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Updated: Jul 13, 2026

Isolation of Mouse Lung Dendritic Cells
Published on: November 22, 2011
Controls for lung dendritic cell maturation and migration during respiratory viral infection
Mitchell H Grayson1, Madeleine S Ramos, Michelle M Rohlfing
1Division of Allergy and Immunology, Washington University School of Medicine, St. Louis, MO 63110, USA. wheeze@allergist.com
Abstract:
Dendritic cells are ideally suited to orchestrate the innate and adaptive immune responses to infection, but we know little about how these cells respond to infection with common respiratory viruses. Paramyxoviral infections are the most frequent cause of serious respiratory illness in childhood and are associated with an increased risk of asthma. We therefore used a high-fidelity mouse model of paramyxoviral respiratory infection triggered by Sendai virus to examine the response of conventional and plasmacytoid dendritic cells (cDCs and pDCs, respectively) in the lung. We found that pDCs are scarce at baseline but become the predominant population of lung dendritic cells during infection. This recruitment allows for a source of IFN-alpha locally at the site of infection. In contrast, cDCs rapidly differentiate into myeloid cDCs and begin to migrate from the lung to draining lymph nodes within 2 h after viral inoculation. These events cause the number of lung cDCs to decrease rapidly and remain decreased at the site of viral infection. Maturation and migration of lung cDCs depends on Ccl5 and Ccr5 signals because these events are significantly impaired in Ccl5(-/-) and Ccr5(-/-) mice. cDCs failure to migrate to draining lymph nodes in Ccl5(-/-) or Ccr5(-/-) mice is associated with impaired up-regulation of CCR7 that would normally direct this process. Our results indicate that pDCs and cDCs respond distinctly to respiratory paramyxoviral infection with patterns of movement that should serve to coordinate the innate and adaptive immune responses, respectively.
Insights
Plasmacytoid dendritic cells (pDCs) dominate the lungs during paramyxovirus infection, providing local interferon-alpha. Conventional dendritic cells (cDCs) rapidly migrate to lymph nodes, coordinating adaptive immunity.
Area of Science:
- Immunology
- Virology
- Respiratory Medicine
Background:
- Dendritic cells (DCs) are crucial for immune responses to infection.
- Little is known about DC responses to common respiratory viruses.
- Paramyxoviruses cause severe childhood respiratory illness and asthma risk.
Purpose of the Study:
- To investigate the distinct responses of conventional (cDCs) and plasmacytoid (pDCs) dendritic cells in the lung during paramyxoviral respiratory infection.
- To elucidate the mechanisms governing DC migration and function during viral infection.
Main Methods:
- Utilized a high-fidelity mouse model of Sendai virus-induced paramyxoviral respiratory infection.
- Analyzed DC populations (cDCs and pDCs) in the lung and draining lymph nodes.
- Investigated the role of Ccl5 and Ccr5 signaling in DC migration using knockout mouse models (Ccl5(-/-) and Ccr5(-/-)).
Main Results:
- pDCs, initially scarce, become the predominant lung DC population during infection, providing local IFN-alpha.
- cDCs rapidly differentiate and migrate from the lung to draining lymph nodes within 2 hours.
- cDC migration and maturation are dependent on Ccl5 and Ccr5 signaling, with impaired CCR7 upregulation in knockout mice.
- Lung cDC numbers decrease significantly during infection.
Conclusions:
- pDCs and cDCs exhibit distinct migratory patterns in response to respiratory paramyxoviral infection.
- These differential responses are critical for orchestrating innate (pDCs) and adaptive (cDCs) immune mechanisms.
- Ccl5/Ccr5 signaling is essential for cDC maturation and migration to lymph nodes, influencing adaptive immunity.
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