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Published on: April 21, 2015
Host immune response and acute disease in a zebrafish model of Francisella pathogenesis
Lucia N Vojtech1, George E Sanders, Carla Conway
1Interdisciplinary Program in Pathobiology, University of Washington, Seattle, Washington 98195, USA.
Abstract:
Members of the bacterial genus Francisella are highly virulent and infectious pathogens. New models to study Francisella pathogenesis in evolutionarily distinct species are needed to provide comparative insight, as the mechanisms of host resistance and pathogen virulence are not well understood. We took advantage of the recent discovery of a novel species of Francisella to establish a zebrafish/Francisella comparative model of pathogenesis and host immune response. Adult zebrafish were susceptible to acute Francisella-induced disease and suffered mortality in a dose-dependent manner. Using immunohistochemical analysis, we localized bacterial antigens primarily to lymphoid tissues and livers of zebrafish following infection by intraperitoneal injection, which corresponded to regions of local cellular necrosis. Francisella sp. bacteria replicated rapidly in these tissues beginning 12 h postinfection, and bacterial titers rose steadily, leveled off, and then decreased by 7 days postinfection. Zebrafish mounted a significant tissue-specific proinflammatory response to infection as measured by the upregulation of interleukin-1beta (IL-1beta), gamma interferon, and tumor necrosis factor alpha mRNA beginning by 6 h postinfection and persisting for up to 7 days postinfection. In addition, exposure of zebrafish to heat-killed bacteria demonstrated that the significant induction of IL-1beta was highly specific to live bacteria. Taken together, the pathology and immune response to acute Francisella infection in zebrafish share many features with those in mammals, highlighting the usefulness of this new model system for addressing both general and specific questions about Francisella host-pathogen interactions via an evolutionary approach.
Insights
A new zebrafish model reveals how Francisella bacteria cause disease. Zebrafish show immune responses similar to mammals, aiding the study of Francisella pathogenesis and host resistance.
Area of Science:
- Microbiology
- Immunology
- Comparative Pathology
Background:
- Francisella bacteria are virulent pathogens, but mechanisms of host resistance and virulence are not fully understood.
- Novel models are needed to study Francisella pathogenesis across different species for comparative insights.
Purpose of the Study:
- To establish a novel zebrafish/Francisella comparative model for studying pathogenesis and host immune response.
- To investigate the susceptibility of adult zebrafish to acute Francisella infection.
Main Methods:
- Adult zebrafish were infected with Francisella sp. via intraperitoneal injection.
- Immunohistochemistry was used to localize bacterial antigens and assess tissue damage.
- Bacterial replication and host immune response (cytokine mRNA levels) were quantified over time.
Main Results:
- Zebrafish exhibited dose-dependent mortality and susceptibility to acute Francisella disease.
- Francisella replicated rapidly in lymphoid tissues and livers, causing necrosis.
- Zebrafish mounted a significant, live-bacteria-specific proinflammatory response, including upregulation of IL-1beta, IFN-gamma, and TNF-alpha.
Conclusions:
- The zebrafish model effectively mimics key aspects of Francisella pathogenesis and immune response seen in mammals.
- This model provides a valuable tool for evolutionary approaches to understanding Francisella host-pathogen interactions.
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