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August 10, 2004Circulation679 citationsOpen Access

Electrophysiological Effects of Ranolazine, a Novel Antianginal Agent With Antiarrhythmic Properties

CACharles AntzelevitchLBLuiz BelardinelliAZAndrew C. Zygmunt

Key Result

Ranolazine inhibited IKr (IC50=11.5 μmol/L) and late INa (IC50=5.9 μmol/L), suppressed early afterdepolarizations, and reduced transmural dispersion of repolarization.

Key Points

  • To examine the electrophysiological actions and cardiac ion channel targets of ranolazine in canine ventricular myocytes, tissues, and perfused left ventricular wedge models.
  • Recorded whole-cell ionic currents across isolated canine epicardial and midmyocardial (M) myocytes to evaluate channel inhibition profiles.
  • Measured transmembrane action potentials and pseudo-ECGs simultaneously from epicardial and M regions in arterially perfused left ventricular wedge preparations.
  • Evaluated the incidence of torsade de pointes (TdP) and the suppression of early afterdepolarizations (EADs) and transmural dispersion of repolarization (TDR) induced by d-sotalol.
  • Ranolazine inhibited IKr (IC50 = 11.5 μmol/L), late INa (IC50 = 5.9 μmol/L), late ICa (IC50 = 50 μmol/L), peak ICa (IC50 = 296 μmol/L), INa-Ca (IC50 = 91 μmol/L), and IKs (17% at 30 μmol/L), with minimal inhibition of Ito or IK1.
  • At 10 μmol/L, ranolazine prolonged QT interval by 20 ms, extended epicardial action potential duration while shortening M-cell duration, and reduced or maintained TDR without causing spontaneous or induced torsade de pointes.
  • Ranolazine at 5 to 20 μmol/L suppressed early afterdepolarizations and attenuated the increase in TDR provoked by the selective IKr blocker d-sotalol.

Structured PICO

Does ranolazine alter electrophysiological properties and suppress arrhythmias in isolated canine ventricular preparations?

P
Population
Isolated canine ventricular myocytes, tissues, and arterially perfused left ventricular wedge preparations
I
Intervention
Ranolazine (various concentrations up to 30 μmol/L)
O
Outcome
Electrophysiological effects including ion channel inhibition (IKr, late INa, late ICa, peak ICa, INa-Ca, IKs), action potential duration, transmural dispersion of repolarization (TDR), and early afterdepolarizations (EADs)surrogate

Ranolazine exhibits ion channel effects similar to chronic amiodarone, suppressing early afterdepolarizations and reducing transmural dispersion of repolarization, suggesting potential antiarrhythmic properties.

Abstract

Background— Ranolazine is a novel antianginal agent capable of producing antiischemic effects at plasma concentrations of 2 to 6 μmol/L without reducing heart rate or blood pressure. The present study examines its electrophysiological effects in isolated canine ventricular myocytes, tissues, and arterially perfused left ventricular wedge preparations. Methods and Results— Transmembrane action potentials (APs) from epicardial and midmyocardial (M) regions and a pseudo-ECG were recorded simultaneously from wedge preparations. APs were also recorded from epicardial and M tissues. Whole-cell currents were recorded from epicardial and M myocytes. Ranolazine inhibited I Kr (IC 50 =11.5 μmol/L), late I Na , late I Ca , peak I Ca , and I Na-Ca (IC 50 =5.9, 50, 296, and 91 μmol/L, respectively) and I Ks (17% at 30 μmol/L), but caused little or no inhibition of I to or I K1 . In tissues and wedge preparations, ranolazine produced a concentration-dependent prolongation of AP duration of epicardial but abbreviation of that of M cells, leading to reduction or no change in transmural dispersion of repolarization (TDR). At K + o =4 mmol/L, 10 μmol/L ranolazine prolonged QT interval by 20 ms but did not increase TDR. Extrasystolic activity and spontaneous torsade de pointes (TdP) were never observed, and stimulation-induced TdP could not be induced at any concentration of ranolazine, either in normal or low K + o . Ranolazine (5 to 20 μmol/L) suppressed early afterdepolarizations (EADs) and reduced the increase in TDR induced by the selective I Kr blocker d -sotalol. Conclusions— Ranolazine produces ion channel effects similar to those observed after chronic amiodarone (reduced I Kr , I Ks , late I Na , and I Ca ). The actions of ranolazine to suppress EADs and reduce TDR suggest that, in addition to its antianginal actions, the drug may possess antiarrhythmic activity.

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Cite This Study

Antzelevitch et al. (2004) studied this question. Ranolazine was evaluated on Inhibition of ion currents (IKr, late INa, late ICa, peak ICa, INa-Ca, IKs) and effects on action potential duration and transmural dispersion of repolarization. Ranolazine inhibited IKr (IC50=11.5 μmol/L) and late INa (IC50=5.9 μmol/L), suppressed early afterdepolarizations, and reduced transmural dispersion of repolarization.

synapsesocial.com/papers/6a0d1d886a6e1c7abfdbdad2https://doi.org/10.1161/01.cir.0000139333.83620.5d
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