Key result
Clarithromycin lengthened action potential duration in all tissues and reduced the delayed rectifier current by approximately 30% at 30 microM, providing a basis for its QT prolongation effect.
Why the study?
Does clarithromycin alter action potential duration and ionic currents in rabbit cardiac myocytes?
Does clarithromycin alter action potential duration and ionic currents in rabbit cardiac myocytes?
Clarithromycin prolongs action potential duration and blocks delayed rectifier potassium currents in rabbit cardiac myocytes, providing a mechanistic explanation for its QT-prolonging effect in patients.
May explain clarithromycin QT effects in rabbits; leaves open human translation and clinical relevance.
Prolongation of QT interval by several antibacterial drugs is an unwanted side effect that may be associated with development of ventricular arrhythmias. The macrolide antibacterial agent clarithromycin has been shown to cause QT prolongation. To determine the electrophysiologic basis for this arrhythmogenic potential, we investigated clarithromycin effects on (i). action potentials recorded from rabbit Purkinje fibers and atrial and ventricular myocardium using conventional microelectrodes and (ii). potassium and calcium currents recorded from rabbit atrial and ventricular isolated myocytes using whole-cell patch clamp recordings. We found that (i). clarithromycin (3-100 microM) exerted concentration-dependent lengthening effects on action potential duration in all tissues, with higher efficacy and reverse frequency-dependence in Purkinje fibers. However, clarithromycin did not cause development of early afterdepolarizations, and the parameters other than action potential duration were almost unaffected; (ii). clarithromycin (10-100 microM) reduced the delayed rectifier current. Significant blockade (approximately 30%) was found at the concentration of 30 microM. At 100 microM, it decreased significantly the maximum peak of the calcium current amplitude but failed to alter the transient outward and inwardly rectifier currents. It was concluded that these effects might be an explanation for the QT prolongation observed in some patients treated with clarithromycin.
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Gluais et al. (2003) studied QT prolongation. Clarithromycin was evaluated on Action potential duration and potassium/calcium currents. Clarithromycin lengthened action potential duration in all tissues and reduced the delayed rectifier current by approximately 30% at 30 microM, providing a basis for its QT prolongation effect.
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