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Isolation and In Vitro Culture of Murine and Human Alveolar Macrophages
Published on: April 20, 2018
Alveolar macrophage kinetics and multinucleated giant cell formation after lung injury
1Department of Pathology, University of Manitoba, Winnipeg, Canada.
Abstract:
Multinucleated giant cells (MGC) are a prominent feature of some chronic inflammatory states in the lung. These cells are formed by macrophage fusion, but how this process relates to the kinetics of alveolar macrophage (AM) production and proliferation is not clear. In this serial study, we compare AM kinetics and MGC formation after instilling carbon, silica, asbestos, bleomycin, and saline into the lungs of mice. Animals were killed up to 16 weeks later with [3H]thymidine injected 1 h before death. Counts of AM and MGC were carried out after bronchoalveolar lavage, and cell labeling was assessed by autoradiography. All test substances induced an inflammatory response with equal AM numbers recovered up to 2 weeks. Subsequently, the number returned to normal after carbon but remained elevated in the other groups. After carbon the lung structure was normal, there was no increase in AM label, and no MGC formed. Bleomycin-injected lungs progressed to fibrosis with only a brief, small increase in AM labeling and no MGC formation. After silica, and particularly asbestos, the lungs showed fibrosis, and many granulomas with large MGC were seen. Lavaged AM from these lungs showed a significant increase in DNA synthesis after 2 weeks, followed by higher numbers of MGC, none of which were labeled. Labeled AM tended to be free of particles, whereas MGC after 4 weeks contained many particles. The results indicate a relationship between AM proliferation and fusion, whereby AM growth appears to be prerequisite for cell infusion and MGC formation as a feature of granulomatous disease.
Insights
Multinucleated giant cells (MGC) form from macrophage fusion during chronic lung inflammation. Alveolar macrophage proliferation appears necessary for this fusion, particularly in granulomatous diseases like those caused by asbestos and silica.
Area of Science:
- Pulmonary immunology
- Cell biology
- Toxicology
Background:
- Multinucleated giant cells (MGC) are characteristic of chronic lung inflammation.
- The relationship between alveolar macrophage (AM) kinetics and MGC formation is not well understood.
Purpose of the Study:
- To investigate the kinetics of AM production and proliferation in relation to MGC formation.
- To compare the effects of different inhaled substances on AM and MGC dynamics.
Main Methods:
- Mice lungs were instilled with carbon, silica, asbestos, bleomycin, or saline.
- Animals were analyzed up to 16 weeks post-instillation.
- Alveolar macrophage counts, MGC counts, and [3H]thymidine labeling (autoradiography) were assessed.
Main Results:
- Carbon instillation led to normal AM numbers, no MGC, and no increased AM labeling.
- Silica and asbestos induced lung fibrosis, granulomas, MGC formation, and increased AM DNA synthesis.
- Labeled AM were particle-free, while MGC contained particles, suggesting fusion of newly proliferated AM.
Conclusions:
- AM proliferation is a prerequisite for cell fusion and MGC formation.
- MGC formation is a key feature of granulomatous lung diseases.
- The study clarifies the link between AM kinetics and MGC development in response to lung injury.
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