday variability and was applicable to multiple isolates of F. tularensis Further improvements in the accuracy and precision of the inhaled pathogen dose were achieved through enhanced correlation of the bacterial culture optical density and the number of CFU. Plethysmograph data collected during exposures found that respiratory function varied considerably between rabbits, was not a function of weight, and did not improve with acclimation to the system. Live vaccine strain (LVS)-vaccinated rabbits were challenged via aerosol with human-virulent F. tularensis SCHU S4 that had been cultivated in either Mueller-Hinton broth (MHB) or brain heart infusion (BHI) broth. LVS-vaccinated animals challenged with SCHU S4 that had been cultivated in MHB experienced short febrile periods (median, 3.2 days), limited weight loss (<5%), and longer median survival times (∼18 days) that were significantly different from those for unvaccinated controls. In contrast, LVS-vaccinated rabbits challenged with SCHU S4 that had been cultivated in BHI experienced longer febrile periods (median, 5.5 days) and greater weight loss (>10%) than the unvaccinated controls and median survival times that were not significantly different from those for the unvaccinated controls. These studies highlight the importance of careful characterization and optimization of protocols for aerosol challenge with pathogenic agents.
Insights
Optimized aerosol delivery protocols for Francisella tularensis in rabbits improve reproducibility for medical countermeasure studies. Culture conditions significantly impact tularemia severity and survival in vaccinated animals.
Area of Science:
- Microbiology
- Infectious Diseases
- Aerobiology
Background:
- Inhalation of Francisella tularensis causes severe pneumonic tularemia with high mortality.
- Reproducible aerosol delivery in animal models is critical for evaluating medical countermeasures against F. tularensis.
Purpose of the Study:
- To develop and optimize protocols for reproducible aerosolized F. tularensis infections in New Zealand White rabbits.
- To assess the impact of bacterial culture conditions on disease severity and survival in vaccinated rabbits.
Main Methods:
- Optimized relative humidity, aerosol exposure techniques, and bacterial culture conditions to improve the spray factor (SF).
- Correlated bacterial culture optical density with colony-forming units (CFU) for precise inhaled pathogen dose determination.
- Challenged Live Vaccine Strain (LVS)-vaccinated rabbits with F. tularensis SCHU S4 cultured in Mueller-Hinton broth (MHB) or Brain Heart Infusion (BHI) broth.
Main Results:
- Optimized protocols reduced inter- and intraday variability in aerosolization and improved dose accuracy.
- LVS-vaccinated rabbits challenged with MHB-cultured SCHU S4 showed shorter febrile periods, less weight loss, and longer survival.
- LVS-vaccinated rabbits challenged with BHI-cultured SCHU S4 exhibited prolonged fever, greater weight loss, and survival not significantly different from controls.
Conclusions:
- Careful characterization and optimization of aerosol challenge protocols are crucial for F. tularensis research.
- Bacterial culture media significantly influences the pathogenesis and outcome of experimental pneumonic tularemia in vaccinated rabbits.
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