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Nitric oxide production and iNOS mRNA expression in mice induced by repeated stimulation with live Fusobacterium
1Department of Oral Microbiology, School of Dentistry, Nippon Dental University at Niigata, Niigata, Japan. ckato@ngt.ndu.ac.jp
Abstract:
There have been few studies on the detection of direct nitric oxide (NO) production and interferon-gamma (IFN-gamma) in vivo without using animal cell culture. We questioned whether NO and IFN-gamma could be produced at the site of infection. The peritoneal cavity of mice was used as the local infection model. NO and IFN-gamma in abdominal washings from these mice were measured directly at various times after injection of Fusobacterium nucleatum, a gram-negative rod periodontal pathogen. The mice were divided into three groups: those treated with live bacteria (LB), those treated with heat-killed bacteria (HKB) and those untreated: normal (N). These mice were compared on the basis of cell filtration, NO and IFN-gamma production by injection of live bacteria (LFn) or heat-killed bacteria (HKFn). In the LB group, the total cell number increased corresponding to an increase in neutrophils after injection of both LFn and HKFn. A low level of NO was constantly produced in abdominal washings, but a significant amount of NO was synthesized in the LB group only 12 hr to 24 hr after injection of LFn. At the same time iNOS enzyme activity and iNOS mRNA expression were detected. IFN-gamma, which may contribute to enhance NO production, was also secreted at a high level from peritoneal exudate cells (PEC) at 12 hr and 24 hr in the LB group by stimulation of LFn. At 12 hr and 24 hr, iNOS positive cells in the LB group by infection of LFn were identified and shown to contain mostly macrophages. These findings indicate that live bacteria play important roles in NO production by macrophages. It is suggested that NO may contribute to the inflammatory response during F. nucleatum infection in periodontitis.
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.