Eosinophil-Associated Innate IL-17 Response Promotes Aspergillus fumigatus Lung Pathology
Nathália Luísa Sousa de Oliveira Malacco1, Milene Alvarenga Rachid2, Isabella Luisa da Silva Gurgel1
1Centro de Pesquisa e Desenvolvimento de Fármacos, Instituto de Ciências Biológicas, Departamento de Biologia Geral, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil.
Abstract:
Aspergillus fumigatus is a common widespread microorganism with environmental, biological and clinical relevance. After inhalation, swollen conidia can germinate, colonize and invade pulmonary tissues. Eosinophils have been described as key cells in A. fumigatus lung infection. However, their specific role in protecting or damaging lung tissue as well as their relatioship among different A. fumigatus strains is poorly understood. Previously, it has been reported that eosinophils are able to produce IL-17 and mediate an innate response that protected mice from infection using Af293 and CEA10 strains. Here, we have developed a set of new experiments with the CEA17-derived A1163 strain of A. fumigatus. Using ΔdblGATA1 mice, we demonstrate that eosinophils produce IL-17 and are involved in control of neutrophil, macrophage and lymphocyte recruitment. We found that eosinophils also induce high levels of cytokines and chemokines, generating an intense inflammatory process. Eosinophils are responsible for increased pulmonary dysfunction and elevated lethality rates in mice. Curiously, fungal burden was not affected. To address the role of IL-17 signaling, pharmacological inhibition of this mediator in the airways with anti-IL-17 antibody was able to reduce inflammation in the airways and protect infected mice. In conclusion, our results demonstrate that eosinophils control IL-17-mediated response and contribute to lung pathology after A. fumigatus infection. Therefore, eosinophils may represent a potential target for controlling exacerbated inflammation and prevent tissue damage during this fungal infection.
Insights
Eosinophils exacerbate lung damage and mortality in Aspergillus fumigatus infections by driving IL-17-mediated inflammation. Targeting this response may prevent tissue damage in fungal infections.
Area of Science:
- Immunology
- Mycology
- Pulmonary Medicine
Background:
- Aspergillus fumigatus is a common fungus causing lung infections.
- Eosinophils are key cells in these infections, but their precise role is unclear.
- Previous studies suggested eosinophils protect against certain fungal strains.
Purpose of the Study:
- To investigate the role of eosinophils in lung pathology caused by the A1163 strain of Aspergillus fumigatus.
- To determine the involvement of IL-17 signaling in eosinophil-mediated responses.
- To assess the impact of eosinophils on immune cell recruitment and lung function.
Main Methods:
- Utilized ΔdblGATA1 mice to study eosinophil function.
- Administered anti-IL-17 antibody to assess the role of IL-17 signaling.
- Monitored immune cell infiltration, cytokine/chemokine levels, fungal burden, lung function, and survival rates.
Main Results:
- Eosinophils produced IL-17, controlling immune cell recruitment and inducing significant inflammation.
- Eosinophils led to increased pulmonary dysfunction and mortality, without affecting fungal burden.
- Inhibition of IL-17 signaling reduced airway inflammation and protected infected mice.
Conclusions:
- Eosinophils drive IL-17-mediated responses contributing to lung pathology in Aspergillus fumigatus infection.
- Eosinophils worsen lung damage and lethality, independent of fungal load.
- Targeting eosinophil-driven IL-17 responses could be a therapeutic strategy for fungal lung infections.
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