I NaCa contributes to electrical heterogeneity within the canine ventricle
- 1 May 2000
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 278 (5), H1671-H1678
- https://doi.org/10.1152/ajpheart.2000.278.5.h1671
Abstract
This study examines the amplitude of sodium-calcium exchange current (INaCa) in epicardial, midmyocardial, and endocardial canine ventricular myocytes. Whole cell currents were recorded at 37°C using standard or perforated-patch voltage-clamp techniques in the absence of potassium, calcium-activated chloride, and sodium-pump currents.INaCa was triggered by release of calcium from the sarcoplasmic reticulum or by rapid removal of external sodium.INaCa was large in midmyocardial myocytes and significantly smaller in endocardial myocytes, regardless of the method used to activate INaCa. INaCaat −80 mV was −0.316 ± 0.013, −0.293 ± 0.016, and −0.210 ± 0.007 pC/pF, respectively, in midmyocardial, epicardial, and endocardial myocytes when activated by the calcium transient. When triggered by sodium removal, peakINaCa was 0.74 ± 0.04, 0.57 ± 0.04, and 0.50 ± 0.03 pA/pF, respectively, in midmyocardial, epicardial, and endocardial myocytes. Epicardial INaCa was smaller than midmyocardial INaCa when activated by removal of external sodium but was comparable to epicardial and midmyocardial INaCa when activated by the normal calcium transient, implying possible transmural differences in excitation-contraction coupling. Our results suggest thatINaCa differences contribute to transmural electrical heterogeneity under normal and pathological states. A large midmyocardial INaCa may contribute to the prolonged action potential of these cells as well as to the development of triggered activity under calcium-loading conditions.Keywords
This publication has 37 references indexed in Scilit:
- The M Cell:Journal of Cardiovascular Electrophysiology, 1999
- Repolarizing K + Currents I TO1 and I Ks Are Larger in Right Than Left Canine Ventricular MidmyocardiumCirculation, 1999
- Sodium Channel Block With Mexiletine Is Effective in Reducing Dispersion of Repolarization and Preventing Torsade de Pointes in LQT2 and LQT3 Models of the Long-QT SyndromeCirculation, 1997
- Ionic bases for electrophysiological distinctions among epicardial, midmyocardial, and endocardial myocytes from the free wall of the canine left ventricle.Circulation Research, 1993
- Drug‐Induced Afterdepolarizations and Triggered Activity Occur in a Discrete Subpopulation of Ventricular Muscle Cells (M Cells) in the Canine Heart:Journal of Cardiovascular Electrophysiology, 1993
- Steady-state and dynamic properties of cardiac sodium-calcium exchange. Secondary modulation by cytoplasmic calcium and ATP.The Journal of general physiology, 1992
- The Role of Sodium ‐ Calcium Exchange during the Cardiac Action PotentialaAnnals of the New York Academy of Sciences, 1991
- Afterdepolarizations and Triggered Activity Develop in a Select Population of Cells (M Cells) in Canine Ventricular Myocardium: The Effects of Acetylstrophanthidin and Bay K 8644Pacing and Clinical Electrophysiology, 1991
- Block of current through single calcium channels by Fe, Co, and Ni. Location of the transition metal binding site in the pore.The Journal of general physiology, 1991
- Calcium influx in internally dialyzed squid giant axons.The Journal of general physiology, 1978