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Updated: May 3, 2026

Experimental Infection with Listeria monocytogenes as a Model for Studying Host Interferon-γ Responses
Published on: November 16, 2016
Type I interferons promote severe disease in a mouse model of lethal ehrlichiosis
Yubin Zhang1, Vinh Thai, Amanda McCabe
1Center for Immunology and Microbial Disease, Albany Medical College, Albany, New York, USA.
Abstract:
Human monocytic ehrlichiosis (HME) is caused by a tick-borne obligate intracellular pathogen of the order Rickettsiales. HME disease can range from mild to a fatal, toxic shock-like syndrome, yet the mechanisms regulating pathogenesis are not well understood. We define a central role for type I interferons (alpha interferon [IFN-α] and IFN-β) in severe disease in a mouse model of fatal ehrlichiosis caused by Ixodes ovatus Ehrlichia (IOE). IFN-α and IFN-β were induced by IOE infection but not in response to a less virulent strain, Ehrlichia muris. The major sources of type I IFNs during IOE infection were plasmacytoid dendritic cells and monocytes. Mice lacking the receptor for type I IFNs (Ifnar deficient) or neutralization of IFN-α and IFN-β resulted in a reduced bacterial burden. Ifnar-deficient mice exhibited significantly increased survival after IOE infection, relative to that of wild-type (WT) mice, that correlated with increased type II IFN (IFN-γ) production. Pathogen-specific antibody responses were also elevated in Ifnar-deficient mice, and this required IFN-γ. Remarkably, increased IFN-γ and IgM were not essential for protection in the absence of type I IFN signaling. The direct effect of type I IFNs on hematopoietic and nonhematopoietic cells was evaluated in bone marrow chimeric mice. We observed that chimeric mice containing Ifnar-deficient hematopoietic cells succumbed to infection early, whereas Ifnar-deficient mice containing WT hematopoietic cells exhibited increased survival, despite having a higher bacterial burden. These data demonstrate that IFN-α receptor signaling in nonhematopoietic cells is important for pathogenesis. Thus, type I IFNs are induced during a rickettsial infection in vivo and promote severe disease.
Insights
Type I interferons (IFN-α and IFN-β) drive severe disease in human monocytic ehrlichiosis. Blocking these interferons or their signaling pathways significantly improves survival by enhancing protective immune responses.
Area of Science:
- Immunology
- Infectious Diseases
- Microbiology
Background:
- Human monocytic ehrlichiosis (HME) is a severe tick-borne disease caused by Ehrlichia species.
- The pathogenesis of HME and the host immune response are not fully understood.
Purpose of the Study:
- To investigate the role of type I interferons (IFN-α and IFN-β) in the pathogenesis of a fatal mouse model of ehrlichiosis caused by Ixodes ovatus Ehrlichia (IOE).
Main Methods:
- Induction of IFN-α and IFN-β in response to IOE infection in mice.
- Evaluation of disease severity and bacterial burden in Ifnar-deficient mice and wild-type mice.
- Assessment of immune responses, including type II interferon (IFN-γ) and antibody production.
- Analysis using bone marrow chimeric mice to determine the cell-specific role of IFN-α receptor signaling.
Main Results:
- Type I interferons (IFN-α and IFN-β) were induced by virulent IOE but not by a less virulent strain.
- Mice lacking the type I interferon receptor (Ifnar-deficient) showed reduced bacterial burden and significantly increased survival.
- Increased IFN-γ production and elevated pathogen-specific antibody responses were observed in Ifnar-deficient mice.
- IFN-α receptor signaling in nonhematopoietic cells was crucial for promoting severe disease.
Conclusions:
- Type I interferons play a critical role in promoting severe disease during rickettsial infections like HME.
- Targeting type I interferon signaling could be a therapeutic strategy to combat severe ehrlichiosis.
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