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Generation of Human Monocyte-derived Dendritic Cells from Whole Blood
Published on: December 24, 2016
Human dendritic cells activated with MV130 induce Th1, Th17 and IL-10 responses via RIPK2 and MyD88 signalling
Cristina Cirauqui1, Cristina Benito-Villalvilla1, Silvia Sánchez-Ramón2,3
1Department of Biochemistry and Molecular Biology, School of Chemistry, Complutense University, Madrid, Spain.
Abstract:
Recurrent respiratory tract infections (RRTIs) are the first leading cause of community- and nosocomial-acquired infections. Antibiotics remain the mainstay of treatment, enhancing the potential to develop antibiotic resistances. Therefore, the development of new alternative approaches to prevent and treat RRTIs is highly demanded. Daily sublingual administration of the whole heat-inactivated polybacterial preparation (PBP) MV130 significantly reduced the rate of respiratory infections in RRTIs patients, however, the immunological mechanisms of action remain unknown. Herein, we study the capacity of MV130 to immunomodulate the function of human dendritic cells (DCs) as a potential mechanism that contribute to the clinical benefits. We demonstrate that DCs from RRTIs patients and healthy controls display similar ex vivo immunological responses to MV130. By combining systems biology and functional immunological approaches we show that MV130 promotes the generation of Th1/Th17 responses via receptor-interacting serine/threonine-protein kinase-2 (RIPK2)- and myeloid-differentiation primary-response gene-88 (MyD88)-mediated signalling pathways under the control of IL-10. In vivo BALB/c mice sublingually immunized with MV130 display potent systemic Th1/Th17 and IL-10 responses against related and unrelated antigens. We elucidate immunological mechanisms underlying the potential way of action of MV130, which might help to design alternative treatments in other clinical conditions with high risk of recurrent infections.
Insights
The polybacterial preparation MV130 reduces respiratory infections by enhancing immune responses. This study reveals its mechanism involves dendritic cell modulation, promoting Th1/Th17 and IL-10 responses via specific signaling pathways.
Area of Science:
- Immunology
- Microbiology
- Systems Biology
Background:
- Recurrent respiratory tract infections (RRTIs) are a major health concern, with antibiotic resistance limiting treatment options.
- The polybacterial preparation MV130 shows clinical efficacy in reducing RRTIs, but its immunological mechanisms are unclear.
Purpose of the Study:
- To investigate the immunomodulatory effects of MV130 on human dendritic cells (DCs).
- To elucidate the signaling pathways involved in MV130's mechanism of action.
Main Methods:
- Ex vivo analysis of DCs from RRTI patients and healthy controls stimulated with MV130.
- Systems biology and functional immunology approaches to identify signaling pathways.
- In vivo studies in BALB/c mice.
Main Results:
- MV130 treatment modulated DCs similarly in both RRTI patients and healthy controls.
- MV130 induced Th1/Th17 and IL-10 responses via RIPK2 and MyD88 signaling.
- Sublingual immunization with MV130 in mice generated robust systemic Th1/Th17 and IL-10 responses.
Conclusions:
- MV130's clinical benefits in RRTIs may stem from its ability to modulate DC function.
- The study elucidates the immunological pathways underlying MV130's action, offering potential for new treatments against recurrent infections.
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