Involvement of Mesenchymal Stem Cells in Oral Mucosal Bacterial Immunotherapy
Alberto Vázquez1, Lidia M Fernández-Sevilla1,2, Eva Jiménez1,2
1Department of Cell Biology, School of Medicine, Complutense University of Madrid, Madrid, Spain.
Abstract:
Recent clinical observations indicate that bacterial vaccines induce cross-protection against infections produced by different microorganisms. MV130, a polyvalent bacterial sublingual preparation designed to prevent recurrent respiratory infectious diseases, reduces the infection rate in patients with recurrent respiratory tract infections. On the other hand, mesenchymal stem cells (MSCs) are key cell components that contribute to the maintenance of tissue homeostasis and exert both immunostimulatory and immunosuppressive functions. Herein, we study the effects of MV130 in human MSC functionality as a potential mechanism that contributes to its clinical benefits. We provide evidence that during MV130 sublingual immunization of mice, resident oral mucosa MSCs can take up MV130 components and their numbers remain unchanged after vaccination, in contrast to granulocytes that are recruited from extramucosal tissues. MSCs treated in vitro with MV130 show an increased viability without affecting their differentiation potential. In the short-term, MSC treatment with MV130 induces higher leukocyte recruitment and T cell expansion. In contrast, once T-cell activation is initiated, MV130 stimulation induces an up-regulated expression of immunosuppressor factors in MSCs. Accordingly, MV130-primed MSCs reduce T lymphocyte proliferation, induce the differentiation of dendritic cells with immunosuppressive features and favor M2-like macrophage polarization, thus counterbalancing the immune response. In addition, MSCs trained with MV130 undergo functional changes, enhancing their immunomodulatory response to a secondary stimulus. Finally, we show that MSCs are able to uptake, process and retain a reservoir of the TLR ligands derived from MV130 digestion which can be subsequently transferred to dendritic cells, an additional feature that also may be associated to trained immunity.
Insights
Bacterial vaccine MV130 enhances mesenchymal stem cell (MSC) function, promoting immune responses and trained immunity. This study explores how MV130 interacts with MSCs to potentially improve clinical benefits in recurrent respiratory infections.
Area of Science:
- Immunology
- Cell Biology
- Vaccinology
Background:
- Bacterial vaccines can offer cross-protection against diverse infections.
- Mesenchymal stem cells (MSCs) are crucial for tissue homeostasis and immune modulation.
- MV130, a polyvalent bacterial sublingual preparation, is used for recurrent respiratory infections.
Purpose of the Study:
- To investigate the effects of MV130 on human mesenchymal stem cell (MSC) functionality.
- To elucidate potential mechanisms behind MV130's clinical benefits in recurrent respiratory infections.
Main Methods:
- In vitro treatment of MSCs with MV130.
- Assessment of MSC viability, differentiation, and immunomodulatory factor expression.
- Analysis of MSC interaction with leukocytes, T cells, dendritic cells, and macrophages.
- Investigation of MV130 component uptake and transfer by MSCs.
Main Results:
- MV130 treatment increased MSC viability without affecting differentiation potential.
- Short-term MV130 exposure promoted leukocyte recruitment and T cell expansion.
- MV130-primed MSCs exhibited immunosuppressive functions, reducing T cell proliferation and inducing immunosuppressive dendritic cells and M2-like macrophages.
- MSCs demonstrated enhanced immunomodulatory responses after MV130 training and could transfer TLR ligands to dendritic cells, suggesting a role in trained immunity.
Conclusions:
- MSCs can internalize MV130 components and undergo functional changes that contribute to immune modulation.
- MV130-trained MSCs play a role in balancing immune responses, potentially through immunosuppressive mechanisms and by contributing to trained immunity.
- MSC-MV130 interactions offer a novel perspective on the clinical efficacy of bacterial immunomodulatory preparations.
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