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Probiotic Bacillus spp. enhance TLR3-mediated TNF signalling in macrophages
Katrine Damgaard Winther1,2, Erik Juncker Boll1, Dorthe Sandvang1
1Chr. Hansen A/S, Animal and Plant Health & Nutrition, Hørsholm, Denmark.
Abstract:
Probiotics have been reported to have immunomodulatory properties in the context of infectious disease and inflammation, although the underlying mechanisms are not fully understood. Here, we aimed to determine how different probiotic bacterial strains modulated macrophage function during TLR3 stimulation mimicking viral infection. We screened 14 different strains for their ability to modulate TNF-α, IL-6 IL-10, IFN-α, IFN-β and IFN-γ secretion in RAW 264.7 macrophages with or without poly(I:C) stimulation. Seven strains were selected for further analysis using primary porcine alveolar macrophages. In-depth transcriptomic analysis on alveolar macrophages was conducted for two strains. Most strains induced a synergistic effect when co-incubated with poly(I:C) resulting in increased levels of IL-6 and TNF-α secretion from RAW 264.7 cells. This synergistic effect was found to be TLR2 independent. Only strains of Bacillus spp. could induce this effect in alveolar macrophages. Transcriptomic analysis indicated that the increased TNF-α secretion in alveolar macrophages after co-incubation with poly(I:C) correlated with significant upregulation of TNF and IL23A-related pathways. Collectively, our data show that probiotic bacteria possess strain-dependent immunomodulatory properties that may be harnessed to enhance innate immune responses to pathogens.
Insights
Probiotic bacteria strains can enhance immune responses by modulating macrophage function. Certain Bacillus strains show promise in boosting innate immunity against viral infections, offering potential therapeutic strategies.
Area of Science:
- Immunology
- Microbiology
- Infectious Disease
Background:
- Probiotics exhibit immunomodulatory effects, but mechanisms remain unclear.
- Understanding probiotic-host interactions is crucial for infectious disease and inflammation management.
Purpose of the Study:
- To investigate how specific probiotic bacterial strains modulate macrophage function.
- To elucidate mechanisms underlying probiotic-induced immune responses during viral infection mimicry.
Main Methods:
- Screened 14 probiotic strains for cytokine modulation in RAW 264.7 macrophages stimulated with poly(I:C).
- Analyzed seven selected strains using primary porcine alveolar macrophages.
- Performed transcriptomic analysis on alveolar macrophages for two key strains.
Main Results:
- Most strains synergistically increased Interleukin-6 (IL-6) and Tumor Necrosis Factor-alpha (TNF-α) secretion with poly(I:C) in RAW 264.7 cells.
- This synergistic effect was independent of Toll-Like Receptor 2 (TLR2).
- Only Bacillus spp. induced this effect in alveolar macrophages, correlating with TNF and IL23A pathway upregulation.
Conclusions:
- Probiotic bacteria possess strain-dependent immunomodulatory properties.
- Bacillus strains can enhance innate immune responses, particularly against viral challenges.
- Findings suggest potential for probiotics in boosting host defense mechanisms.
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