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Artículo

Chronological and biological aging of the human left ventricular myocardium: analysis of microRNAs contribution

Ramos Marquès, Estel; García Mendívil, Laura; Pérez Zabalza, María; Santander Badules, Hazel; Srinivasan, Sabarathinam; Oliveros, Juan Carlos; Torres Pérez, Rafael; Cebollada, Alberto; Vallejo Gil, José María; Fresneda Roldán, Pedro Carlos; Fañanás Mastral, Javier; Vázquez Sancho, Manuel; Matamala Adell, Marta; Sorribas Berjón, Juan Fernando; Bellido Morales, Javier André; Mancebón Sierra, Francisco Javier; Vaca Núñez, Alexánder Sebastián; Ballester Cuenca, Carlos; Jiménez Navarro, Manuel; Villaescusa, José Manuel; Garrido Huéscar, Elisa; Segovia Roldán, Margarita; Oliván Viguera, Aida; Gómez González, Carlos; Muñiz, Gorka; Diez, Emiliano RaúlIcon ; Ordovás, Laura; Pueyo, Esther
Fecha de publicación: 07/2021
Editorial: Wiley Blackwell Publishing, Inc
Revista: Aging Cell
ISSN: 1474-9718
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Genética Humana

Resumen

Aging is the main risk factor for cardiovascular diseases. In humans, cardiac aging remains poorly characterized. Most studies are based on chronological age (CA) and disregard biological age (BA), the actual physiological age (result of the aging rate on the organ structure and function), thus yielding potentially imperfect outcomes. Deciphering the molecular basis of ventricular aging, especially by BA, could lead to major progresses in cardiac research. We aim to describe the transcriptome dynamics of the aging left ventricle (LV) in humans according to both CA and BA and characterize the contribution of microRNAs, key transcriptional regulators. BA is measured using two CA-associated transcriptional markers: CDKN2A expression, a cell senescence marker, and apparent age (AppAge), a highly complex transcriptional index. Bioinformatics analysis of 132 LV samples shows that CDKN2A expression and AppAge represent transcriptomic changes better than CA. Both BA markers are biologically validated in relation to an aging phenotype associated with heart dysfunction, the amount of cardiac fibrosis. BA-based analyses uncover depleted cardiac-specific processes, among other relevant functions, that are undetected by CA. Twenty BA-related microRNAs are identified, and two of them highly heart-enriched that are present in plasma. We describe a microRNA-gene regulatory network related to cardiac processes that are partially validated in vitro and in LV samples from living donors. We prove the higher sensitivity of BA over CA to explain transcriptomic changes in the aging myocardium and report novel molecular insights into human LV biological aging. Our results can find application in future therapeutic and biomarker research.
Palabras clave: BIOLOGICAL AGING , BIOMARKERS , GENE REGULATION NETWORK , HEART AGING , MICRORNA , TRANSCRIPTOMIC AGE MARKER
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution 2.5 Unported (CC BY 2.5)
Identificadores
URI: http://hdl.handle.net/11336/173279
URL: https://onlinelibrary.wiley.com/doi/10.1111/acel.13383
DOI: http://dx.doi.org/10.1111/acel.13383
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Articulos(IMBECU)
Articulos de INST. DE MEDICINA Y BIO. EXP. DE CUYO
Citación
Ramos Marquès, Estel; García Mendívil, Laura; Pérez Zabalza, María; Santander Badules, Hazel; Srinivasan, Sabarathinam; et al.; Chronological and biological aging of the human left ventricular myocardium: analysis of microRNAs contribution; Wiley Blackwell Publishing, Inc; Aging Cell; 20; 7; 7-2021; 1-16
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