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Imaging of In Situ Interferon Gamma Production in the Mouse Spleen following Listeria monocytogenes Infection
Published on: July 16, 2019
A pathway through interferon-gamma is the main pathway for induction of nitric oxide upon stimulation with bacterial
Motohiro Matsuura1, Shinji Saito, Yoshikazu Hirai
1Department of Microbiology, Jichi Medical School, Tochigi, Japan. mmatsuur@jichi.ac.jp
Abstract:
Production of nitric oxide (NO) in response to bacterial lipopolysaccharide (LPS) was investigated using cultures of mouse peritoneal exudate cells (PEC) and the macrophage cell line RAW264.7. In the presence of anti-(interferon-gamma) (IFN-gamma), NO production was markedly suppressed in the PEC culture but not in the RAW264.7 culture. In the PEC culture, LPS induced both IFN-gamma production and activation of IFN response factor-1, which leads to the gene expression of inducible NO synthase, but neither was induced in the culture of RAW264.7 cells. In addition to anti-(IFN-gamma), antibodies against interleukin (IL)-12 and IL-18 showed a suppressive effect on LPS-induced NO production in the PEC culture, and these antibodies in synergy showed strong suppression. Stimulation of the PEC culture with IL-12 or IL-18 induced production of IFN-gamma and NO, and these cytokines, in combination, exhibited marked synergism. Stimulation of the culture with IFN-gamma induced production of NO, but not IL-12. The macrophage population in the PEC, prepared as adherent cells, responded well to LPS for IL-12 production, but weakly for production of IFN-gamma and NO. The macrophages also responded well to IFN-gamma for NO production. For production of IFN-gamma by stimulation with LPS or IL-12 + IL-18, nonadherent cells were required in the PEC culture. Considering these results overall, the indirect pathway, through the production of intermediates (such as IFN-gamma-inducing cytokines and IFN-gamma) by the cooperation of macrophages with nonadherent cells, was revealed to play the main role in the LPS-induced NO production pathway, as opposed to the direct pathway requiring only a macrophage population.
Insights
Bacterial lipopolysaccharide (LPS) induces nitric oxide (NO) production via an indirect pathway involving interferon-gamma (IFN-gamma)-inducing cytokines and IFN-gamma, requiring cooperation between macrophages and nonadherent cells in mouse peritoneal exudate cells (PEC).
Area of Science:
- Immunology
- Cell Biology
Background:
- Nitric oxide (NO) plays a crucial role in immune responses.
- Bacterial lipopolysaccharide (LPS) is a potent activator of innate immunity.
- Understanding NO production pathways is key to modulating immune responses.
Purpose of the Study:
- To investigate the mechanisms of LPS-induced NO production in mouse peritoneal exudate cells (PEC) and RAW264.7 macrophage cell line.
- To differentiate between direct and indirect pathways of NO induction by LPS.
Main Methods:
- Cultures of mouse peritoneal exudate cells (PEC) and RAW264.7 cells were stimulated with LPS.
- Antibodies against interferon-gamma (IFN-gamma), interleukin-12 (IL-12), and IL-18 were used to block specific pathways.
- NO production was measured, and cytokine production and transcription factor activation were assessed.
Main Results:
- LPS-induced NO production in PEC was suppressed by anti-IFN-gamma, anti-IL-12, and anti-IL-18 antibodies, with synergistic effects observed.
- RAW264.7 cells showed no significant suppression of NO production under similar conditions.
- LPS induced IFN-gamma production and IFN response factor-1 activation in PEC, but not in RAW264.7 cells.
- Cooperation between macrophages and nonadherent cells was essential for IFN-gamma production in PEC.
Conclusions:
- LPS-induced NO production in PEC primarily occurs through an indirect pathway involving IFN-gamma-inducing cytokines and IFN-gamma.
- This indirect pathway relies on the collaborative action of macrophages and nonadherent cells.
- The direct pathway, solely dependent on macrophages, plays a lesser role in LPS-induced NO production in this model.
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