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T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure

Alterations of the β-adrenergic signalling, structural remodelling, and electrical failure of T-tubules are hallmarks of heart failure (HF). Here, we assess the effect of β-adrenoceptor activation on local Ca(2+) release in electrically coupled and uncoupled T-tubules in ventricular myocytes from HF...

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Autores principales: Crocini, Claudia, Coppini, Raffaele, Ferrantini, Cecilia, Yan, Ping, Loew, Leslie M., Poggesi, Corrado, Cerbai, Elisabetta, Pavone, Francesco S., Sacconi, Leonardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5037749/
https://www.ncbi.nlm.nih.gov/pubmed/27598150
http://dx.doi.org/10.3390/ijms17091471
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author Crocini, Claudia
Coppini, Raffaele
Ferrantini, Cecilia
Yan, Ping
Loew, Leslie M.
Poggesi, Corrado
Cerbai, Elisabetta
Pavone, Francesco S.
Sacconi, Leonardo
author_facet Crocini, Claudia
Coppini, Raffaele
Ferrantini, Cecilia
Yan, Ping
Loew, Leslie M.
Poggesi, Corrado
Cerbai, Elisabetta
Pavone, Francesco S.
Sacconi, Leonardo
author_sort Crocini, Claudia
collection PubMed
description Alterations of the β-adrenergic signalling, structural remodelling, and electrical failure of T-tubules are hallmarks of heart failure (HF). Here, we assess the effect of β-adrenoceptor activation on local Ca(2+) release in electrically coupled and uncoupled T-tubules in ventricular myocytes from HF rats. We employ an ultrafast random access multi-photon (RAMP) microscope to simultaneously record action potentials and Ca(2+) transients from multiple T-tubules in ventricular cardiomyocytes from a HF rat model of coronary ligation compared to sham-operated rats as a control. We confirmed that β-adrenergic stimulation increases the frequency of Ca(2+) sparks, reduces Ca(2+) transient variability, and hastens the decay of Ca(2+) transients: all these effects are similarly exerted by β-adrenergic stimulation in control and HF cardiomyocytes. Conversely, β-adrenergic stimulation in HF cells accelerates a Ca(2+) rise exclusively in the proximity of T-tubules that regularly conduct the action potential. The delayed Ca(2+) rise found at T-tubules that fail to conduct the action potential is instead not affected by β-adrenergic signalling. Taken together, these findings indicate that HF cells globally respond to β-adrenergic stimulation, except at T-tubules that fail to conduct action potentials, where the blunted effect of the β-adrenergic signalling may be directly caused by the lack of electrical activity.
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spelling pubmed-50377492016-09-29 T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure Crocini, Claudia Coppini, Raffaele Ferrantini, Cecilia Yan, Ping Loew, Leslie M. Poggesi, Corrado Cerbai, Elisabetta Pavone, Francesco S. Sacconi, Leonardo Int J Mol Sci Article Alterations of the β-adrenergic signalling, structural remodelling, and electrical failure of T-tubules are hallmarks of heart failure (HF). Here, we assess the effect of β-adrenoceptor activation on local Ca(2+) release in electrically coupled and uncoupled T-tubules in ventricular myocytes from HF rats. We employ an ultrafast random access multi-photon (RAMP) microscope to simultaneously record action potentials and Ca(2+) transients from multiple T-tubules in ventricular cardiomyocytes from a HF rat model of coronary ligation compared to sham-operated rats as a control. We confirmed that β-adrenergic stimulation increases the frequency of Ca(2+) sparks, reduces Ca(2+) transient variability, and hastens the decay of Ca(2+) transients: all these effects are similarly exerted by β-adrenergic stimulation in control and HF cardiomyocytes. Conversely, β-adrenergic stimulation in HF cells accelerates a Ca(2+) rise exclusively in the proximity of T-tubules that regularly conduct the action potential. The delayed Ca(2+) rise found at T-tubules that fail to conduct the action potential is instead not affected by β-adrenergic signalling. Taken together, these findings indicate that HF cells globally respond to β-adrenergic stimulation, except at T-tubules that fail to conduct action potentials, where the blunted effect of the β-adrenergic signalling may be directly caused by the lack of electrical activity. MDPI 2016-09-03 /pmc/articles/PMC5037749/ /pubmed/27598150 http://dx.doi.org/10.3390/ijms17091471 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Crocini, Claudia
Coppini, Raffaele
Ferrantini, Cecilia
Yan, Ping
Loew, Leslie M.
Poggesi, Corrado
Cerbai, Elisabetta
Pavone, Francesco S.
Sacconi, Leonardo
T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title_full T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title_fullStr T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title_full_unstemmed T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title_short T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
title_sort t-tubular electrical defects contribute to blunted β-adrenergic response in heart failure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5037749/
https://www.ncbi.nlm.nih.gov/pubmed/27598150
http://dx.doi.org/10.3390/ijms17091471
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