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dc.contributor.author Contreras-Lopez, Rafael
dc.contributor.author Elizondo-Vega, Roberto
dc.contributor.author Luque-Campos, Noymar
dc.contributor.author Torres, María José
dc.contributor.author Pradenas, Carolina
dc.contributor.author Tejedor, Gautier
dc.contributor.author Paredes-Martínez, María José
dc.contributor.author Vega-Letter, Ana María
dc.contributor.author Campos-Mora, Mauricio
dc.contributor.author Rigual-Gonzalez, Yandi
dc.contributor.author Oyarce, Karina
dc.contributor.author Salgado, Magdiel
dc.contributor.author Jorgensen, Christian
dc.contributor.author Khoury, Maroun
dc.contributor.author de los Ángeles Garcia-Robles, María
dc.contributor.author Altamirano, Claudia
dc.contributor.author Djouad, Farida
dc.contributor.author Luz-Crawford, Patricia
dc.date.accessioned 2024-09-26T00:34:59Z
dc.date.available 2024-09-26T00:34:59Z
dc.date.issued 2020
dc.identifier.issn 1838-7640
dc.identifier.uri https://repositorio.uss.cl/handle/uss/12699
dc.description Publisher Copyright: © The author(s). This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
dc.description.abstract Objectives: Mesenchymal Stem/Stromal Cells (MSC) are promising therapeutic tools for inflammatory diseases due to their potent immunoregulatory capacities. Their suppressive activity mainly depends on inflammatory cues that have been recently associated with changes in MSC bioenergetic status towards a glycolytic metabolism. However, the molecular mechanisms behind this metabolic reprogramming and its impact on MSC therapeutic properties have not been investigated. Methods: Human and murine-derived MSC were metabolically reprogramed using pro-inflammatory cytokines, an inhibitor of ATP synthase (oligomycin), or 2-deoxy-D-glucose (2DG). The immunosuppressive activity of these cells was tested in vitro using co-culture experiments with pro-inflammatory T cells and in vivo with the Delayed-Type Hypersensitivity (DTH) and the Graph versus Host Disease (GVHD) murine models. Results: We found that the oligomycin-mediated pro-glycolytic switch of MSC significantly enhanced their immunosuppressive properties in vitro. Conversely, glycolysis inhibition using 2DG significantly reduced MSC immunoregulatory effects. Moreover, in vivo, MSC glycolytic reprogramming significantly increased their therapeutic benefit in the DTH and GVHD mouse models. Finally, we demonstrated that the MSC glycolytic switch effect partly depends on the activation of the AMPK signaling pathway. Conclusion: Altogether, our findings show that AMPK-dependent glycolytic reprogramming of MSC using an ATP synthase inhibitor contributes to their immunosuppressive and therapeutic functions, and suggest that pro-glycolytic drugs might be used to improve MSC-based therapy. en
dc.language.iso eng
dc.relation.ispartof vol. 11 Issue: no. 1 Pages: 445-460
dc.source Theranostics
dc.title The ATP synthase inhibition induces an AMPK-dependent glycolytic switch of mesenchymal stem cells that enhances their immunotherapeutic potential en
dc.type Artículo
dc.identifier.doi 10.7150/thno.51631
dc.publisher.department Facultad de Ciencias de la Salud
dc.publisher.department Facultad de Medicina y Ciencia


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