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June 1, 1988Circulation14 citationsOpen Access

Modulation of conduction slowing in ischemic rabbit myocardium by calcium-channel activation and blockade.

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GKGlenn Kabell

Key Result

Verapamil attenuated ischemia-induced conduction slowing and Vmax depression, whereas the calcium-channel agonist Bay K 8644 exacerbated these effects in isolated rabbit hearts.

Key Points

  • This study aims to investigate how calcium-channel activation and blockade affect conduction slowing in ischemic rabbit myocardium.
  • Recorded ventricular action potentials and conduction times in isolated rabbit hearts during global ischemia.
  • Administered verapamil (2 X 10(-6) M) and Bay K 8644 (10(-7) M) to assess their effects on conduction slowing.
  • Conducted regression analysis of Vmax and resting membrane potential relationships.
  • Verapamil significantly reduced ischemia-induced conduction slowing and Vmax depression (p<0.01).
  • Bay K 8644 exacerbated conduction slowing and Vmax depression without affecting resting membrane potential.
  • Analysis showed that verapamil and Bay K 8644 shifted Vmax versus resting membrane potential relationships in opposite directions.

Structured PICO

Does calcium-channel activation or blockade modulate conduction slowing in ischemic rabbit myocardium?

P
Population
Isolated rabbit hearts subjected to global ischemia
I
Intervention
Verapamil (2 X 10(-6) M) or Bay K 8644 (10(-7) M)
C
Comparator
Control (ischemia without drug intervention)
O
Outcome
Conduction slowing, resting membrane potential, and maximum upstroke velocity (Vmax)surrogate

The calcium-channel activation state can modulate the slowing of conduction during early ischemia, likely due to alterations in calcium influx.

Abstract

Ventricular action potentials and longitudinal conduction times over short distances of epicardium were recorded in isolated rabbit hearts. Global ischemia produced a progressive decrease of resting membrane potential, depression of action potentials, and conduction slowing to approximately 50% of control values over 8 to 10 min. Verapamil (2 X 10(-6) M) markedly attenuated ischemia-induced conduction slowing in association with less depression of maximum upstroke velocity (Vmax) and slightly less change in resting membrane potential. In contrast, Bay K 8644 (10(-7) M), a calcium-channel agonist, exacerbated ischemia-induced conduction slowing and depression of Vmax but did not significantly affect resting membrane potential. Regression analysis of Vmax vs resting membrane potential and the square of conduction velocity vs Vmax demonstrated that verapamil and Bay K 8644 shifted these relationships in opposite directions. The results indicate that the calcium-channel activation state can modulate slowing of conduction during early ischemia. This is most likely due to alterations in calcium influx before and/or during ischemia. There appear to be three possible components to this effect: (1) a small alteration in the magnitude of ischemia-induced depolarization, (2) alterations of membrane responsiveness at depolarized values of resting membrane potential, and (3) alterations in "nonactive" components of conduction during ischemia, such as changes in excitability or cell-to-cell coupling.

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Cite This Study

Glenn Kabell (1988) studied Ischemic rabbit myocardium. Verapamil and Bay K 8644 vs. Control (ischemia without drug) was evaluated on Conduction slowing and depression of maximum upstroke velocity (Vmax) during early ischemia. Verapamil attenuated ischemia-induced conduction slowing and Vmax depression, whereas the calcium-channel agonist Bay K 8644 exacerbated these effects in isolated rabbit hearts.

synapsesocial.com/papers/6a0ea317b7cc3b883f22950chttps://doi.org/10.1161/01.cir.77.6.1385
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of Verapamil and Lidocaine on Changes in Action Potential Characteristics and Conduction Time Induced by Combined Hypoxia, Hyperkalemia, and Acidosis in Canine Ventricular Myocardium1982 · 30 citations
  2. 2The Pathophysiology of Malignant Ventricular Arrhythmias During Acute Myocardial Ischemia1974 · 167 citations
  3. 3A Study of Ventricular Arrhythmias Associated with Acute Myocardial Infarction in the Canine Heart1973 · 257 citations
  4. 4Reentrant ventricular arrhythmias in the late myocardial infarction period. 7. Effect of verapamil and D-600 and the role of the "slow channel".1979 · 105 citations
  5. 5Interaction of acidosis and increased extracellular potassium on action potential characteristics and conduction in guinea pig ventricular muscle.1982 · 181 citations