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Iron in airway macrophages and infective exacerbations of chronic obstructive pulmonary disease
Terence Ho1,2, Matthew Nichols3, Gayatri Nair4
1Department of Medicine, McMaster University, Hamilton, Canada. hot4@mcmaster.ca.
Background:
Excess pulmonary iron has been implicated in the pathogenesis of lung disease, including asthma and COPD. An association between higher iron content in sputum macrophages and infective exacerbations of COPD has previously been demonstrated.
Objectives:
To assess the mechanisms of pulmonary macrophage iron sequestration, test the effect of macrophage iron-loading on cellular immune function, and prospectively determine if sputum hemosiderin index can predict infectious exacerbations of COPD.
Methods:
Intra- and extracellular iron was measured in cell-line-derived and in freshly isolated sputum macrophages under various experimental conditions including treatment with exogenous IL-6 and hepcidin. Bacterial uptake and killing were compared in the presence or absence of iron-loading. A prospective cohort of COPD patients with defined sputum hemosiderin indices were monitored to determine the annual rate of severe infectious exacerbations.
Results:
Gene expression studies suggest that airway macrophages have the requisite apparatus of the hepcidin-ferroportin axis. IL-6 and hepcidin play roles in pulmonary iron sequestration, though IL-6 appears to exert its effect via a hepcidin-independent mechanism. Iron-loaded macrophages had reduced uptake of COPD-relevant organisms and were associated with higher growth rates. Infectious exacerbations were predicted by sputum hemosiderin index (β = 0.035, p = 0.035).
Conclusions:
We demonstrate in-vitro and population-level evidence that excess iron in pulmonary macrophages may contribute to recurrent airway infection in COPD. Specifically, IL-6-dependent iron sequestration by sputum macrophages may result in immune cell dysfunction and ultimately lead to increased frequency of infective exacerbation.
Insights
Excess iron in lung macrophages worsens COPD infections. Higher sputum iron predicts exacerbations, suggesting iron sequestration impairs immune function and increases infection risk in COPD patients.
Area of Science:
- Pulmonary immunology
- Respiratory medicine
- Iron metabolism
Background:
- Excess pulmonary iron is linked to lung diseases like asthma and COPD.
- Higher sputum macrophage iron content correlates with infective exacerbations in COPD.
Purpose of the Study:
- Investigate pulmonary macrophage iron sequestration mechanisms.
- Evaluate iron-loading effects on macrophage immune function.
- Determine if sputum hemosiderin index predicts infectious COPD exacerbations.
Main Methods:
- Measured intra- and extracellular iron in macrophages (cell-line and sputum).
- Assessed bacterial uptake and killing in iron-loaded vs. non-loaded macrophages.
- Monitored COPD patients for severe infectious exacerbations based on sputum hemosiderin index.
Main Results:
- Airway macrophages possess the hepcidin-ferroportin axis.
- IL-6 and hepcidin influence pulmonary iron sequestration; IL-6 acts independently.
- Iron-loaded macrophages showed reduced bacterial uptake and increased bacterial growth.
- Sputum hemosiderin index predicted infectious exacerbations (β = 0.035, p = 0.035).
Conclusions:
- In vitro and population data suggest excess pulmonary macrophage iron contributes to recurrent COPD infections.
- IL-6-dependent iron sequestration in sputum macrophages may impair immune function, increasing infection frequency.
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