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Published on: May 22, 2014
Nrf2 Regulates Inflammation by Modulating Dendritic Cell-T Cell Crosstalk during Viral-Bacterial Superinfection
Alexis M Duray1, Leigh M Miller1, Brooke P Dresden1
1Department of Pediatrics, UPMC Children's Hospital of Pittsburgh, Pittsburgh, PA.
Abstract:
Every year millions of people are infected with influenza, which can be complicated by secondary bacterial pneumonia. One factor that may contribute to increased susceptibility to secondary bacterial infection is the modulation of inflammatory cytokines. NF erythroid 2-related factor 2 (Nrf2) has been shown to be a master regulator of the antioxidant response and various inflammatory cytokines. To test the role of Nrf2 during viral-bacterial superinfection, we used a mouse model of influenza-Staphylococcus aureus superinfection with wild-type (WT) or Nrf2-deficient (Nrf2-/-) mice. Loss of Nrf2 reduced influenza burden and increased S. aureus burden during superinfection. Additionally, Nrf2-/- mice had increased abundance of conventional type 1 dendritic cells (DCs). We then tested the interaction between DCs and T cells using an in vitro model of bone marrow-derived DCs with OVA and OT-II T cells. In this system, Nrf2-/- DCs promoted a Th2/regulatory T cell response as opposed to a Th1/Th17 response by WT DCs. This was recapitulated in vivo with superinfected Nrf2-/- mice having increased regulatory T cell populations. We also observed an increased median survival time of Nrf2-/- superinfected mice, due at least in part to increased IL-10 signaling, as anti-IL-10R Ab treatment reduced median survival time to levels seen in WT mice. Overall, these data suggest that loss of Nrf2 promotes differential T cell skewing mediated by DCs that promote a regulatory phenotype, increasing superinfection survival time, despite increased bacterial burden.
Insights
Loss of the antioxidant regulator Nrf2 (NF erythroid 2-related factor 2) in mice increased susceptibility to bacterial pneumonia after influenza infection. However, Nrf2 deficiency improved survival by promoting regulatory T cells.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Influenza infection can lead to secondary bacterial pneumonia.
- Inflammatory cytokine modulation impacts susceptibility to secondary infections.
- NF erythroid 2-related factor 2 (Nrf2) regulates antioxidant and inflammatory responses.
Purpose of the Study:
- To investigate the role of Nrf2 in viral-bacterial superinfection.
- To determine how Nrf2 deficiency affects immune responses during influenza and Staphylococcus aureus superinfection.
Main Methods:
- Used a mouse model of influenza-Staphylococcus aureus superinfection with wild-type (WT) and Nrf2-deficient (Nrf2-/-) mice.
- Analyzed viral and bacterial burden, immune cell populations (dendritic cells, T cells), and cytokine signaling (IL-10).
- Utilized in vitro co-culture systems of bone marrow-derived dendritic cells and T cells.
Main Results:
- Nrf2 deficiency reduced influenza burden but increased Staphylococcus aureus burden.
- Nrf2-/- mice exhibited increased conventional type 1 dendritic cells and regulatory T cell populations.
- Loss of Nrf2 promoted a Th2/regulatory T cell response, contrasting with the Th1/Th17 response in WT mice.
- Nrf2-/- mice showed increased median survival time, partly due to enhanced IL-10 signaling.
Conclusions:
- Nrf2 plays a complex role in viral-bacterial superinfection, influencing both pathogen burden and immune cell responses.
- Loss of Nrf2 skews T cell responses towards a regulatory phenotype mediated by dendritic cells.
- This regulatory T cell response contributes to increased survival despite higher bacterial loads.
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