Blocking IL-17a Signaling Decreases Lung Inflammation and Improves Alveolarization in Experimental Bronchopulmonary
Meagan Goates1, Amrit Shrestha1, Shyam Thapa1
1Division of Neonatology, Department of Pediatrics, Baylor College of Medicine, Houston, Texas.
Insights
Blocking the inflammatory cytokine IL-17a reduces lung damage in a mouse model of Bronchopulmonary dysplasia (BPD). This finding suggests IL-17a signaling inhibition may be a therapeutic strategy for BPD in preterm infants.
Area of Science:
- Neonatal immunology
- Pulmonary medicine
- Inflammatory disease research
Background:
- Bronchopulmonary dysplasia (BPD) is a prevalent chronic lung disease in preterm infants, often leading to long-term health issues.
- Inflammatory processes are key contributors to BPD development.
- The specific role of the pro-inflammatory cytokine IL-17a in BPD pathogenesis remains largely unknown.
Purpose of the Study:
- To investigate the role of IL-17a in lipopolysaccharide (LPS)-induced experimental BPD in neonatal mice.
- To determine if blocking IL-17a signaling can mitigate LPS-mediated lung injury and BPD development.
Main Methods:
- Neonatal wild-type mice were exposed to LPS or saline during the saccular lung phase.
- Pulmonary IL-17a expression and cellular sources (including γδ T cells) were analyzed.
- Mice were treated with IL-17a blocking antibody or isotype control during LPS exposure.
- Lung inflammatory markers, alveolarization, vascularization, cell proliferation, and apoptosis were quantified.
Main Results:
- LPS exposure increased pulmonary IL-17a levels and IL-17a+, IL-22+ cells, primarily from γδ T cells.
- Blocking IL-17a significantly reduced LPS-induced alveolar simplification, apoptosis, and inhibited cell proliferation.
- STAT1 activation and IL-6 levels were lower in LPS-exposed mice treated with IL-17a blocking antibody compared to isotype control.
Conclusions:
- IL-17a signaling blockade effectively reduces experimental BPD in a mouse model.
- These findings highlight IL-17a as a potential therapeutic target for preventing or treating BPD in premature infants.
Abstract:
Bronchopulmonary dysplasia (BPD) is the most common chronic lung disease of preterm infants that is associated with life-long morbidities. Inflammatory insults contribute to BPD pathogenesis. Although the proinflammatory cytokine, IL-17a, plays a role in various neonatal inflammatory disorders, its role in BPD pathogenesis is unclear. To test the hypothesis that blocking IL-17a signaling decreases lipopolysaccharide (LPS)-mediated experimental BPD in neonatal mice, wild-type mice were injected intraperitoneally with phosphate-buffered saline or LPS during the saccular lung developmental phase. Pulmonary IL-17a expression was determined by enzyme-linked immunosorbent assay and by flow cytometry. LPS-injected mice had higher pulmonary IL-17a protein levels and IL-17a+ and IL-22+ cells. γδ T cells, followed by non-T lymphoid cells, were the primary producers of IL-17a. Wild-type mice were then injected intraperitoneally with isotype antibody (Ab) or IL-17a Ab, while they were treated with phosphate-buffered saline or LPS, followed by quantification of lung inflammatory markers, alveolarization, vascularization, cell proliferation, and apoptosis. LPS-mediated alveolar simplification, apoptosis, and cell proliferation inhibition were significantly greater in mice treated with isotype Ab than in those treated with IL-17a Ab. Furthermore, STAT1 activation and IL-6 levels were significantly greater in LPS-exposed mice treated with isotype Ab than in those treated with IL-17a Ab. The study results indicate that blocking IL-17a signaling decreases LPS-mediated experimental BPD.
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