Altered adrenergic response in myocytes bordering a chronic myocardial infarction underlies in vivo triggered

Eef Dries1, Matthew Amoni1, Bert Vandenberk1

  • 1Experimental Cardiology, University of Leuven, Herestraat 49 box 911, Leuven, Belgium.

Insights

Ventricular arrhythmias after myocardial infarction (MI) stem from altered myocyte responses in the peri-infarct zone. These cells exhibit increased triggered activity and repolarization instability during sympathetic stimulation, contributing to post-MI arrhythmias.

Area of Science:

  • Cardiovascular Physiology
  • Cardiac Electrophysiology
  • Myocardial Infarction Research

Background:

  • Ventricular arrhythmias are a significant complication following myocardial infarction (MI).
  • The peri-infarct zone is a known substrate for arrhythmias, but myocyte functional changes are less understood.
  • Sympathetic activation plays a crucial role in triggering these arrhythmias.

Purpose of the Study:

  • To investigate the mechanisms triggering post-MI ventricular arrhythmias.
  • To examine the relationship between arrhythmia triggers and regional myocyte remodeling in the peri-infarct zone.
  • To assess the role of adrenergic stimulation on myocyte function in the peri-infarct region.

Main Methods:

  • Simultaneous in vivo recordings of monophasic action potentials in pigs with chronic MI during isoproterenol (ISO) infusion.
  • Isolation and study of myocytes from peri-infarct and remote regions.
  • Assessment of delayed afterdepolarizations (DADs), spontaneous action potentials, Ca2+ handling, and repolarization variability (BVR).

Main Results:

  • Peri-infarct zone showed increased DADs and BVR during ISO stimulation in vivo.
  • Isolated peri-infarct myocytes exhibited more DADs, spontaneous Ca2+ release, and spontaneous action potentials under ISO.
  • Peri-infarct myocytes displayed reduced repolarization reserve and increased BVR, correlating with DAD activity.

Conclusions:

  • Altered myocyte adrenergic responses in the peri-infarct region are a source of triggered activity and repolarization instability.
  • These myocyte-specific changes amplify the substrate for re-entry and contribute to post-MI arrhythmias.
  • Findings suggest potential for region-specific therapies targeting myocytes and autonomic modulation.

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