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Nitric oxide production and iNOS mRNA expression in mice induced by repeated stimulation with live Fusobacterium

C Kato1, M Mikami, K Saito

  • 1Department of Oral Microbiology, School of Dentistry, Nippon Dental University at Niigata, Niigata, Japan. ckato@ngt.ndu.ac.jp

Insights

This study shows live Fusobacterium nucleatum bacteria trigger macrophages to produce nitric oxide (NO) and interferon-gamma (IFN-gamma) directly at the infection site in mice, aiding the inflammatory response.

Area of Science:

  • Immunology
  • Microbiology
  • Biomedical Science

Background:

  • Limited in vivo studies exist on direct nitric oxide (NO) and interferon-gamma (IFN-gamma) detection without cell cultures.
  • Investigating local infection models is crucial for understanding host-pathogen interactions.

Purpose of the Study:

  • To determine if NO and IFN-gamma are produced at the site of infection in vivo.
  • To investigate the role of Fusobacterium nucleatum in NO and IFN-gamma production.

Main Methods:

  • Utilized a mouse peritoneal cavity infection model with live (LB) and heat-killed (HKB) Fusobacterium nucleatum.
  • Measured NO and IFN-gamma levels in abdominal washings at various time points.
  • Assessed inducible nitric oxide synthase (iNOS) enzyme activity and mRNA expression.
  • Identified iNOS positive cells using immunohistochemistry.

Main Results:

  • Live bacteria significantly increased neutrophil counts and NO production 12-24 hours post-infection.
  • Inducible nitric oxide synthase (iNOS) enzyme activity and mRNA expression were detected concurrently with high NO levels.
  • High levels of IFN-gamma were secreted by peritoneal exudate cells (PEC) in the LB group.
  • Macrophages were identified as the primary iNOS positive cells in the LB group.

Conclusions:

  • Live bacteria play a critical role in macrophage-mediated NO production during infection.
  • NO production, enhanced by IFN-gamma, likely contributes to the inflammatory response in Fusobacterium nucleatum-induced periodontitis.
  • This study demonstrates direct in vivo detection of NO and IFN-gamma at the infection site.

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