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Harvesting Murine Alveolar Macrophages and Evaluating Cellular Activation Induced by Polyanhydride Nanoparticles
Published on: June 8, 2012
Key Role of the Scavenger Receptor MARCO in Mediating Adenovirus Infection and Subsequent Innate Responses of
Mareike D Maler1,2,3, Peter J Nielsen1, Nicole Stichling4
1Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
Abstract:
The scavenger receptor MARCO is expressed in several subsets of naive tissue-resident macrophages and has been shown to participate in the recognition of various bacterial pathogens. However, the role of MARCO in antiviral defense is largely unexplored. Here, we investigated whether MARCO might be involved in the innate sensing of infection with adenovirus and recombinant adenoviral vectors by macrophages, which elicit vigorous immune responses in vivo Using cells derived from mice, we show that adenovirus infection is significantly more efficient in MARCO-positive alveolar macrophages (AMs) and in AM-like primary macrophage lines (Max Planck Institute cells) than in MARCO-negative bone marrow-derived macrophages. Using antibodies blocking ligand binding to MARCO, as well as gene-deficient and MARCO-transfected cells, we show that MARCO mediates the rapid adenovirus transduction of macrophages. By enhancing adenovirus infection, MARCO contributes to efficient innate virus recognition through the cytoplasmic DNA sensor cGAS. This leads to strong proinflammatory responses, including the production of interleukin-6 (IL-6), alpha/beta interferon, and mature IL-1α. These findings contribute to the understanding of viral pathogenesis in macrophages and may open new possibilities for the development of tools to influence the outcome of infection with adenovirus or adenovirus vectors.IMPORTANCE Macrophages play crucial roles in inflammation and defense against infection. Several macrophage subtypes have been identified with differing abilities to respond to infection with both natural adenoviruses and recombinant adenoviral vectors. Adenoviruses are important respiratory pathogens that elicit vigorous innate responses in vitro and in vivo The cell surface receptors mediating macrophage type-specific adenovirus sensing are largely unknown. The scavenger receptor MARCO is expressed on some subsets of naive tissue-resident macrophages, including lung alveolar macrophages. Its role in antiviral macrophage responses is largely unexplored. Here, we studied whether the differential expression of MARCO might contribute to the various susceptibilities of macrophage subtypes to adenovirus. We demonstrate that MARCO significantly enhances adenovirus infection and innate responses in macrophages. These results help to understand adenoviral pathogenesis and may open new possibilities to influence the outcome of infection with adenoviruses or adenovirus vectors.
Insights
The scavenger receptor MARCO enhances adenovirus infection in macrophages, boosting innate immune responses. This finding improves understanding of viral pathogenesis and potential therapeutic strategies for adenovirus infections.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Macrophages are key immune cells involved in pathogen defense.
- The scavenger receptor MARCO recognizes bacterial pathogens but its role in antiviral immunity is unclear.
- Adenoviruses are significant respiratory pathogens, and understanding macrophage tropism is crucial.
Purpose of the Study:
- To investigate the role of MARCO in macrophage sensing and response to adenovirus infection.
- To determine if MARCO expression influences adenovirus susceptibility in different macrophage subsets.
- To elucidate the mechanisms by which MARCO impacts innate antiviral immunity.
Main Methods:
- Utilized MARCO-positive and MARCO-negative mouse-derived macrophages.
- Employed MARCO-blocking antibodies and gene-deficient/transfected cells.
- Assessed adenovirus infection efficiency and downstream innate immune signaling (e.g., cGAS-STING pathway).
Main Results:
- Adenovirus infection was significantly more efficient in MARCO-positive macrophages.
- MARCO was shown to mediate rapid adenovirus transduction of macrophages.
- MARCO-enhanced infection led to robust pro-inflammatory responses, including IL-6, IFN-α/β, and IL-1α production via cGAS.
Conclusions:
- MARCO expression significantly enhances adenovirus infection and innate immune responses in macrophages.
- This receptor-mediated entry contributes to efficient viral recognition and subsequent inflammation.
- Findings offer insights into adenoviral pathogenesis and potential therapeutic targets for adenovirus or vector-mediated infections.
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