Amniotic fluid stem cell‐derived extracellular vesicles educate type 2 conventional dendritic cells to rescue autoimmune disorders in a multiple sclerosis mouse model

Author:

Manni Giorgia12ORCID,Gargaro Marco3,Ricciuti Doriana1,Fontana Simona4ORCID,Padiglioni Eleonora1,Cipolloni Marco5,Mazza Tommaso6,Rosati Jessica7,di Veroli Alessandra8,Mencarelli Giulia1,Pieroni Benedetta1,Silva Barcelos Estevão Carlos1,Scalisi Giulia1,Sarnari Francesco1,di Michele Alessandro29,Pascucci Luisa210,de Franco Francesca5,Zelante Teresa1,Antognelli Cinzia1,Cruciani Gabriele8,Talesa Vincenzo Nicola1,Romani Rita12,Fallarino Francesca12

Affiliation:

1. Department of Medicine and Surgery University of Perugia Perugia Italy

2. Extracellular Vesicles network (EV‐net) of the University of Perugia Perugia Italy

3. Department of Pharmaceutical Science University of Perugia Perugia Italy

4. Department of Biomedicine, Neurosciences and advanced Diagnostics (Bi.N.D) School of Medicine University of Palermo Palermo Italy

5. TES Pharma Srl, I Corciano Perugia Italy

6. Bioinformatics unit, Fondazione IRCCS Casa Sollievo della Sofferenza San Giovanni Rotondo Italy

7. Cellular Reprogramming Unit, Fondazione IRCCS Casa Sollievo della Sofferenza San Giovanni Rotondo Italy

8. Department of Chemistry, Biology and Biotechnology University of Perugia Perugia Italy

9. Department of Physics and Geology University of Perugia Perugia Italy

10. Department of Veterinary Medicine University of Perugia Perugia Italy

Abstract

AbstractDendritic cells (DCs) are essential orchestrators of immune responses and represent potential targets for immunomodulation in autoimmune diseases. Human amniotic fluid secretome is abundant in immunoregulatory factors, with extracellular vesicles (EVs) being a significant component. However, the impact of these EVs on dendritic cells subsets remain unexplored. In this study, we investigated the interaction between highly purified dendritic cell subsets and EVs derived from amniotic fluid stem cell lines (HAFSC‐EVs). Our results suggest that HAFSC‐EVs are preferentially taken up by conventional dendritic cell type 2 (cDC2) through CD29 receptor‐mediated internalization, resulting in a tolerogenic DC phenotype characterized by reduced expression and production of pro‐inflammatory mediators. Furthermore, treatment of cDC2 cells with HAFSC‐EVs in coculture systems resulted in a higher proportion of T cells expressing the regulatory T cell marker Foxp3 compared to vehicle‐treated control cells. Moreover, transfer of HAFSC‐EV‐treated cDC2s into an EAE mouse model resulted in the suppression of autoimmune responses and clinical improvement. These results suggest that HAFSC‐EVs may serve as a promising tool for reprogramming inflammatory cDC2s towards a tolerogenic phenotype and for controlling autoimmune responses in the central nervous system, representing a potential platform for the study of the effects of EVs in DC subsets.

Funder

Associazione Italiana per la Ricerca sul Cancro

Fondazione Telethon

H2020 European Research Council

Fondazione Italiana Sclerosi Multipla

Publisher

Wiley

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