TY - JOUR
T1 - Extracellular vesicles mediate mesenchymal stromal cell-dependent regulation of B cell PI3K-Akt signaling pathway and actin cytoskeleton
AU - Adamo, Annalisa
AU - Brandi, Jessica
AU - Caligola, Simone
AU - Delfino, Pietro
AU - Bazzoni, Riccardo
AU - Carusone, Roberta
AU - Cecconi, Daniela
AU - Giugno, Rosalba
AU - Manfredi, Marcello
AU - Robotti, Elisa
AU - Marengo, Emilio
AU - Bassi, Giulio
AU - Kamga, Paul Takam
AU - Collo, Giada Dal
AU - Gatti, Alessandro
AU - Mercuri, Angela
AU - Arigoni, Maddalena
AU - Olivero, Martina
AU - Calogero, Raffaele A.
AU - Krampera, Mauro
N1 - Publisher Copyright:
Copyright © 2019 Adamo, Brandi, Caligola, Delfino, Bazzoni, Carusone, Cecconi, Giugno, Manfredi, Robotti, Marengo, Bassi, Takam Kamga, Dal Collo, Gatti, Mercuri, Arigoni, Olivero, Calogero and Krampera. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
PY - 2019
Y1 - 2019
N2 - Mesenchymal stromal cells (MSCs) are adult, multipotent cells of mesodermal origin representing the progenitors of all stromal tissues. MSCs possess significant and broad immunomodulatory functions affecting both adaptive and innate immune responses once MSCs are primed by the inflammatory microenvironment. Recently, the role of extracellular vesicles (EVs) in mediating the therapeutic effects of MSCs has been recognized. Nevertheless, the molecular mechanisms responsible for the immunomodulatory properties of MSC-derived EVs (MSC-EVs) are still poorly characterized. Therefore, we carried out a molecular characterization of MSC-EV content by high-throughput approaches. We analyzed miRNA and protein expression profile in cellular and vesicular compartments both in normal and inflammatory conditions. We found several proteins and miRNAs involved in immunological processes, such as MOES, LG3BP, PTX3, and S10A6 proteins, miR-155-5p, and miR-497-5p. Different in silico approaches were also performed to correlate miRNA and protein expression profile and then to evaluate the putative molecules or pathways involved in immunoregulatory properties mediated by MSC-EVs. PI3K-AKT signaling pathway and the regulation of actin cytoskeleton were identified and functionally validated in vitro as key mediators of MSC/B cell communication mediated by MSC-EVs. In conclusion, we identified different molecules and pathways responsible for immunoregulatory properties mediated by MSC-EVs, thus identifying novel therapeutic targets as safer and more useful alternatives to cell or EV-based therapeutic approaches.
AB - Mesenchymal stromal cells (MSCs) are adult, multipotent cells of mesodermal origin representing the progenitors of all stromal tissues. MSCs possess significant and broad immunomodulatory functions affecting both adaptive and innate immune responses once MSCs are primed by the inflammatory microenvironment. Recently, the role of extracellular vesicles (EVs) in mediating the therapeutic effects of MSCs has been recognized. Nevertheless, the molecular mechanisms responsible for the immunomodulatory properties of MSC-derived EVs (MSC-EVs) are still poorly characterized. Therefore, we carried out a molecular characterization of MSC-EV content by high-throughput approaches. We analyzed miRNA and protein expression profile in cellular and vesicular compartments both in normal and inflammatory conditions. We found several proteins and miRNAs involved in immunological processes, such as MOES, LG3BP, PTX3, and S10A6 proteins, miR-155-5p, and miR-497-5p. Different in silico approaches were also performed to correlate miRNA and protein expression profile and then to evaluate the putative molecules or pathways involved in immunoregulatory properties mediated by MSC-EVs. PI3K-AKT signaling pathway and the regulation of actin cytoskeleton were identified and functionally validated in vitro as key mediators of MSC/B cell communication mediated by MSC-EVs. In conclusion, we identified different molecules and pathways responsible for immunoregulatory properties mediated by MSC-EVs, thus identifying novel therapeutic targets as safer and more useful alternatives to cell or EV-based therapeutic approaches.
KW - Actin cytoskeleton
KW - B cells
KW - Extracellular vesicles
KW - High-throughput analysis
KW - Mesenchymal stromal cells
KW - MiRNA-155-5p
KW - PI3K-AKT signaling pathway
UR - https://www.scopus.com/pages/publications/85063949529
U2 - 10.3389/fimmu.2019.00446
DO - 10.3389/fimmu.2019.00446
M3 - Article
SN - 1664-3224
VL - 10
JO - Frontiers in Immunology
JF - Frontiers in Immunology
IS - MAR
M1 - 446
ER -