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Published on: February 18, 2015
Th17 Cells Provide Mucosal Protection against Gastric Trypanosoma cruzi Infection
Catherine W Cai1,2, Christopher S Eickhoff1, Krystal A Meza1
1Division of Infectious Diseases, Allergy and Immunology, Department of Internal Medicine, Saint Louis University School of Medicine, Saint Louis, Missouri, USA.
Insights
Th17 cells protect against mucosal Chagas disease by inducing NADPH oxidase activity. This finding reveals a new defense mechanism against Trypanosoma cruzi infection, crucial for vaccine development.
Area of Science:
- Immunology
- Infectious Diseases
- Parasitology
Background:
- Chagas disease, caused by Trypanosoma cruzi, leads to significant morbidity.
- CD4+ T cells, particularly Th1 cells and IFN-γ, are vital for defense against T. cruzi.
- Th17 cells and IL-17A show protective roles in systemic T. cruzi infection, but their mucosal function is unknown.
Purpose of the Study:
- To investigate the protective role of Th17 cells and IL-17A in mucosal immunity against T. cruzi.
- To elucidate the mechanism of Th17 cell-mediated protection at the mucosal site of infection.
Main Methods:
- Used IL-17RA knockout mice to assess the role of IL-17A in orogastric infection.
- Reconstituted RAG1 KO mice with T. cruzi-specific Th17 cells for mucosal challenge studies.
- Performed in vitro macrophage infection assays with IL-17A neutralization and NADPH oxidase activity assessment.
Main Results:
- IL-17RA knockout mice exhibited high susceptibility to orogastric T. cruzi infection.
- Transferred Th17 cells significantly reduced stomach parasite burdens in challenged mice.
- Th17 cell-mediated protection was dependent on IL-17A and macrophage NADPH oxidase activity.
Conclusions:
- Th17 cells are crucial for protection against mucosal Trypanosoma cruzi infection.
- A novel mechanism of mucosal immunity involves IL-17A-induced macrophage NADPH oxidase activity.
- Findings offer insights for Chagas disease vaccine development and understanding Th17 cell functions.
Abstract:
Trypanosoma cruzi is the intracellular parasite of Chagas disease, a chronic condition characterized by cardiac and gastrointestinal morbidity. Protective immunity requires CD4+ T cells, and Th1 cells and gamma interferon (IFN-γ) are important players in host defense. More recently, Th17 cells and interleukin 17A (IL-17A) have been shown to exert protective functions in systemic T. cruzi infection. However, it remains unclear whether Th17 cells and IL-17A protect in the mucosa, the initial site of parasite invasion in many human cases. We found that IL-17RA knockout (KO) mice are highly susceptible to orogastric infection, indicating an important function for this cytokine in mucosal immunity to T. cruzi. To investigate the specific role of Th17 cells for mucosal immunity, we reconstituted RAG1 KO mice with T. cruzi-specific T cell receptor transgenic Th17 cells prior to orogastric T. cruzi challenges. We found that Th17 cells provided protection against gastric mucosal T. cruzi infection, indicated by significantly lower stomach parasite burdens. In vitro macrophage infection assays revealed that protection by Th17 cells is reduced with IL-17A neutralization or reversed by loss of macrophage NADPH oxidase activity. Consistently with this, mice lacking functional NADPH oxidase were not protected by Th17 cell transfer. These data are the first report that Th17 cells protect against mucosal T. cruzi infection and identify a novel protective mechanism involving the induction of NADPH oxidase activity by IL-17A. These studies provide important insights for Chagas vaccine development and, more broadly, increase our understanding of the diverse roles of Th17 cells in host defense.
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