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A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity

BACKGROUND: The left atrial posterior wall (LAPW) is potentially an important area for the development and maintenance of atrial fibrillation. We assessed whether there are regional electrical differences throughout the murine left atrial myocardium that could underlie regional differences in arrhyt...

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Autores principales: Holmes, Andrew P., Yu, Ting Y., Tull, Samantha, Syeda, Fahima, Kuhlmann, Stefan M., O’Brien, Sian-Marie, Patel, Pushpa, Brain, Keith L., Pavlovic, Davor, Brown, Nigel A., Fabritz, Larissa, Kirchhof, Paulus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858288/
https://www.ncbi.nlm.nih.gov/pubmed/27149380
http://dx.doi.org/10.1371/journal.pone.0154077
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author Holmes, Andrew P.
Yu, Ting Y.
Tull, Samantha
Syeda, Fahima
Kuhlmann, Stefan M.
O’Brien, Sian-Marie
Patel, Pushpa
Brain, Keith L.
Pavlovic, Davor
Brown, Nigel A.
Fabritz, Larissa
Kirchhof, Paulus
author_facet Holmes, Andrew P.
Yu, Ting Y.
Tull, Samantha
Syeda, Fahima
Kuhlmann, Stefan M.
O’Brien, Sian-Marie
Patel, Pushpa
Brain, Keith L.
Pavlovic, Davor
Brown, Nigel A.
Fabritz, Larissa
Kirchhof, Paulus
author_sort Holmes, Andrew P.
collection PubMed
description BACKGROUND: The left atrial posterior wall (LAPW) is potentially an important area for the development and maintenance of atrial fibrillation. We assessed whether there are regional electrical differences throughout the murine left atrial myocardium that could underlie regional differences in arrhythmia susceptibility. METHODS: We used high-resolution optical mapping and sharp microelectrode recordings to quantify regional differences in electrical activation and repolarisation within the intact, superfused murine left atrium and quantified regional ion channel mRNA expression by Taqman Low Density Array. We also performed selected cellular electrophysiology experiments to validate regional differences in ion channel function. RESULTS: Spontaneous ectopic activity was observed during sustained 1Hz pacing in 10/19 intact LA and this was abolished following resection of LAPW (0/19 resected LA, P<0.001). The source of the ectopic activity was the LAPW myocardium, distinct from the pulmonary vein sleeve and LAA, determined by optical mapping. Overall, LAPW action potentials (APs) were ca. 40% longer than the LAA and this region displayed more APD heterogeneity. mRNA expression of Kcna4, Kcnj3 and Kcnj5 was lower in the LAPW myocardium than in the LAA. Cardiomyocytes isolated from the LAPW had decreased I(to) and a reduced I(KACh) current density at both positive and negative test potentials. CONCLUSIONS: The murine LAPW myocardium has a different electrical phenotype and ion channel mRNA expression profile compared with other regions of the LA, and this is associated with increased ectopic activity. If similar regional electrical differences are present in the human LA, then the LAPW may be a potential future target for treatment of atrial fibrillation.
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spelling pubmed-48582882016-05-13 A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity Holmes, Andrew P. Yu, Ting Y. Tull, Samantha Syeda, Fahima Kuhlmann, Stefan M. O’Brien, Sian-Marie Patel, Pushpa Brain, Keith L. Pavlovic, Davor Brown, Nigel A. Fabritz, Larissa Kirchhof, Paulus PLoS One Research Article BACKGROUND: The left atrial posterior wall (LAPW) is potentially an important area for the development and maintenance of atrial fibrillation. We assessed whether there are regional electrical differences throughout the murine left atrial myocardium that could underlie regional differences in arrhythmia susceptibility. METHODS: We used high-resolution optical mapping and sharp microelectrode recordings to quantify regional differences in electrical activation and repolarisation within the intact, superfused murine left atrium and quantified regional ion channel mRNA expression by Taqman Low Density Array. We also performed selected cellular electrophysiology experiments to validate regional differences in ion channel function. RESULTS: Spontaneous ectopic activity was observed during sustained 1Hz pacing in 10/19 intact LA and this was abolished following resection of LAPW (0/19 resected LA, P<0.001). The source of the ectopic activity was the LAPW myocardium, distinct from the pulmonary vein sleeve and LAA, determined by optical mapping. Overall, LAPW action potentials (APs) were ca. 40% longer than the LAA and this region displayed more APD heterogeneity. mRNA expression of Kcna4, Kcnj3 and Kcnj5 was lower in the LAPW myocardium than in the LAA. Cardiomyocytes isolated from the LAPW had decreased I(to) and a reduced I(KACh) current density at both positive and negative test potentials. CONCLUSIONS: The murine LAPW myocardium has a different electrical phenotype and ion channel mRNA expression profile compared with other regions of the LA, and this is associated with increased ectopic activity. If similar regional electrical differences are present in the human LA, then the LAPW may be a potential future target for treatment of atrial fibrillation. Public Library of Science 2016-05-05 /pmc/articles/PMC4858288/ /pubmed/27149380 http://dx.doi.org/10.1371/journal.pone.0154077 Text en © 2016 Holmes et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Holmes, Andrew P.
Yu, Ting Y.
Tull, Samantha
Syeda, Fahima
Kuhlmann, Stefan M.
O’Brien, Sian-Marie
Patel, Pushpa
Brain, Keith L.
Pavlovic, Davor
Brown, Nigel A.
Fabritz, Larissa
Kirchhof, Paulus
A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title_full A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title_fullStr A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title_full_unstemmed A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title_short A Regional Reduction in I(to) and I(KACh) in the Murine Posterior Left Atrial Myocardium Is Associated with Action Potential Prolongation and Increased Ectopic Activity
title_sort regional reduction in i(to) and i(kach) in the murine posterior left atrial myocardium is associated with action potential prolongation and increased ectopic activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858288/
https://www.ncbi.nlm.nih.gov/pubmed/27149380
http://dx.doi.org/10.1371/journal.pone.0154077
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