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Eosinophils Contribute to Early Clearance of Pneumocystis murina Infection
Taylor Eddens1, Waleed Elsegeiny1, Michael P Nelson2
1Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15224; Richard King Mellon Foundation Institute for Pediatric Research, Children's Hospital of Pittsburgh of University of Pittsburgh Medical Center, Pittsburgh, PA 15224;
Abstract:
Pneumocystis pneumonia remains a common opportunistic infection in the diverse immunosuppressed population. One clear risk factor for susceptibility to Pneumocystis is a declining CD4(+) T cell count in the setting of HIV/AIDS or primary immunodeficiency. Non-HIV-infected individuals taking immunosuppressive drug regimens targeting T cell activation are also susceptible. Given the crucial role of CD4(+) T cells in host defense against Pneumocystis, we used RNA sequencing of whole lung early in infection in wild-type and CD4-depleted animals as an unbiased approach to examine mechanisms of fungal clearance. In wild-type mice, a strong eosinophil signature was observed at day 14 post Pneumocystis challenge, and eosinophils were increased in the bronchoalveolar lavage fluid of wild-type mice. Furthermore, eosinophilopoiesis-deficient Gata1(tm6Sho)/J mice were more susceptible to Pneumocystis infection when compared with BALB/c controls, and bone marrow-derived eosinophils had in vitro Pneumocystis killing activity. To drive eosinophilia in vivo, Rag1(-/-) mice were treated with a plasmid expressing IL-5 (pIL5) or an empty plasmid control via hydrodynamic injection. The pIL5-treated mice had increased serum IL-5 and eosinophilia in the lung, as well as reduced Pneumocystis burden, compared with mice treated with control plasmid. In addition, pIL5 treatment could induce eosinophilia and reduce Pneumocystis burden in CD4-depleted C57BL/6 and BALB/c mice, but not eosinophilopoiesis-deficient Gata1(tm6Sho)/J mice. Taken together, these results demonstrate that an early role of CD4(+) T cells is to recruit eosinophils to the lung and that eosinophils are a novel candidate for future therapeutic development in the treatment of Pneumocystis pneumonia in the immunosuppressed population.
Insights
CD4(+) T cells recruit eosinophils to the lungs, enhancing clearance of Pneumocystis pneumonia. Eosinophils show promise as a novel therapeutic target for this opportunistic infection in immunosuppressed individuals.
Area of Science:
- Immunology
- Infectious Diseases
- Pulmonology
Background:
- Pneumocystis pneumonia is a common opportunistic infection in immunosuppressed populations, including those with HIV/AIDS and primary immunodeficiencies.
- Declining CD4(+) T cell counts are a significant risk factor for Pneumocystis pneumonia susceptibility.
- Immunosuppressive therapies targeting T cell activation also increase risk.
Purpose of the Study:
- To investigate the mechanisms of fungal clearance in Pneumocystis pneumonia.
- To elucidate the role of CD4(+) T cells in host defense against Pneumocystis.
- To identify potential novel therapeutic targets for Pneumocystis pneumonia.
Main Methods:
- RNA sequencing of whole lung tissue in wild-type and CD4-depleted mice early in infection.
- Analysis of bronchoalveolar lavage fluid for immune cell populations.
- Assessment of Pneumocystis burden in genetically modified mice (Gata1(tm6Sho)/J) and treated mice (Rag1(-/-) with pIL5).
Main Results:
- Wild-type mice exhibited a strong eosinophil signature and increased eosinophils in bronchoalveolar lavage fluid.
- Eosinophilopoiesis-deficient mice were more susceptible to Pneumocystis infection, and eosinophils demonstrated in vitro killing activity.
- IL-5 treatment induced eosinophilia, reduced Pneumocystis burden in lungs, and this effect was dependent on CD4(+) T cells and eosinophilopoiesis.
Conclusions:
- CD4(+) T cells play an early role in recruiting eosinophils to the lung during Pneumocystis infection.
- Eosinophils possess Pneumocystis-killing activity and are crucial for fungal clearance.
- Eosinophils represent a novel therapeutic candidate for treating Pneumocystis pneumonia in immunosuppressed patients.
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