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The common γ-chain cytokine IL-7 promotes immunopathogenesis during fungal asthma
Kristen M Reeder1, Chad W Dunaway1, Jonathan P Blackburn1
1Department of Medicine, University of Alabama at Birmingham, Birmingham, AL, USA.
Abstract:
Asthmatics sensitized to fungi are reported to have more severe asthma, yet the immunopathogenic pathways contributing to this severity have not been identified. In a pilot assessment of human asthmatics, those subjects sensitized to fungi demonstrated elevated levels of the common γ-chain cytokine IL-7 in lung lavage fluid, which negatively correlated with the lung function measurement PC20. Subsequently, we show that IL-7 administration during experimental fungal asthma worsened lung function and increased the levels of type 2 cytokines (IL-4, IL-5, IL-13), proallergic chemokines (CCL17, CCL22) and proinflammatory cytokines (IL-1α, IL-1β). Intriguingly, IL-7 administration also increased IL-22, which we have previously reported to drive immunopathogenic responses in experimental fungal asthma. Employing IL22CreR26ReYFP reporter mice, we identified γδ T cells, iNKT cells, CD4 T cells and ILC3s as sources of IL-22 during fungal asthma; however, only iNKT cells were significantly increased after IL-7 administration. IL-7-induced immunopathogenesis required both type 2 and IL-22 responses. Blockade of IL-7Rα in vivo resulted in attenuated IL-22 production, lower CCL22 levels, decreased iNKT cell, CD4 T-cell and eosinophil recruitment, yet paradoxically increased dynamic lung resistance. Collectively, these results suggest a complex role for IL-7 signaling in allergic fungal asthma.
Insights
Interleukin-7 (IL-7) exacerbates fungal asthma by increasing type 2 and IL-22 cytokines. Blocking IL-7Rα impacts immune cell recruitment and lung function, revealing IL-7
Area of Science:
- Immunology
- Pulmonology
- Allergy Research
Background:
- Fungal sensitization is linked to severe asthma, but underlying mechanisms remain unclear.
- Elevated IL-7 levels in asthmatics correlate with reduced lung function.
Purpose of the Study:
- To investigate the role of IL-7 in the immunopathogenesis of fungal asthma.
- To identify the cellular sources and pathways involved in IL-7-driven exacerbation.
Main Methods:
- Pilot study in human asthmatics measuring IL-7 and lung function.
- Experimental fungal asthma model in mice with IL-7 administration.
- Analysis of cytokine, chemokine, and immune cell profiles.
- IL-7Rα blockade experiments in vivo.
- Reporter mice to track IL-22-producing cells.
Main Results:
- IL-7 administration worsened lung function and increased type 2 and IL-22 cytokines in experimental fungal asthma.
- IL-7 increased IL-22 production, primarily from iNKT cells.
- IL-7-induced immunopathogenesis depended on both type 2 and IL-22 responses.
- IL-7Rα blockade reduced IL-22 and immune cell recruitment but paradoxically increased lung resistance.
Conclusions:
- IL-7 signaling plays a complex role in allergic fungal asthma.
- IL-7 contributes to disease severity through intertwined type 2 and IL-22 pathways.
- Targeting IL-7Rα may have multifaceted effects on asthma pathology.
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