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Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells

Introduction: Sarcopenia is defined as a loss of muscle mass and strength. ATP homeostasis is crucial during myogenesis. We determined how the purinergic system modulates myogenesis using dipyridamole (blocks adenosine taken up by the cells) and tenofovir (inhibits ATP release) in a myoblast cell li...

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Autores principales: Marco-Bonilla, Miguel, Herencia, Raquel, Fresnadillo, María, Huete-Toral, Fernando, Carracedo, Gonzalo, Largo, Raquel, Herrero-Beaumont, Gabriel, Mediero, Aránzazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10522837/
https://www.ncbi.nlm.nih.gov/pubmed/37771723
http://dx.doi.org/10.3389/fphar.2023.1247664
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author Marco-Bonilla, Miguel
Herencia, Raquel
Fresnadillo, María
Huete-Toral, Fernando
Carracedo, Gonzalo
Largo, Raquel
Herrero-Beaumont, Gabriel
Mediero, Aránzazu
author_facet Marco-Bonilla, Miguel
Herencia, Raquel
Fresnadillo, María
Huete-Toral, Fernando
Carracedo, Gonzalo
Largo, Raquel
Herrero-Beaumont, Gabriel
Mediero, Aránzazu
author_sort Marco-Bonilla, Miguel
collection PubMed
description Introduction: Sarcopenia is defined as a loss of muscle mass and strength. ATP homeostasis is crucial during myogenesis. We determined how the purinergic system modulates myogenesis using dipyridamole (blocks adenosine taken up by the cells) and tenofovir (inhibits ATP release) in a myoblast cell line. Methods: C2C12 cells were differentiated in the presence/absence of tenofovir/dipyridamole, with/without the A2B selective inhibitor PSB-603. Extra-/intracellular nucleotides were examined via HPLC. The expression of muscle differentiation proteins (Pax7, Mif5, MyoD, MyoG, and MHC), PKA/CREB, adenosine receptors (A1, A2A, A2B, and A3), ATP-channel pannexin-1 and the P2X7 receptor was analyzed via WB and RT-PCR. cAMP and AMPK activation was measured. Results: Tenofovir increased intracellular ATP and reduced extracellular adenosine, decreasing Pax7 expression and increasing MHC expression prematurely. Dipyridamole increased intracellular AMP and extracellular adenosine, counteracting the premature myogenesis promoted by tenofovir. All adenosine receptors were expressed during differentiation with dipyridamole, increasing A2B expression. Tenofovir maintained inactive AMPK and decreased cAMP levels, as well as PKAα and pCREB expression, which were recovered with dipyridamole. Discussion: Adenosine and ATP act as mediators in muscle myogenesis. The blockade of ATP release by tenofovir promotes premature myogenesis, with dipyridamole counteracting the premature differentiation promoted by tenofovir via the adenosine A2B receptor and cAMP/AMPK pathways. Therefore, dipyridamole might be of interest as a therapeutic approach in sarcopenia.
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spelling pubmed-105228372023-09-28 Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells Marco-Bonilla, Miguel Herencia, Raquel Fresnadillo, María Huete-Toral, Fernando Carracedo, Gonzalo Largo, Raquel Herrero-Beaumont, Gabriel Mediero, Aránzazu Front Pharmacol Pharmacology Introduction: Sarcopenia is defined as a loss of muscle mass and strength. ATP homeostasis is crucial during myogenesis. We determined how the purinergic system modulates myogenesis using dipyridamole (blocks adenosine taken up by the cells) and tenofovir (inhibits ATP release) in a myoblast cell line. Methods: C2C12 cells were differentiated in the presence/absence of tenofovir/dipyridamole, with/without the A2B selective inhibitor PSB-603. Extra-/intracellular nucleotides were examined via HPLC. The expression of muscle differentiation proteins (Pax7, Mif5, MyoD, MyoG, and MHC), PKA/CREB, adenosine receptors (A1, A2A, A2B, and A3), ATP-channel pannexin-1 and the P2X7 receptor was analyzed via WB and RT-PCR. cAMP and AMPK activation was measured. Results: Tenofovir increased intracellular ATP and reduced extracellular adenosine, decreasing Pax7 expression and increasing MHC expression prematurely. Dipyridamole increased intracellular AMP and extracellular adenosine, counteracting the premature myogenesis promoted by tenofovir. All adenosine receptors were expressed during differentiation with dipyridamole, increasing A2B expression. Tenofovir maintained inactive AMPK and decreased cAMP levels, as well as PKAα and pCREB expression, which were recovered with dipyridamole. Discussion: Adenosine and ATP act as mediators in muscle myogenesis. The blockade of ATP release by tenofovir promotes premature myogenesis, with dipyridamole counteracting the premature differentiation promoted by tenofovir via the adenosine A2B receptor and cAMP/AMPK pathways. Therefore, dipyridamole might be of interest as a therapeutic approach in sarcopenia. Frontiers Media S.A. 2023-09-12 /pmc/articles/PMC10522837/ /pubmed/37771723 http://dx.doi.org/10.3389/fphar.2023.1247664 Text en Copyright © 2023 Marco-Bonilla, Herencia, Fresnadillo, Huete-Toral, Carracedo, Largo, Herrero-Beaumont and Mediero. https://creativecommons.org/licenses/by/4.0/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.
spellingShingle Pharmacology
Marco-Bonilla, Miguel
Herencia, Raquel
Fresnadillo, María
Huete-Toral, Fernando
Carracedo, Gonzalo
Largo, Raquel
Herrero-Beaumont, Gabriel
Mediero, Aránzazu
Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title_full Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title_fullStr Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title_full_unstemmed Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title_short Dipyridamole activates adenosine A2B receptor and AMPK/cAMP signaling and promotes myogenic differentiation of myoblastic C2C12 cells
title_sort dipyridamole activates adenosine a2b receptor and ampk/camp signaling and promotes myogenic differentiation of myoblastic c2c12 cells
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10522837/
https://www.ncbi.nlm.nih.gov/pubmed/37771723
http://dx.doi.org/10.3389/fphar.2023.1247664
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