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Published on: March 21, 2021
Cooperation between Monocyte-Derived Cells and Lymphoid Cells in the Acute Response to a Bacterial Lung Pathogen
Andrew S Brown1, Chao Yang2, Ka Yee Fung2
1Department of Biochemistry and Molecular Biology, Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Melbourne, Victoria, Australia.
Abstract:
Legionella pneumophila is the causative agent of Legionnaires' disease, a potentially fatal lung infection. Alveolar macrophages support intracellular replication of L. pneumophila, however the contributions of other immune cell types to bacterial killing during infection are unclear. Here, we used recently described methods to characterise the major inflammatory cells in lung after acute respiratory infection of mice with L. pneumophila. We observed that the numbers of alveolar macrophages rapidly decreased after infection coincident with a rapid infiltration of the lung by monocyte-derived cells (MC), which, together with neutrophils, became the dominant inflammatory cells associated with the bacteria. Using mice in which the ability of MC to infiltrate tissues is impaired it was found that MC were required for bacterial clearance and were the major source of IL12. IL12 was needed to induce IFNγ production by lymphoid cells including NK cells, memory T cells, NKT cells and γδ T cells. Memory T cells that produced IFNγ appeared to be circulating effector/memory T cells that infiltrated the lung after infection. IFNγ production by memory T cells was stimulated in an antigen-independent fashion and could effectively clear bacteria from the lung indicating that memory T cells are an important contributor to innate bacterial defence. We also determined that a major function of IFNγ was to stimulate bactericidal activity of MC. On the other hand, neutrophils did not require IFNγ to kill bacteria and alveolar macrophages remained poorly bactericidal even in the presence of IFNγ. This work has revealed a cooperative innate immune circuit between lymphoid cells and MC that combats acute L. pneumophila infection and defines a specific role for IFNγ in anti-bacterial immunity.
Insights
Monocyte-derived cells (MC) and neutrophils clear Legionella pneumophila lung infections. Interleukin-12 (IL12) and Interferon-gamma (IFNγ) drive this innate immune response, highlighting a cooperative circuit for bacterial defense.
Area of Science:
- Immunology
- Microbiology
- Infectious Disease
Background:
- Legionella pneumophila causes Legionnaires' disease, a severe lung infection.
- Alveolar macrophages are known to support L. pneumophila replication, but the roles of other immune cells in bacterial clearance are not fully understood.
Purpose of the Study:
- To characterize inflammatory cells in the lung during acute L. pneumophila infection.
- To elucidate the roles of specific immune cells and cytokines in combating L. pneumophila.
Main Methods:
- Acute respiratory infection model in mice using L. pneumophila.
- Characterization of inflammatory cell populations in the lung.
- Utilized genetically modified mice with impaired monocyte-derived cell (MC) infiltration.
- Assessed bacterial clearance, cytokine production (IL12, IFNγ), and immune cell functions.
Main Results:
- Alveolar macrophage numbers decreased post-infection, with rapid infiltration of MC and neutrophils.
- MC were crucial for bacterial clearance and were the primary source of IL12.
- IL12 induced IFNγ production in lymphoid cells (NK, memory T, NKT, γδ T cells).
- IFNγ stimulated the bactericidal activity of MC, while neutrophils killed bacteria independently of IFNγ.
Conclusions:
- A cooperative innate immune circuit involving lymphoid cells and MC effectively combats L. pneumophila infection.
- IFNγ plays a critical role in stimulating MC bactericidal activity and contributes to innate bacterial defense via memory T cells.
- This study defines a specific role for IFNγ in anti-bacterial immunity against L. pneumophila.
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