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Flow Cytometric Analysis for Identification of the Innate and Adaptive Immune Cells of Murine Lung
Published on: November 16, 2021
IκB kinase activity drives fetal lung macrophage maturation along a non-M1/M2 paradigm
Ashley N Stouch1, Rinat Zaynagetdinov1, Whitney J Barham1
1Department of Pediatrics, University of California, San Diego, La Jolla, CA 92093; Rady Children's Hospital, San Diego, CA 92123;Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, TN 37232;Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232;Department of Cancer Biology, Vanderbilt University School of Medicine, Nashville, TN 37232; andDepartment of Biostatistics, Vanderbilt University, Nashville, TN 37232.
Abstract:
In preterm infants, exposure to inflammation increases the risk of bronchopulmonary dysplasia, a chronic, developmental lung disease. Although macrophages are the key cells that initiate lung inflammation, less is known about lung macrophage phenotype and maturation. We hypothesized that fetal lung macrophages mature into distinct subpopulations during mouse development, and that activation could influence macrophage maturation. Expression of the fetal macrophage markers CD68, CD86, CD206, Ym1, fibrinogen-like protein 2, and indolamine-2, 3-dioxygenase was developmentally regulated, with each marker having different temporal patterns. Flow cytometry analysis showed macrophages within the fetal lung were less diverse than the distinctly separate subpopulations in newborn and adult lungs. Similar to adult alveolar macrophages, fetal lung macrophages responded to the TLR4 agonist LPS and the alternative activation cytokines IL-4 and IL-13. Using a macrophage-specific constitutively active IκB Kinase transgenic model (IKFM), we demonstrated that macrophage activation increased proinflammatory gene expression and reduced the response of fetal lung macrophages to IL-4 and IL-13. Activation also increased fetal lung macrophage proliferation. Fetal IKFM lungs contained increased percentages of more mature, CD11b(low)F4/80(high) cells that also expressed higher levels of the alternative activation markers CD204 and CD206. Development of fetal lung macrophages into mature alveolar macrophages may therefore include features of both proinflammatory and alternative activation paradigms.
Insights
Fetal lung macrophages mature into distinct types, with activation influencing their development. Understanding this process is key to preventing chronic lung disease in preterm infants.
Area of Science:
- Immunology
- Developmental Biology
- Pulmonology
Background:
- Inflammation in preterm infants is linked to bronchopulmonary dysplasia.
- Macrophages initiate lung inflammation, but their fetal development is poorly understood.
Purpose of the Study:
- To investigate fetal lung macrophage maturation and the impact of activation on their phenotype.
- To explore the role of macrophage subpopulations in lung development.
Main Methods:
- Analysis of macrophage marker expression (CD68, CD86, CD206, Ym1, etc.) during mouse lung development.
- Flow cytometry to assess macrophage diversity in fetal, newborn, and adult lungs.
- Utilizing a macrophage-specific transgenic model (IKFM) to study activation effects.
Main Results:
- Macrophage marker expression showed developmental regulation with distinct temporal patterns.
- Fetal lung macrophages responded to LPS, IL-4, and IL-13, similar to adult alveolar macrophages.
- Macrophage activation in IKFM model increased proinflammatory genes, reduced IL-4/IL-13 response, and promoted proliferation.
Conclusions:
- Fetal lung macrophage maturation is a dynamic process involving distinct subpopulations.
- Macrophage activation influences maturation, potentially impacting lung development and disease risk.
- Development into mature alveolar macrophages may integrate both pro-inflammatory and alternative activation pathways.
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