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Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
IL-10 induction by Bordetella parapertussis limits a protective IFN-gamma response
Daniel N Wolfe1, Alexia T Karanikas, Sara E Hester
1Department of Veterinary and Biomedical Sciences, Pennsylvania State University, University Park, PA 16802, USA.
Abstract:
Bordetella parapertussis causes the prolonged coughing illness known as pertussis or whooping cough, persisting for weeks within the respiratory tracts of infected hosts but inducing a very poor T cell response relative to that induced by Bordetella pertussis, the more common cause of pertussis. In this study, we examine the contributions of cytokines involved in the clearance of B. parapertussis and immunomodulation that delays effective clearance. The slow elimination of this pathogen from the respiratory tracts of mice coincides with the gradual accumulation of CD4(+) T cells in the lungs and B. parapertussis-responsive IFN-gamma-producing cells in the spleen. IFN-gamma-deficient mice were defective in the accumulation of leukocytes in lungs and in clearance of B. parapertussis from the lungs. In vitro B. parapertussis-stimulated macrophages produced IL-10, which inhibited the generation of the IFN-gamma response that is required for protection in vivo. As compared with wild-type mice, IL-10-deficient mice produced significantly higher levels of IFN-gamma, had higher numbers of leukocytes accumulated in the lungs, and cleared B. parapertussis more rapidly. Together, these data indicate that B. parapertussis induces the production of IL-10, which facilitates its persistence within infected hosts by limiting a protective IFN-gamma response.
Insights
Bordetella parapertussis causes whooping cough and persists by producing IL-10. This cytokine limits the protective IFN-gamma response, hindering pathogen clearance in infected hosts.
Area of Science:
- Immunology
- Microbiology
- Respiratory Infections
Background:
- Bordetella parapertussis causes prolonged whooping cough with a weak T cell response.
- Pathogen persistence in respiratory tracts contrasts with Bordetella pertussis infections.
Purpose of the Study:
- Investigate cytokines involved in B. parapertussis clearance.
- Examine immunomodulation mechanisms delaying pathogen elimination.
Main Methods:
- Utilized mouse models to study B. parapertussis infection dynamics.
- Assessed immune cell accumulation (CD4+ T cells, leukocytes) and cytokine production (IFN-gamma, IL-10) in lungs and spleen.
- Employed IFN-gamma-deficient and IL-10-deficient mice for comparative analysis.
Main Results:
- Slow B. parapertussis clearance correlated with CD4+ T cell and IFN-gamma+ cell accumulation.
- IFN-gamma deficiency impaired leukocyte accumulation and pathogen clearance.
- B. parapertussis-stimulated macrophages produced IL-10, inhibiting protective IFN-gamma responses.
- IL-10 deficiency led to increased IFN-gamma, leukocyte influx, and faster B. parapertussis clearance.
Conclusions:
- B. parapertussis induces IL-10 production.
- IL-10 limits protective IFN-gamma responses, facilitating pathogen persistence.
- Targeting IL-10 may enhance immune clearance of B. parapertussis.
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