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Bacterial-derived Neutrophilic Inflammation Drives Lung Remodeling in a Mouse Model of Chronic Obstructive Pulmonary
Bradley W Richmond1, Rui-Hong Du1, Wei Han1
11 Department of Medicine, Division of Allergy, Pulmonary, and Critical Care Medicine.
Abstract:
Loss of secretory IgA is common in the small airways of patients with chronic obstructive pulmonary disease and may contribute to disease pathogenesis. Using mice that lack secretory IgA in the airways due to genetic deficiency of polymeric Ig receptor (pIgR-/- mice), we investigated the role of neutrophils in driving the fibrotic small airway wall remodeling and emphysema that develops spontaneously in these mice. By flow cytometry, we found an increase in the percentage of neutrophils among CD45+ cells in the lungs, as well as an increase in total neutrophils, in pIgR-/- mice compared with wild-type controls. This increase in neutrophils in pIgR-/- mice was associated with elastin degradation in the alveolar compartment and around small airways, along with increased collagen deposition in small airway walls. Neutrophil depletion using anti-Ly6G antibodies or treatment with broad-spectrum antibiotics inhibited development of both emphysema and small airway remodeling, suggesting that airway bacteria provide the stimulus for deleterious neutrophilic inflammation in this model. Exogenous bacterial challenge using lysates prepared from pathogenic and nonpathogenic bacteria worsened neutrophilic inflammation and lung remodeling in pIgR-/- mice. This phenotype was abrogated by antiinflammatory therapy with roflumilast. Together, these studies support the concept that disruption of the mucosal immune barrier in small airways contributes to chronic obstructive pulmonary disease progression by allowing bacteria to stimulate chronic neutrophilic inflammation, which, in turn, drives progressive airway wall fibrosis and emphysematous changes in the lung parenchyma.
Insights
Loss of secretory IgA in airways allows bacteria to trigger neutrophilic inflammation, driving small airway remodeling and emphysema in chronic obstructive pulmonary disease (COPD). This highlights a key mechanism in COPD pathogenesis.
Area of Science:
- Immunology
- Pulmonary Medicine
- Pathogenesis of COPD
Background:
- Secretory IgA deficiency is common in chronic obstructive pulmonary disease (COPD) airways.
- This deficiency may contribute to disease progression.
- The role of neutrophils in COPD pathogenesis warrants further investigation.
Purpose of the Study:
- To investigate the role of neutrophils in fibrotic small airway remodeling and emphysema.
- To explore the impact of secretory IgA loss on lung pathology in a mouse model.
- To identify bacterial triggers for neutrophilic inflammation in COPD.
Main Methods:
- Utilized polymeric Ig receptor knockout (pIgR-/-) mice lacking airway secretory IgA.
- Employed flow cytometry to quantify lung neutrophils.
- Administered neutrophil depletion antibodies (anti-Ly6G) and broad-spectrum antibiotics.
- Challenged mice with bacterial lysates and treated with roflumilast.
Main Results:
- pIgR-/- mice exhibited increased lung neutrophils, elastin degradation, and collagen deposition.
- Neutrophil depletion and antibiotics prevented emphysema and airway remodeling.
- Bacterial challenge exacerbated lung pathology in pIgR-/- mice.
- Roflumilast treatment abrogated the observed phenotype.
Conclusions:
- Disruption of the airway mucosal immune barrier allows bacteria to stimulate neutrophilic inflammation.
- This chronic inflammation drives progressive small airway fibrosis and emphysema in COPD.
- Targeting bacterial stimuli and neutrophilic inflammation may offer therapeutic strategies for COPD.
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