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Published on: July 3, 2013
β-Adrenergic Inhibition Prevents Action Potential and Calcium Handling Changes during Regional Myocardial Ischemia
Shannon R Murphy1, Lianguo Wang1, Zhen Wang1
1Department of Pharmacology, University of California, DavisDavis, CA, United States.
Abstract:
β-adrenergic receptor (β-AR) blockers may be administered during acute myocardial infarction (MI), as they reduce energy demand through negative chronotropic and inotropic effects and prevent ischemia-induced arrhythmogenesis. However, the direct effects of β-AR blockers on ventricular electrophysiology and intracellular Ca2+ handling during ischemia remain unknown. Using optical mapping of transmembrane potential (with RH237) and sarcoplasmic reticulum (SR) Ca2+ (with the low-affinity indicator Fluo-5N AM), the effects of 15 min of regional ischemia were assessed in isolated rabbit hearts (n = 19). The impact of β-AR inhibition on isolated hearts was assessed by pre-treatment with 100 nM propranolol (Prop) prior to ischemia (n = 7). To control for chronotropy and inotropy, hearts were continuously paced at 3.3 Hz and contraction was inhibited with 20 μM blebbistatin. Untreated ischemic hearts displayed prototypical shortening of action potential duration (APD80) in the ischemic zone (IZ) compared to the non-ischemic zone (NI) at 10 and 15 min ischemia, whereas APD shortening was prevented with Prop. Untreated ischemic hearts also displayed significant changes in SR Ca2+ handling in the IZ, including prolongation of SR Ca2+ reuptake and SR Ca2+ alternans, which were prevented with Prop pre-treatment. At 5 min ischemia, Prop pre-treated hearts also showed larger SR Ca2+ release amplitude in the IZ compared to untreated hearts. These results suggest that even when controlling for chronotropic and inotropic effects, β-AR inhibition has a favorable effect during acute regional ischemia via direct effects on APD and Ca2+ handling.
Insights
Beta-adrenergic receptor (β-AR) blockers prevent action potential duration shortening and abnormal calcium handling during myocardial infarction ischemia. This study reveals direct electrophysiological benefits of β-AR inhibition independent of heart rate or contractility.
Area of Science:
- Cardiovascular Physiology
- Cardiac Electrophysiology
- Myocardial Ischemia Research
Background:
- Beta-adrenergic receptor (β-AR) blockers are used in acute myocardial infarction (MI) to reduce cardiac workload.
- Direct effects of β-AR blockers on ventricular electrophysiology and intracellular calcium handling during ischemia are not well understood.
Purpose of the Study:
- To investigate the direct impact of β-AR inhibition on ventricular electrophysiology and sarcoplasmic reticulum (SR) Ca2+ handling during regional ischemia.
- To determine if β-AR blockers offer benefits independent of their chronotropic and inotropic effects.
Main Methods:
- Isolated rabbit hearts subjected to 15 minutes of regional ischemia.
- Optical mapping of transmembrane potential and SR Ca2+ dynamics.
- Hearts were paced and contraction inhibited to control for heart rate and contractility.
- Comparison between untreated ischemic hearts and those pre-treated with propranolol.
Main Results:
- Propranolol prevented the shortening of action potential duration (APD80) in the ischemic zone.
- β-AR inhibition normalized SR Ca2+ reuptake and prevented SR Ca2+ alternans.
- Propranolol pre-treatment enhanced SR Ca2+ release amplitude in the ischemic zone.
Conclusions:
- β-AR inhibition exerts direct favorable effects on ventricular electrophysiology and Ca2+ handling during acute ischemia.
- These benefits are independent of the drug's effects on heart rate and contractility.
- β-AR blockers may offer protective mechanisms beyond reducing cardiac workload in MI.
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