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Author Spotlight: Investigating the Pathophysiology of Eosinophilic Esophagitis
Published on: May 10, 2024
Activated eosinophils in early life impair lung development and promote long-term lung damage
April L Raftery1, Caitlin A O'Brien1, Ali Shad1
1Department of Immunology, School of Translational Medicine, Monash University, Melbourne, Victoria, Australia.
Insights
Activated eosinophils during early lung development impair lung growth and promote chronic inflammation. Targeting these eosinophils can alleviate long-term lung damage and disease.
Area of Science:
- Immunology
- Pulmonary Medicine
- Developmental Biology
Background:
- Type 2 immune responses are linked to lung inflammation and altered lung development.
- Neonatal lung disease risk is increased by prematurity and respiratory infections.
- The role of eosinophils in neonatal lung disease is not well understood.
Purpose of the Study:
- To investigate the role of eosinophils in neonatal lung development and chronic lung disease.
- To assess the impact of increased eosinophil activity on lung development and pathology.
Main Methods:
- Generated mice with eosinophil-specific deletion of SH2 domain-containing inositol 5' phosphatase-1.
- Analyzed lung development, inflammation, and pathology in genetically modified mice.
- Conducted bone marrow chimera studies and eosinophil depletion experiments.
Main Results:
- Increased pulmonary eosinophils led to impaired lung development, airspace enlargement, and fibrosis.
- Activated alveolar macrophages (AMφ) and multinucleated giant cells were observed.
- Eosinophil depletion during alveolarization reduced inflammation and lung pathology.
- SH2 domain-containing inositol 5' phosphatase-1-deficient eosinophils exacerbated existing inflammation but did not initiate it in adult mice.
Conclusions:
- Activated eosinophils during lung alveolarization aggravate alveolar macrophages (AMφ) and promote sustained inflammation.
- Eosinophil activity during early development contributes to long-lasting lung pathology.
- Eosinophils play a critical, intrinsic role in neonatal lung disease development.
Abstract:
Exaggeration of type 2 immune responses promotes lung inflammation and altered lung development; however, eosinophils, despite expansion in the postnatal lung, have not been specifically assessed in the context of neonatal lung disease. Furthermore, early life factors including prematurity and respiratory infection predispose infants to chronic obstructive pulmonary disease later in life. To assess eosinophils in the developing lung and how they may contribute to chronic lung disease, we generated mice harboring eosinophil-specific deletion of the negative regulatory enzyme SH2 domain-containing inositol 5' phosphatase-1. This increased the activity and number of pulmonary eosinophils in the developing lung, which was associated with impaired lung development, expansion of activated alveolar macrophages (AMφ), multinucleated giant cell formation, enlargement of airspaces, and fibrosis. Despite regression of eosinophils following completion of lung development, AMφ-dominated inflammation persisted, alongside lung damage. Bone marrow chimera studies showed that SH2 domain-containing inositol 5' phosphatase-1-deficient eosinophils were not sufficient to drive inflammatory lung disease in adult steady-state mice but once inflammation and damage were present, it could not be resolved. Depletion of eosinophils during alveolarization alleviated pulmonary inflammation and lung pathology, demonstrating an eosinophil-intrinsic effect. These results show that the presence of activated eosinophils during alveolarization aggravates AMφs and promotes sustained inflammation and long-lasting lung pathology.
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