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Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure

Atrial fibrillation (AF) is a major healthcare challenge contributing to high morbidity and mortality. Treatment options are still limited, mainly due to insufficient understanding of the underlying pathophysiology. Further research and the development of reliable animal models resembling the human...

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Autores principales: Clauss, Sebastian, Schüttler, Dominik, Bleyer, Christina, Vlcek, Julia, Shakarami, Mehdi, Tomsits, Philipp, Schneider, Sarah, Maderspacher, Florian, Chataut, Kavi, Trebo, Anna, Wang, Christine, Kleeberger, Jan, Xia, Ruibing, Baloch, Elisabeth, Hildebrand, Bianca, Massberg, Steffen, Wakili, Reza, Kääb, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7197782/
https://www.ncbi.nlm.nih.gov/pubmed/32365085
http://dx.doi.org/10.1371/journal.pone.0232374
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author Clauss, Sebastian
Schüttler, Dominik
Bleyer, Christina
Vlcek, Julia
Shakarami, Mehdi
Tomsits, Philipp
Schneider, Sarah
Maderspacher, Florian
Chataut, Kavi
Trebo, Anna
Wang, Christine
Kleeberger, Jan
Xia, Ruibing
Baloch, Elisabeth
Hildebrand, Bianca
Massberg, Steffen
Wakili, Reza
Kääb, Stefan
author_facet Clauss, Sebastian
Schüttler, Dominik
Bleyer, Christina
Vlcek, Julia
Shakarami, Mehdi
Tomsits, Philipp
Schneider, Sarah
Maderspacher, Florian
Chataut, Kavi
Trebo, Anna
Wang, Christine
Kleeberger, Jan
Xia, Ruibing
Baloch, Elisabeth
Hildebrand, Bianca
Massberg, Steffen
Wakili, Reza
Kääb, Stefan
author_sort Clauss, Sebastian
collection PubMed
description Atrial fibrillation (AF) is a major healthcare challenge contributing to high morbidity and mortality. Treatment options are still limited, mainly due to insufficient understanding of the underlying pathophysiology. Further research and the development of reliable animal models resembling the human disease phenotype is therefore necessary to develop novel, innovative and ideally causal therapies. Since ischaemic heart failure (IHF) is a major cause for AF in patients we investigated AF in the context of IHF in a close-to-human porcine ischaemia-reperfusion model. Myocardial infarction (AMI) was induced in propofol/fentanyl/midazolam-anaesthetized pigs by occluding the left anterior descending artery for 90 minutes to model ischaemia with reperfusion. After 30 days ejection fraction (EF) was significantly reduced and haemodynamic parameters (pulmonary capillary wedge pressure (PCWP), right atrial pressure (RAP), left ventricular enddiastolic pressure (LVEDP)) were significantly elevated compared to age/weight matched control pigs without AMI, demonstrating an IHF phenotype. Electrophysiological properties (sinus node recovery time (SNRT), atrial/AV nodal refractory periods (AERP, AVERP)) did not differ between groups. Atrial burst pacing at 1200 bpm, however, revealed a significantly higher inducibility of atrial arrhythmia episodes including AF in IHF pigs (3/15 vs. 10/16, p = 0.029). Histological analysis showed pronounced left atrial and left ventricular fibrosis demonstrating a structural substrate underlying the increased arrhythmogenicity. Consequently, selective ventricular infarction via LAD occlusion causes haemodynamic alterations inducing structural atrial remodeling which results in increased atrial fibrosis as the arrhythmogenic atrial substrate in pigs with IHF.
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spelling pubmed-71977822020-05-12 Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure Clauss, Sebastian Schüttler, Dominik Bleyer, Christina Vlcek, Julia Shakarami, Mehdi Tomsits, Philipp Schneider, Sarah Maderspacher, Florian Chataut, Kavi Trebo, Anna Wang, Christine Kleeberger, Jan Xia, Ruibing Baloch, Elisabeth Hildebrand, Bianca Massberg, Steffen Wakili, Reza Kääb, Stefan PLoS One Research Article Atrial fibrillation (AF) is a major healthcare challenge contributing to high morbidity and mortality. Treatment options are still limited, mainly due to insufficient understanding of the underlying pathophysiology. Further research and the development of reliable animal models resembling the human disease phenotype is therefore necessary to develop novel, innovative and ideally causal therapies. Since ischaemic heart failure (IHF) is a major cause for AF in patients we investigated AF in the context of IHF in a close-to-human porcine ischaemia-reperfusion model. Myocardial infarction (AMI) was induced in propofol/fentanyl/midazolam-anaesthetized pigs by occluding the left anterior descending artery for 90 minutes to model ischaemia with reperfusion. After 30 days ejection fraction (EF) was significantly reduced and haemodynamic parameters (pulmonary capillary wedge pressure (PCWP), right atrial pressure (RAP), left ventricular enddiastolic pressure (LVEDP)) were significantly elevated compared to age/weight matched control pigs without AMI, demonstrating an IHF phenotype. Electrophysiological properties (sinus node recovery time (SNRT), atrial/AV nodal refractory periods (AERP, AVERP)) did not differ between groups. Atrial burst pacing at 1200 bpm, however, revealed a significantly higher inducibility of atrial arrhythmia episodes including AF in IHF pigs (3/15 vs. 10/16, p = 0.029). Histological analysis showed pronounced left atrial and left ventricular fibrosis demonstrating a structural substrate underlying the increased arrhythmogenicity. Consequently, selective ventricular infarction via LAD occlusion causes haemodynamic alterations inducing structural atrial remodeling which results in increased atrial fibrosis as the arrhythmogenic atrial substrate in pigs with IHF. Public Library of Science 2020-05-04 /pmc/articles/PMC7197782/ /pubmed/32365085 http://dx.doi.org/10.1371/journal.pone.0232374 Text en © 2020 Clauss 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
Clauss, Sebastian
Schüttler, Dominik
Bleyer, Christina
Vlcek, Julia
Shakarami, Mehdi
Tomsits, Philipp
Schneider, Sarah
Maderspacher, Florian
Chataut, Kavi
Trebo, Anna
Wang, Christine
Kleeberger, Jan
Xia, Ruibing
Baloch, Elisabeth
Hildebrand, Bianca
Massberg, Steffen
Wakili, Reza
Kääb, Stefan
Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title_full Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title_fullStr Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title_full_unstemmed Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title_short Characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
title_sort characterization of a porcine model of atrial arrhythmogenicity in the context of ischaemic heart failure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7197782/
https://www.ncbi.nlm.nih.gov/pubmed/32365085
http://dx.doi.org/10.1371/journal.pone.0232374
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