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Multicolor Flow Cytometry Analyses of Cellular Immune Response in Rhesus Macaques
Published on: April 22, 2010
Pathophysiology of the rhesus macaque model for inhalational brucellosis
Lisa N Henning1, Stephen M Miller, Dennis H Pak
1Battelle, Columbus, OH, USA. henningl@battelle.org
Abstract:
The objective of this study was to characterize the rhesus macaque (RM) as a model for inhalational brucellosis in support of the U.S. Food and Drug Administration's (FDA) Animal Rule. The pathophysiology of chronic Brucella melitensis aerosol infection was monitored in two phases that each occurred over an 8-week time period; dose escalation (8 RMs; targeted doses of 5.0E+03, 5.0E+04, or 5.0E+05 CFU/animal or the unchallenged control) and natural history (12 RMs; targeted dose of 2.50E+05 CFU/animal or the unchallenged control). RMs given an aerosol challenge with B. melitensis developed undulating fevers (6/6 phase I; 8/9 phase II), positive enriched blood cultures (5/10; phase II), and bacterial burdens in tissues starting 14 to 21 days postchallenge (6/6 phase I; 10/10 phase II). In addition, 80% (8/10; phase II) of infected RMs seroconverted 14 to 21 days postchallenge. RMs developed elevations in certain liver enzymes and had an increased inflammatory response by 3 weeks postchallenge as shown by increases in C-reactive protein (6/8) and neopterin (4/8), which correlated with the onset of a fever. As early as 14 days postchallenge, positive liver biopsy specimens were detected (2/8), and ultrasound imaging showed the development of splenomegaly. Finally, histopathologic examination found lesions attributed to Brucella infection in the liver, kidney, lung, and/or spleen of all animals. The disease progression observed with the RMs in this study is analogous to human brucellosis pathophysiology. Thus, the results from this study support the use of the RM as an animal model for inhalational brucellosis to evaluate the efficacy of novel vaccines and therapeutics against B. melitensis.
Insights
Rhesus macaques (RMs) effectively model inhalational brucellosis, showing key disease signs and pathology analogous to human brucellosis. This supports their use in evaluating new vaccines and therapeutics for Brucella melitensis infection.
Area of Science:
- Veterinary Medicine
- Infectious Diseases
- Primate Models
Background:
- Brucellosis remains a significant zoonotic disease globally.
- Inhalational brucellosis poses a particular public health threat.
- Developing effective countermeasures requires robust animal models.
Purpose of the Study:
- To characterize the rhesus macaque (RM) as a model for inhalational brucellosis.
- To support the U.S. Food and Drug Administration's (FDA) Animal Rule for product efficacy evaluation.
- To understand the pathophysiology of chronic Brucella melitensis aerosol infection in RMs.
Main Methods:
- Two study phases: dose escalation and natural history over 8 weeks.
- Aerosol challenge with Brucella melitensis at targeted doses.
- Monitoring of clinical signs, blood cultures, seroconversion, inflammatory markers, and histopathology.
Main Results:
- Infected RMs developed fevers, positive blood cultures, and bacterial tissue burdens.
- Seroconversion occurred 14-21 days post-challenge in 80% of animals.
- Elevated liver enzymes, C-reactive protein, neopterin, and splenomegaly were observed.
- Histopathology confirmed Brucella lesions in multiple organs (liver, kidney, lung, spleen).
Conclusions:
- Rhesus macaques exhibit a disease progression analogous to human brucellosis.
- The RM is a suitable model for inhalational brucellosis.
- This model can be used to evaluate the efficacy of vaccines and therapeutics against Brucella melitensis.
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