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Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties

We report for the first time abnormalities in cardiac ventricular electrophysiology in a genetically modified murine model lacking the Scn3b gene (Scn3b(−/−)). Scn3b(−/−) mice were created by homologous recombination in embryonic stem (ES) cells. RT-PCR analysis confirmed that Scn3b mRNA was express...

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Detalles Bibliográficos
Autores principales: Hakim, Parvez, Gurung, Iman S., Pedersen, Thomas H., Thresher, Rosemary, Brice, Nicola, Lawrence, Jason, Grace, Andrew A., Huang, Christopher L.-H.
Formato: Texto
Lenguaje:English
Publicado: Pergamon Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2764399/
https://www.ncbi.nlm.nih.gov/pubmed/19351516
http://dx.doi.org/10.1016/j.pbiomolbio.2009.01.005
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author Hakim, Parvez
Gurung, Iman S.
Pedersen, Thomas H.
Thresher, Rosemary
Brice, Nicola
Lawrence, Jason
Grace, Andrew A.
Huang, Christopher L.-H.
author_facet Hakim, Parvez
Gurung, Iman S.
Pedersen, Thomas H.
Thresher, Rosemary
Brice, Nicola
Lawrence, Jason
Grace, Andrew A.
Huang, Christopher L.-H.
author_sort Hakim, Parvez
collection PubMed
description We report for the first time abnormalities in cardiac ventricular electrophysiology in a genetically modified murine model lacking the Scn3b gene (Scn3b(−/−)). Scn3b(−/−) mice were created by homologous recombination in embryonic stem (ES) cells. RT-PCR analysis confirmed that Scn3b mRNA was expressed in the ventricles of wild-type (WT) hearts but was absent in the Scn3b(−/−) hearts. These hearts also showed increased expression levels of Scn1b mRNA in both ventricles and Scn5a mRNA in the right ventricles compared to findings in WT hearts. Scn1b and Scn5a mRNA was expressed at higher levels in the left than in the right ventricles of both Scn3b(−/−) and WT hearts. Bipolar electrogram and monophasic action potential recordings from the ventricles of Langendorff-perfused Scn3b(−/−) hearts demonstrated significantly shorter ventricular effective refractory periods (VERPs), larger ratios of electrogram duration obtained at the shortest and longest S(1)–S(2) intervals, and ventricular tachycardias (VTs) induced by programmed electrical stimulation. Such arrhythmogenesis took the form of either monomorphic or polymorphic VT. Despite shorter action potential durations (APDs) in both the endocardium and epicardium, Scn3b(−/−) hearts showed ΔAPD(90) values that remained similar to those shown in WT hearts. The whole-cell patch-clamp technique applied to ventricular myocytes isolated from Scn3b(−/−) hearts demonstrated reduced peak Na(+) current densities and inactivation curves that were shifted in the negative direction, relative to those shown in WT myocytes. Together, these findings associate the lack of the Scn3b gene with arrhythmic tendencies in intact perfused hearts and electrophysiological features similar to those in Scn5a(+/−) hearts.
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spelling pubmed-27643992009-10-23 Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties Hakim, Parvez Gurung, Iman S. Pedersen, Thomas H. Thresher, Rosemary Brice, Nicola Lawrence, Jason Grace, Andrew A. Huang, Christopher L.-H. Prog Biophys Mol Biol Original Research We report for the first time abnormalities in cardiac ventricular electrophysiology in a genetically modified murine model lacking the Scn3b gene (Scn3b(−/−)). Scn3b(−/−) mice were created by homologous recombination in embryonic stem (ES) cells. RT-PCR analysis confirmed that Scn3b mRNA was expressed in the ventricles of wild-type (WT) hearts but was absent in the Scn3b(−/−) hearts. These hearts also showed increased expression levels of Scn1b mRNA in both ventricles and Scn5a mRNA in the right ventricles compared to findings in WT hearts. Scn1b and Scn5a mRNA was expressed at higher levels in the left than in the right ventricles of both Scn3b(−/−) and WT hearts. Bipolar electrogram and monophasic action potential recordings from the ventricles of Langendorff-perfused Scn3b(−/−) hearts demonstrated significantly shorter ventricular effective refractory periods (VERPs), larger ratios of electrogram duration obtained at the shortest and longest S(1)–S(2) intervals, and ventricular tachycardias (VTs) induced by programmed electrical stimulation. Such arrhythmogenesis took the form of either monomorphic or polymorphic VT. Despite shorter action potential durations (APDs) in both the endocardium and epicardium, Scn3b(−/−) hearts showed ΔAPD(90) values that remained similar to those shown in WT hearts. The whole-cell patch-clamp technique applied to ventricular myocytes isolated from Scn3b(−/−) hearts demonstrated reduced peak Na(+) current densities and inactivation curves that were shifted in the negative direction, relative to those shown in WT myocytes. Together, these findings associate the lack of the Scn3b gene with arrhythmic tendencies in intact perfused hearts and electrophysiological features similar to those in Scn5a(+/−) hearts. Pergamon Press 2008-10 /pmc/articles/PMC2764399/ /pubmed/19351516 http://dx.doi.org/10.1016/j.pbiomolbio.2009.01.005 Text en © 2008 Elsevier Ltd. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Original Research
Hakim, Parvez
Gurung, Iman S.
Pedersen, Thomas H.
Thresher, Rosemary
Brice, Nicola
Lawrence, Jason
Grace, Andrew A.
Huang, Christopher L.-H.
Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title_full Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title_fullStr Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title_full_unstemmed Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title_short Scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
title_sort scn3b knockout mice exhibit abnormal ventricular electrophysiological properties
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2764399/
https://www.ncbi.nlm.nih.gov/pubmed/19351516
http://dx.doi.org/10.1016/j.pbiomolbio.2009.01.005
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