Studying the Effects of Granulocyte-Macrophage Colony-Stimulating Factor on Fetal Lung Macrophages During the
Fook-Choe Cheah1, Pietro Presicce2,3, Tian-Lee Tan1
1Neonatal Intensive Care Unit, Department of Paediatrics, Faculty of Medicine, Universiti Kebangsaan Malaysia Medical Centre, Hospital Canselor Tuanku Muhriz, Kuala Lumpur, Malaysia.
Abstract:
Background: Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a pro-inflammatory cytokine that is increased in the amniotic fluid in chorioamnionitis and elevated in the fetal lung with endotoxin exposure. Although GM-CSF has a pivotal role in fetal lung development, it stimulates pulmonary macrophages and is associated with the development of bronchopulmonary dysplasia (BPD). How antenatal GM-CSF results in recruitment of lung macrophage leading to BPD needs further elucidation. Hence, we used a transgenic and knock-out mouse model to study the effects of GM-CSF focusing on the fetal lung macrophage. Methods: Using bitransgenic (BTg) mice that conditionally over-expressed pulmonary GM-CSF after doxycycline treatment, and GM-CSF knock-out (KO) mice with no GM-CSF expression, we compared the ontogeny and immunophenotype of lung macrophages in BTg, KO and control mice at various prenatal and postnatal time points using flow cytometry and immunohistology. Results: During fetal life, compared to controls, BTg mice over-expressing pulmonary GM-CSF had increased numbers of lung macrophages that were CD68+ and these were primarily located in the interstitium rather than alveolar spaces. The lung macrophages that accumulated were predominantly CD11b+F4/80+ indicating immature macrophages. Conversely, lung macrophages although markedly reduced, were still present in GM-CSF KO mice. Conclusion: Increased exposure to GM-CSF antenatally, resulted in accumulation of immature macrophages in the fetal lung interstitium. Absence of GM-CSF did not abrogate but delayed the transitioning of interstitial macrophages. Together, these results suggest that other perinatal factors may be involved in modulating the maturation of alveolar macrophages in the developing fetal lung.
Insights
Increased antenatal granulocyte-macrophage colony-stimulating factor (GM-CSF) leads to immature lung macrophages. GM-CSF absence delays, but doesn't prevent, macrophage development, suggesting other factors influence lung macrophage maturation.
Area of Science:
- Pulmonary immunology
- Developmental biology
- Neonatal respiratory health
Background:
- Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a pro-inflammatory cytokine implicated in chorioamnionitis and fetal lung inflammation.
- Elevated GM-CSF in fetal lungs is linked to bronchopulmonary dysplasia (BPD) development.
- The precise mechanism by which antenatal GM-CSF drives lung macrophage recruitment and contributes to BPD requires further investigation.
Purpose of the Study:
- To investigate the role of GM-CSF in fetal lung macrophage development using a mouse model.
- To elucidate how antenatal GM-CSF exposure influences the accumulation and maturation of lung macrophages.
- To compare macrophage ontogeny and immunophenotype in GM-CSF overexpressing and knockout settings.
Main Methods:
- Utilized bitransgenic (BTg) mice for conditional pulmonary GM-CSF overexpression and GM-CSF knockout (KO) mice.
- Analyzed lung macrophage populations (ontogeny and immunophenotype) via flow cytometry and immunohistology.
- Examined mice at various prenatal and postnatal time points.
Main Results:
- GM-CSF overexpression in BTg mice led to increased interstitial lung macrophages (CD68+) during fetal development.
- Accumulated macrophages in BTg mice were predominantly immature (CD11b+F4/80+).
- GM-CSF KO mice showed reduced but present lung macrophages, with delayed interstitial macrophage transition.
Conclusions:
- Antenatal GM-CSF exposure promotes the accumulation of immature macrophages in the fetal lung interstitium.
- The absence of GM-CSF delays, rather than eliminates, the maturation of interstitial macrophages.
- These findings suggest that additional perinatal factors play a role in regulating alveolar macrophage maturation in the developing fetal lung.
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