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Updated: Jul 21, 2025

Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
Inflammatory macrophages exploited by oral streptococcus increase IL-1B release via NLRP6 inflammasome
Sarah Metcalfe1, Michelle Panasiewicz1, Jason G Kay1
1Department of Oral Biology, School of Dental Medicine, University at Buffalo, 3435 Main street, Buffalo, NY 14214, United States.
Abstract:
Chronic inflammatory periodontal disease develops in part from the infiltration of a large number of classically activated inflammatory macrophages that release inflammatory cytokines important for disease progression, including inflammasome-dependent interleukin (IL)-1β. Streptococcus gordonii is a normally commensal oral microorganism; while not causative, recent evidence indicates that commensal oral microbes are required for the full development of periodontal disease. We have recently reported that inflammatory macrophages counterintuitively allow for the increased survival of phagocytosed S. gordonii over nonactivated or alternatively activated macrophages. This survival is dependent on increased reactive oxygen species production within the phagosome of the inflammatory macrophages, and resistance by the bacterium and can result in S. gordonii damaging the phagolysosomes. Here, we show that activated macrophages infected with live S. gordonii release more IL-1β than non-activated macrophages infected with either live or dead S. gordonii, and that the survival of oral Streptococci are more dependent on macrophage activation than other Gram positive microbes, both classical pathogens and commensals. We also find that S. gordonii-dependent inflammatory macrophage inflammasome activation requires the cytoplasmic NLRP6. Overall, our results suggest S. gordonii is capable of evading immune destruction, increasing inflammatory mediators, and increasing inflammatory macrophage response, and that this ability is increased under conditions of inflammation. This work reveals additional mechanisms by which normally commensal oral streptococci-macrophage interactions can change, resulting in increased release of mature IL-1β, potentially contributing to an environment that perpetuates inflammation.
Insights
Commensal bacteria like Streptococcus gordonii can evade immune cells, promoting inflammation and interleukin-1 beta release, which worsens periodontal disease. Macrophage activation enhances this bacterial survival and inflammatory response.
Area of Science:
- Immunology
- Microbiology
- Oral Health
Background:
- Chronic inflammatory periodontal disease involves inflammatory macrophages and cytokines like interleukin (IL)-1β.
- Commensal oral bacteria, including Streptococcus gordonii, are crucial for periodontal disease development.
- Inflammatory macrophages paradoxically enhance the survival of phagocytosed S. gordonii.
Purpose of the Study:
- To investigate the interaction between S. gordonii and activated macrophages.
- To determine the role of macrophage activation in S. gordonii survival and IL-1β release.
- To identify mechanisms of inflammasome activation by S. gordonii.
Main Methods:
- In vitro infection of macrophages with live and dead S. gordonii.
- Measurement of IL-1β release.
- Assessment of bacterial survival in different macrophage activation states.
- Analysis of inflammasome component NLRP6 involvement.
Main Results:
- Activated macrophages infected with live S. gordonii released significantly more IL-1β.
- S. gordonii survival was more dependent on macrophage activation compared to other Gram-positive microbes.
- Inflammasome activation by S. gordonii required the cytoplasmic NLRP6 protein.
- S. gordonii demonstrated enhanced immune evasion and inflammatory mediator release under inflammatory conditions.
Conclusions:
- S. gordonii evades immune destruction within inflammatory macrophages, promoting IL-1β release.
- Macrophage activation enhances S. gordonii survival and its ability to increase inflammatory mediators.
- These interactions contribute to a pro-inflammatory environment, potentially exacerbating periodontal disease.
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