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Updated: Aug 10, 2026

Isolation and In Vitro Culture of Murine and Human Alveolar Macrophages
Published on: April 20, 2018
Resident alveolar macrophages are replaced by recruited monocytes in response to endotoxin-induced lung inflammation
Ulrich A Maus1, Simeon Janzen, Gerhard Wall
1Laboratory for Experimental Lung Research, Hannover School of Medicine, Feodor-Lynen-Strasse 21, Hannover 30625, Germany. Maus.Ulrich@mh-hannover.de
Abstract:
In the acute respiratory distress syndrome, recruitment of peripheral blood monocytes results in expansion of the total pool of resident alveolar macrophages. The fate of resident macrophages, or whether recruited monocytes are selectively eliminated from the alveolar airspace or differentiate into resident alveolar macrophages during the resolving phase of inflammation, has not been determined. Here, we analyzed the kinetics of resident and recruited macrophage turnover within the alveolar airspace of untreated and LPS-challenged mice. Using bone marrow chimeric CD45.2 mice that were generated by lethal irradiation of CD45.2 alloantigen-expressing recipient mice and bone marrow transplantation from CD45.1 alloantigen-expressing donor mice, we employed a flow cytometric approach to distinguish recipient from donor-type macrophages in bronchoalveolar lavage fluids. Our data show that resident alveolar macrophages of untreated chimeric CD45.2 mice are very slowly replaced by constitutively immigrating CD45.1 positive monocytes, resulting in a replacement rate of approximately 40% by 1 yr. In contrast, more than 85% of the resident CD45.2 positive alveolar and lung homogenate macrophages were exchanged by donor CD45.1-expressing macrophages within 2 mo after treatment with Escherichia coli endotoxin (LPS). Importantly, fluorescence-activated cell sorter analysis of increased annexin V binding to both recipient and donor-type macrophages revealed increased apoptotic events to underlie this endotoxin-driven inflammatory macrophage turnover. Collectively, the data show that under baseline conditions the alveolar macrophage turnover exhibits very slow kinetics, whereas acute lung inflammation in response to treatment with LPS triggers a brisk acceleration of recruitment of monocytes that replace the resident alveolar macrophage population.
Insights
Alveolar macrophage turnover is slow normally but accelerates during acute lung inflammation. Lipopolysaccharide (LPS) triggers rapid monocyte recruitment, replacing resident macrophages through apoptosis.
Area of Science:
- Immunology
- Cell Biology
- Respiratory Medicine
Background:
- Alveolar macrophages are crucial for lung immunity.
- Their turnover dynamics during inflammation are poorly understood.
- Monocyte recruitment expands macrophage pools in acute respiratory distress syndrome.
Purpose of the Study:
- To investigate the kinetics of resident and recruited macrophage turnover in the alveolar airspace.
- To determine the fate of macrophages during acute lung inflammation.
- To elucidate the mechanisms of macrophage replacement.
Main Methods:
- Utilized bone marrow chimeric mice (CD45.1 and CD45.2) to distinguish macrophage origins.
- Employed flow cytometry to analyze bronchoalveolar lavage fluids.
- Assessed macrophage apoptosis using annexin V binding.
Main Results:
- Resident alveolar macrophages are replaced slowly (approx. 40% by 1 yr) under baseline conditions.
- Lipopolysaccharide (LPS) challenge led to rapid exchange (>85% within 2 mo) of resident macrophages by donor monocytes.
- LPS-induced macrophage turnover involves increased apoptosis in both resident and recruited cells.
Conclusions:
- Alveolar macrophage turnover exhibits very slow kinetics at baseline.
- Acute lung inflammation, triggered by LPS, rapidly accelerates monocyte recruitment and replacement of resident macrophages.
- Apoptosis plays a key role in endotoxin-driven inflammatory macrophage turnover.
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