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Published on: December 21, 2011
Streptococcus mutans outer membrane vesicles affect inflammasome activation and the glycolysis of macrophages
Gongyuan Song1, Min Li2, Bing Zhou3
1The Second Hospital of Shijiazhuang, Shijiazhuang, 050000, China.
Abstract:
Recent studies indicate that bacterial outer membrane vesicles (OMVs) play a significant role in bacterial virulence and pathogenicity. Streptococcus mutans (S. mutans), a principal pathogen in dental caries, secretes a substantial number of OMVs. However, the impact of S. mutans OMVs on oral health and their underlying pathogenic mechanisms remain poorly understood. Macrophages were the initial innate immune cells to respond to bacterial invaders and their products. Therefore, we purified S. mutans OMVs, which stimulated macrophages. Compared to controls, RT-PCR and ELISA analyses revealed that S. mutans OMVs significantly increased the production of IL-1β, IL-6, TNF-α and IL-8, with IL-1β being notably elevated. IL-1β production and secretion are tightly regulated by the inflammasome. Western blot analyses demonstrated that S. mutans OMVs upregulated the expression of inflammasome components, including NLRP3, NLRC4, ASC and AIM2, with a marked increase in NLRP3 expression. Silencing different inflammasome components with siRNA revealed a reduction in IL-1β secretion induced by S. mutans OMVs, particularly through NLRP3. Additionally, ATP production and K+ efflux were found to be crucial for NLRP3 activation. Prolonged stimulation with S. mutans OMVs resulted in increased lactate production and elevated expression of glycolysis-related genes Glut-1, PFKFB3, and HK I, indicating that S. mutans OMVs significantly induce macrophage glycolysis. Furthermore, S. mutans OMVs were shown to enhance biofilm formation, increase S. mutans colonisation on epithelial cells, and inhibit macrophage phagocytosis, thereby improving the survival of S. mutans in the oral cavity. In summary, S. mutans OMVs promote the survival of S. mutans in the mouth through multiple mechanisms, potentially influencing the development of dental caries.
Insights
Streptococcus mutans outer membrane vesicles (OMVs) activate macrophages and promote dental caries pathogen survival. These OMVs enhance biofilm formation and inhibit immune responses, contributing to oral cavity colonization.
Area of Science:
- Microbiology
- Immunology
- Oral Health
Background:
- Bacterial outer membrane vesicles (OMVs) are increasingly recognized for their roles in virulence.
- Streptococcus mutans (S. mutans) OMVs are implicated in dental caries, but their mechanisms are unclear.
- Macrophages are key innate immune cells responding to bacterial stimuli.
Purpose of the Study:
- To investigate the impact of S. mutans OMVs on macrophage activation and inflammatory responses.
- To elucidate the pathogenic mechanisms by which S. mutans OMVs promote bacterial survival in the oral cavity.
Main Methods:
- Purification of S. mutans OMVs and stimulation of macrophages.
- Analysis of cytokine production (IL-1β, IL-6, TNF-α, IL-8) using RT-PCR and ELISA.
- Assessment of inflammasome component expression (NLRP3, NLRC4, ASC, AIM2) via Western blot.
- Investigation of NLRP3 inflammasome activation pathways (ATP production, K+ efflux).
- Evaluation of macrophage glycolysis and S. mutans virulence factors (biofilm, colonization, phagocytosis inhibition).
Main Results:
- S. mutans OMVs significantly elevated pro-inflammatory cytokine production, particularly IL-1β, via inflammasome activation, especially NLRP3.
- Macrophage glycolysis was induced by S. mutans OMVs, evidenced by increased lactate and glycolysis gene expression.
- S. mutans OMVs enhanced S. mutans biofilm formation, epithelial cell colonization, and inhibited macrophage phagocytosis.
- These effects collectively promote S. mutans survival in the oral cavity.
Conclusions:
- S. mutans OMVs are potent activators of macrophage inflammasomes, driving inflammation and glycolysis.
- OMVs contribute to S. mutans virulence by enhancing biofilm formation, colonization, and immune evasion.
- These findings highlight S. mutans OMVs as critical factors in dental caries pathogenesis and oral health.
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