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April 1, 2007Journal of Cardiovascular Pharmacology25 citations

In Vivo Cardiac Electrophysiologic and Antiarrhythmic Effects of an Isoquinoline IKur Blocker, ISQ-1, in Rat, Dog, and Nonhuman Primate

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CRChristopher P. ReganGSGary L. StumpAWAudrey A. Wallace

Structured PICO

Does ISQ-1 selectively prolong atrial refractoriness and terminate atrial flutter in animal models compared to ibutilide?

P
Population
Rats, dogs, and nonhuman primates (African green monkeys), including a dog model of atrial flutter
I
Intervention
ISQ-1 (an isoquinolinone I(Kur) blocker)
C
Comparator
Ibutilide
O
Outcome
Cardiac electrophysiologic effects (atrial and ventricular refractoriness, ECG QTc) and termination of atrial fluttersurrogate

ISQ-1 selectively prolongs atrial refractoriness without affecting ventricular refractoriness or QTc, effectively terminating atrial flutter in a canine model.

Abstract

The cardiac electrophysiologic effects of ISQ-1, an isoquinolinone I(Kur) blocker, were characterized in vivo. In rat, ISQ-1 elicited maximal 33% to 36% increases in atrial and ventricular refractoriness at a plasma concentration of 11.5 microM. In African green monkey, ISQ-1 increased atrial refractory period (maximal 17% at plasma concentration up to 20 microM) with no effect on ventricular refractory period or ECG QTc. Likewise in dog, ISQ-1 increased atrial refractory period (maximal 16% at plasma concentration up to 2 microM) with no effect on ventricular refractory period or QTc. In contrast, studies with ibutilide in nonhuman primate and dog demonstrated concomitant increases in atrial and ventricular refractoriness and QTc. Additionally, in a dog model of atrial flutter, ISQ-1 terminated ongoing flutter at doses (2.5 +/- 0.5 mg/kg IV) that selectively prolonged atrial refractoriness (13% increase), whereas flutter termination with ibutilide occurred at doses that increased both atrial and ventricular refractoriness as well as QTc. Of note, the cardiac electrophysiologic profiles displayed by ISQ-1 in these species were similar to those reported previously by our lab with a structurally distinct I(Kur) blocker. Taken together, these results further support the inhibition of I(Kur) as an approach to terminate atrial arrhythmia.

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Cite This Study

Regan et al. (2007) studied this question.

synapsesocial.com/papers/6a728185febe604dd70aa4f3https://doi.org/10.1097/fjc.0b013e3180325b2a
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