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Updated: Oct 3, 2025

Confirmation of Myocardial Ischemia and Reperfusion Injury in Mice Using Surface Pad Electrocardiography
Published on: November 24, 2016
Determinants of reperfusion arrhythmias: action potential duration versus dispersion of repolarization
O G Bernikova1, A V Durkina2, K A Sedova3
1Department of Cardiac Physiology, Institute of Physiology, Komi Science Center, Ural Branch, Russian Academy of Sciences, Syktyvkar, Russia. bernikovaog@gmail.com.
Insights
Action potential duration in the perfused zone, not repolarization dispersion, significantly contributes to ventricular arrhythmias during ischemia-reperfusion. This finding advances understanding of cardiac electrical instability.
Area of Science:
- Cardiovascular Physiology
- Cardiac Electrophysiology
- Arrhythmogenesis Research
Background:
- The precise role of the border zone in arrhythmogenesis remains unclear.
- Understanding factors contributing to ventricular tachycardia/fibrillation (VT/VF) is critical for managing cardiac ischemia.
Purpose of the Study:
- To investigate the independent contributions of action potential duration (APD) and dispersion of repolarization (DOR) across the normal/ischemic border to VT/VF.
- To elucidate the arrhythmogenic potential of APD versus DOR in an ischemia-reperfusion model.
Main Methods:
- Induction of ischemia-reperfusion in rats via transient coronary occlusion.
- Recording unipolar electrograms from ischemic and perfused zones using a 64-lead array.
- Pharmacological manipulation of APD and DOR using pinacidil and glibenclamide.
Main Results:
- APD shortened in the ischemic zone, DOR increased, and VT/VF occurred in control animals.
- Glibenclamide (prolonged APD, reduced DOR) and pinacidil (shortened APD, reduced DOR) modulated electrophysiological parameters.
- Pinacidil treatment significantly reduced VT/VF incidence, with extrasystolic burden correlating with VT/VF.
Conclusions:
- Action potential duration in the perfused zone emerged as a more significant arrhythmogenic factor than DOR in this ischemia-reperfusion model.
- These findings highlight the critical role of APD in the non-ischemic border zone in promoting cardiac arrhythmias.
Abstract:
The role of a border zone in arrhythmogenesis is not fully understood. In this study we evaluated independent contributions of action potential duration (APD) and dispersion of repolarization (DOR) across the normal/ischemic border to the development of ventricular tachycardia and/or fibrillation (VT/VF). Ischemia-reperfusion episodes were induced in anesthetized rats by transient coronary occlusion. Unipolar electrograms were recorded from ischemic and perfused areas using a 64-lead array to obtain activation times (ATs), repolarization times (RTs), activation-repolarization intervals (ARIs, a surrogate for APD) and dispersion of repolarization (DOR, as a difference between the earliest and latest RTs). Pinacidil (0.3 mg/kg) and glibenclamide (2 mg/kg) were applied to reduce DOR and to clamp APD at a lower and upper levels, respectively. In the control animals, APD shortened in the ischemic zone, DOR increased to 9 ± 3 ms, and VT/VF developed at reperfusion (6 out of 10). Pre-occlusion application of glibenclamide prolonged APD in the ischemic and perfused zones, decreased DOR to 5 ± 2 ms and did not affect VT/VF development (4 out of 11). Post-occlusion infusion of pinacidil shortened APD in the perfused zone, decreased DOR to 6 ± 3 ms and VT/VF incidence (2 out of 11). Extrasystolic burden at reperfusion was associated with VT/VF incidence in logistic regression analysis (β = 1.182, 95%CI 1.008 - 1.386, p = 0.04) and was lesser (p < 0.01) in the pinacidil group as compared to the control and glibenclamide groups. In conclusion, the results of this study suggest that the APDs in the perfused zone were a superior arrhythmogenic factor in respect to DOR in the present ischemia-reperfusion model.
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