Impaired Impulse Propagation in Scn5a -Knockout Mice
- 27 September 2005
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 112 (13) , 1927-1935
- https://doi.org/10.1161/circulationaha.105.539072
Abstract
Background— The SCN5A sodium channel is a major determinant for cardiac impulse propagation. We used epicardial mapping of the atria, ventricles, and septae to investigate conduction velocity (CV) in Scn5a heterozygous young and old mice. Methods and Results— Mice were divided into 4 groups: (1) young (3 to 4 months) wild-type littermates (WT); (2) young heterozygous Scn5a -knockout mice (HZ); (3) old (12 to 17 months) WT; and (4) old HZ. In young HZ hearts, CV in the right but not the left ventricle was reduced in agreement with a rightward rotation in the QRS axes; fibrosis was virtually absent in both ventricles, and the pattern of connexin43 (Cx43) expression was similar to that of WT mice. In old WT animals, the right ventricle transversal CV was slightly reduced and was associated with interstitial fibrosis. In old HZ hearts, right and left ventricle CVs were severely reduced both in the transversal and longitudinal direction; multiple areas of severe reactive fibrosis invaded the myocardium, accompanied by markedly altered Cx43 expression. The right and left bundle-branch CVs were comparable to those of WT animals. The atria showed only mild fibrosis, with heterogeneously disturbed Cx40 and Cx43 expression. Conclusions— A 50% reduction in Scn5a expression alone or age-related interstitial fibrosis only slightly affects conduction. In aged HZ mice, reduced Scn5a expression is accompanied by the presence of reactive fibrosis and disarrangement of gap junctions, which results in profound conduction impairment.Keywords
This publication has 14 references indexed in Scilit:
- Mouse Model of SCN5A -Linked Hereditary Lenègre’s DiseaseCirculation, 2005
- Slow Conduction and Enhanced Anisotropy Increase the Propensity for Ventricular Tachyarrhythmias in Adult Mice With Induced Deletion of Connexin43Circulation, 2004
- Replacement of Connexin40 by Connexin45 in the MouseCirculation Research, 2004
- Haploinsufficiency in combination with aging causes SCN5A-linked hereditary Lenègre diseaseJournal of the American College of Cardiology, 2003
- Defective cardiac ion channels: from mutations to clinical syndromesJournal of Clinical Investigation, 2002
- Remodeling of Gap Junctions in Mouse Hearts Hypertrophied by Forced Retinoic Acid SignalingJournal of Molecular and Cellular Cardiology, 2002
- Genotype-phenotype relationship in Brugada syndrome: electrocardiographic features differentiate SCN5A-related patients from non–SCN5A-related patientsJournal of the American College of Cardiology, 2002
- Slowed conduction and ventricular tachycardia after targeted disruption of the cardiac sodium channel gene Scn5aProceedings of the National Academy of Sciences, 2002
- Characterization of Conduction in the Ventricles of Normal and Heterozygous Cx43 Knockout Mice Using Optical MappingJournal of Cardiovascular Electrophysiology, 1999
- Cardiac conduction defects associate with mutations in SCN5ANature Genetics, 1999