Repositorio Institucional de la Universidad Alfonso X el Sabio

miR-16-5p Suppression Protects Human Cardiomyocytes against Endoplasmic Reticulum and Oxidative Stress-Induced Injury

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Toro, Rocío & Pérez Serra, Alexandra & Mangas, Alipio & Campuzano, Oscar & Sarquella Brugada, Georgia & Quezada Feijoó, Dolores Maribel & Ramos, Mónica & Alcalá, Martin & Carrera, Esther & García Padilla, Carlos & Franco, Diego & Bonet, Fernando .miR-16-5p Suppression Protects Human Cardiomyocytes against Endoplasmic Reticulum and Oxidative Stress-Induced Injury.

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Toro, Rocío & Pérez Serra, Alexandra & Mangas, Alipio & Campuzano, Oscar & Sarquella Brugada, Georgia & Quezada Feijoó, Dolores Maribel & Ramos, Mónica & Alcalá, Martin & Carrera, Esther & García Padilla, Carlos & Franco, Diego & Bonet, Fernando. miR-16-5p Suppression Protects Human Cardiomyocytes against Endoplasmic Reticulum and Oxidative Stress-Induced Injury.

https://hdl.handle.net/20.500.12080/29143
dc.contributor.author Toro, Rocío
dc.contributor.author Pérez Serra, Alexandra
dc.contributor.author Mangas, Alipio
dc.contributor.author Campuzano, Oscar
dc.contributor.author Sarquella Brugada, Georgia
dc.contributor.author Quezada Feijoó, Dolores Maribel
dc.contributor.author Ramos, Mónica
dc.contributor.author Alcalá, Martin
dc.contributor.author Carrera, Esther
dc.contributor.author García Padilla, Carlos
dc.contributor.author Franco, Diego
dc.contributor.author Bonet, Fernando
dc.date.accessioned 2022-01-25T13:22:35Z
dc.date.available 2022-01-25T13:22:35Z
dc.date.created 2022-01-18
dc.identifier.uri https://hdl.handle.net/20.500.12080/29143
dc.description.abstract Oxidative stress, defined as the excess production of reactive oxygen species (ROS) relative to antioxidant defense, plays a significant role in the development of cardiovascular diseases. Endoplasmic reticulum (ER) stress has emerged as an important source of ROS and its modulation could be cardioprotective. Previously, we demonstrated that miR-16-5p is enriched in the plasma of ischemic dilated cardiomyopathy (ICM) patients and promotes ER stress-induced apoptosis in cardiomyocytes in vitro. Here, we hypothesize that miR-16-5p might contribute to oxidative stress through ER stress induction and that targeting miR-16-5p may exert a cardioprotective role in ER stress-mediated cardiac injury. Analysis of oxidative markers in the plasma of ICM patients demonstrates that oxidative stress is associated with ICM. Moreover, we confirm that miR-16-5p overexpression promotes oxidative stress in AC16 cardiomyoblasts. We also find that, in response to tunicamycin-induced ER stress, miR-16-5p suppression decreases apoptosis, inflammation and cardiac damage via activating the ATF6-mediated cytoprotective pathway. Finally, ATF6 is identified as a direct target gene of miR-16-5p by dual-luciferase reporter assays. Our results indicate that miR-16-5p promotes ER stress and oxidative stress in cardiac cells through regulating ATF6, suggesting that the inhibition of miR-16-5p has potential as a therapeutic approach to protect the heart against ER and oxidative stress-induced injury. Keywords: miR-16-5p; ischemic dilated cardiomyopathy; reactive oxygen species; endoplasmic reticulum stress; ATF6 es_ES
dc.format application/pdf es_ES
dc.language eng es_ES
dc.rights CC-BY es_ES
dc.rights.uri http://creativecommons.org/licenses/by/4.0/deed.es es_ES
dc.title miR-16-5p Suppression Protects Human Cardiomyocytes against Endoplasmic Reticulum and Oxidative Stress-Induced Injury es_ES
dc.type info:eu-repo/semantics/article es_ES
dc.rights.accessrights info:eu-repo/semantics/openAccess es_ES
dc.identifier.location N/A es_ES


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