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August 1, 1986Circulation474 citationsOpen Access

Adenosine-sensitive ventricular tachycardia: evidence suggesting cyclic AMP-mediated triggered activity.

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BLBruce B. LermanLBLuiz BelardinelliGWG. Alexander West

Key Points

  • To investigate the role of cyclic AMP in catecholamine-induced triggered activity leading to ventricular tachycardia in patients with normal hearts.
  • Conducted electrophysiologic studies in four patients with exertional sustained ventricular tachycardia.

Structured PICO

Does adenosine terminate exertionally related sustained ventricular tachycardia in patients with structurally normal hearts?

P
Population
18 patients total: 4 with structurally normal hearts and exertionally related sustained ventricular tachycardia (VT), and 14 with VT fulfilling standard criteria for reentry.
I
Intervention
Intravenous adenosine (112.5 to 225 micrograms/kg), verapamil, vagal maneuvers, and beta-blockade (propranolol)
O
Outcome
Termination of ventricular tachycardia

Adenosine terminates exertionally related sustained VT in patients with structurally normal hearts, suggesting the mechanism is cAMP-mediated triggered activity rather than reentry.

Abstract

Catecholamine-induced triggered activity is thought to be caused by intracellular calcium overload mediated by elevation of intracellular cyclic AMP (cAMP). Although shown to occur in isolated preparations, evidence supporting its clinical existence has been lacking. Electrophysiologic studies were performed in four patients with structurally normal hearts who had exertionally related sustained ventricular tachycardia (VT). Programmed stimulation reproducibly initiated and terminated VT in all patients. Induction of tachycardia was also facilitated by infusion of isoproterenol. Adenosine, an endogenous nucleoside, whose only known electrophysiologic effect on ventricular myocardium and Purkinje fibers is antagonism of catecholamine-induced stimulation of intracellular cAMP production, reproducibly terminated all episodes of VT. The tachycardia was also terminated by intravenous verapamil and by the Valsalva maneuver and/or carotid sinus massage. Beta-Adrenergic receptor blockade with propranolol either terminated or prevented induction of VT during programmed stimulation or catecholamine challenge. Adenosine was also administered during VT to 14 patients whose arrhythmias fulfilled standard criteria for reentry, two of whom also had exercise-induced VT. Adenosine, at a dose (112.5 to 225 micrograms/kg iv) sufficient to cause either sinus slowing/arrest or ventriculoatrial block during ventricular pacing, failed to slow or terminate any episode of VT in these patients. Verapamil and autonomic modulation were also ineffective in this group of patients. Adenosine, verapamil, vagal maneuvers (acetylcholine), and beta-adrenergic receptor blockade are all known to decrease the slow-inward calcium current either directly by modulating calcium channels or indirectly by inhibiting production of cellular cAMP. Therefore the observation in this study that interventions that lower intracellular cAMP either terminate or prevent induction of VT in patients with structurally normal hearts and exercise-induced VT suggests that the mechanism of tachycardia may be cAMP-mediated triggered activity.

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Cite This Study

Lerman et al. (1986) studied this question.

synapsesocial.com/papers/6a163f0cf508cb2fcbc1f02bhttps://doi.org/10.1161/01.cir.74.2.270
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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 tetrodotoxin, lidocaine, verapamil, and AHR-2666 on Ouabain-induced delayed afterdepolarizations in canine Purkinje fibers.1980 · 179 citations
  2. 2Adenosine: electrophysiologic effects and therapeutic use for terminating paroxysmal supraventricular tachycardia.1983 · 368 citations
  3. 3Electrogenic sodium extrusion can stop triggered activity in the canine coronary sinus.1981 · 50 citations
  4. 4Adenosine attenuation of the electrophysiological effects of isoproterenol on canine cardiac Purkinje fibers.1984 · 30 citations
  5. 5Muscarinic cholinergic receptor modulation of beta-adrenergic receptor affinity for catecholamines.1978 · 225 citations