Sympathetic nerve stimulation in infarcted rat hearts evoked ventricular premature beats (95%), tachycardia (37%), and fibrillation (26%), whereas arrhythmias were rare at baseline.
Does sympathetic activation trigger ventricular arrhythmias in a rat model of chronic infarction and heart failure?
Sympathetic activation directly triggers ventricular tachyarrhythmias in a rat model of chronic myocardial infarction and heart failure, with inducibility dependent on infarct size and stimulation frequency.
OBJECTIVE: To seek direct evidence for a cause-effect relation between sympathetic activation and arrhythmogenesis. METHODS: Rats underwent open-chest surgery with either coronary artery occlusion or sham operation, and were studied 8 weeks later using in situ heart perfusion and nerve stimulation methods. RESULTS: Infarcted rats showed cardiac functional impairment and increased heart and lung weight. The extent of these changes correlated well with infarct size (IS). In in situ perfused hearts, sympathetic nerve stimulation (2 and 4 Hz, 45 s duration) induced a frequency-dependent release of norepinephrine (NE). NE release was lower in MI than that in control groups. In hearts with large IS (> or = 40%, n = 19) ventricular arrhythmias were rare at baseline, but nerve stimulation evoked the onset of ventricular premature beats (95%), tachycardia (37%) and fibrillation (26%), IS and stimulation frequency were key determinants for the inducibility of arrhythmias. Lower K- concentration enhanced arrhythmia inducibility. beta-blockade inhibited the frequency of arrhythmias produced by nerve stimulation. CONCLUSION: In infarcted rat hearts sympathetic activation is a potent trigger for the onset of ventricular tachyarrhythmias.
Xuan Du (Wed,) conducted a other in Chronic myocardial infarction and heart failure. Sympathetic nerve stimulation vs. Baseline / sham operation was evaluated on Inducibility of ventricular arrhythmias. Sympathetic nerve stimulation in infarcted rat hearts evoked ventricular premature beats (95%), tachycardia (37%), and fibrillation (26%), whereas arrhythmias were rare at baseline.
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