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Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk

Connexin 43 (CX43) is one of the major components of gap junctions, the structures responsible for the intercellular communication and transmission of the electrical impulse in the left ventricle. There is limited information on the histological changes of CX43 with age and their effect on electroph...

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Autores principales: García-Mendívil, Laura, Pérez-Zabalza, María, Oliver-Gelabert, Antoni, Vallejo-Gil, José María, Fañanás-Mastral, Javier, Vázquez-Sancho, Manuel, Bellido-Morales, Javier André, Vaca-Núñez, Alexánder Sebastián, Ballester-Cuenca, Carlos, Diez, Emiliano, Ordovás, Laura, Pueyo, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650968/
https://www.ncbi.nlm.nih.gov/pubmed/38023417
http://dx.doi.org/10.34133/research.0254
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author García-Mendívil, Laura
Pérez-Zabalza, María
Oliver-Gelabert, Antoni
Vallejo-Gil, José María
Fañanás-Mastral, Javier
Vázquez-Sancho, Manuel
Bellido-Morales, Javier André
Vaca-Núñez, Alexánder Sebastián
Ballester-Cuenca, Carlos
Diez, Emiliano
Ordovás, Laura
Pueyo, Esther
author_facet García-Mendívil, Laura
Pérez-Zabalza, María
Oliver-Gelabert, Antoni
Vallejo-Gil, José María
Fañanás-Mastral, Javier
Vázquez-Sancho, Manuel
Bellido-Morales, Javier André
Vaca-Núñez, Alexánder Sebastián
Ballester-Cuenca, Carlos
Diez, Emiliano
Ordovás, Laura
Pueyo, Esther
author_sort García-Mendívil, Laura
collection PubMed
description Connexin 43 (CX43) is one of the major components of gap junctions, the structures responsible for the intercellular communication and transmission of the electrical impulse in the left ventricle. There is limited information on the histological changes of CX43 with age and their effect on electrophysiology, especially in humans. Here, we analyzed left ventricular biopsies from living donors starting at midlife to characterize age-related CX43 remodeling. We assessed its quantity, degree of lateralization, and spatial heterogeneity together with fibrotic deposition. We observed no significant age-related remodeling of CX43. Only spatial heterogeneity increased slightly with age, and this increase was better explained by biological age than by chronological age. Importantly, we found that CX43 features varied considerably among individuals in our population with no relevant relationship to age or fibrosis content, in contrast to animal species. We used our experimental results to feed computational models of human ventricular electrophysiology and to assess the effects of interindividual differences in specific features of CX43 and fibrosis on conduction velocity, action potential duration, and arrhythmogenicity. We found that larger amounts of fibrosis were associated with the highest arrhythmic risk, with this risk being increased when fibrosis deposition was combined with a reduction in CX43 amount and/or with an increase in CX43 spatial heterogeneity. These mechanisms underlying high arrhythmic risk in some individuals were not associated with age in our study population. In conclusion, our data rule out CX43 remodeling as an age-related arrhythmic substrate in the population beyond midlife, but highlight its potential as a proarrhythmic factor at the individual level, especially when combined with increased fibrosis.
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spelling pubmed-106509682023-11-15 Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk García-Mendívil, Laura Pérez-Zabalza, María Oliver-Gelabert, Antoni Vallejo-Gil, José María Fañanás-Mastral, Javier Vázquez-Sancho, Manuel Bellido-Morales, Javier André Vaca-Núñez, Alexánder Sebastián Ballester-Cuenca, Carlos Diez, Emiliano Ordovás, Laura Pueyo, Esther Research (Wash D C) Research Article Connexin 43 (CX43) is one of the major components of gap junctions, the structures responsible for the intercellular communication and transmission of the electrical impulse in the left ventricle. There is limited information on the histological changes of CX43 with age and their effect on electrophysiology, especially in humans. Here, we analyzed left ventricular biopsies from living donors starting at midlife to characterize age-related CX43 remodeling. We assessed its quantity, degree of lateralization, and spatial heterogeneity together with fibrotic deposition. We observed no significant age-related remodeling of CX43. Only spatial heterogeneity increased slightly with age, and this increase was better explained by biological age than by chronological age. Importantly, we found that CX43 features varied considerably among individuals in our population with no relevant relationship to age or fibrosis content, in contrast to animal species. We used our experimental results to feed computational models of human ventricular electrophysiology and to assess the effects of interindividual differences in specific features of CX43 and fibrosis on conduction velocity, action potential duration, and arrhythmogenicity. We found that larger amounts of fibrosis were associated with the highest arrhythmic risk, with this risk being increased when fibrosis deposition was combined with a reduction in CX43 amount and/or with an increase in CX43 spatial heterogeneity. These mechanisms underlying high arrhythmic risk in some individuals were not associated with age in our study population. In conclusion, our data rule out CX43 remodeling as an age-related arrhythmic substrate in the population beyond midlife, but highlight its potential as a proarrhythmic factor at the individual level, especially when combined with increased fibrosis. AAAS 2023-11-15 /pmc/articles/PMC10650968/ /pubmed/38023417 http://dx.doi.org/10.34133/research.0254 Text en Copyright © 2023 Laura García-Mendívil et al. https://creativecommons.org/licenses/by/4.0/Exclusive licensee Science and Technology Review Publishing House. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
García-Mendívil, Laura
Pérez-Zabalza, María
Oliver-Gelabert, Antoni
Vallejo-Gil, José María
Fañanás-Mastral, Javier
Vázquez-Sancho, Manuel
Bellido-Morales, Javier André
Vaca-Núñez, Alexánder Sebastián
Ballester-Cuenca, Carlos
Diez, Emiliano
Ordovás, Laura
Pueyo, Esther
Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title_full Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title_fullStr Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title_full_unstemmed Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title_short Interindividual Age-Independent Differences in Human CX43 Impact Ventricular Arrhythmic Risk
title_sort interindividual age-independent differences in human cx43 impact ventricular arrhythmic risk
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650968/
https://www.ncbi.nlm.nih.gov/pubmed/38023417
http://dx.doi.org/10.34133/research.0254
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