Circulating Autoantibodies Targeting TREK-1 in Patients With Short-Coupled Ventricular Fibrillation

Jin Li1, Alexandre Janin2,3, Mona Patoughi2

  • 1Department of Physiology, University of Bern, Switzerland (J.L.).

Circulation
|September 24, 2024
PubMed

Insights

Short-coupled ventricular fibrillation (SCVF) is linked to autoantibodies against the cardiac TREK-1 channel. These autoantibodies may play a direct role in causing SCVF, offering a potential biomarker for this condition.

Area of Science:

  • Cardiology
  • Immunology
  • Electrophysiology

Background:

  • Short-coupled ventricular fibrillation (SCVF) is an emerging electrical disorder causing unexplained cardiac arrest.
  • The underlying pathophysiology of SCVF is not well understood, with genetic factors not fully explaining the condition.
  • Autoimmune mechanisms have not been previously investigated as a potential cause of SCVF.

Purpose of the Study:

  • To investigate the presence of circulating autoantibodies in SCVF patients.
  • To determine if identified autoantibodies contribute to the arrhythmogenesis of SCVF.

Main Methods:

  • A prospective case-control study involving cardiac arrest survivors with SCVF or idiopathic ventricular fibrillation (IVF).
  • Plasma samples were analyzed for autoantibodies against cardiac ion channels using peptide microarray technology.
  • Functional studies using patch clamp electrophysiology were performed on identified autoantibodies.

Main Results:

  • Autoantibodies targeting the cardiac TREK-1 channel were found in 50% of SCVF patients (P=0.049).
  • These anti-TREK-1 autoantibodies demonstrated channel-activating properties in cellular models.
  • The arrhythmogenic effects of anti-TREK-1 autoantibodies were inhibited by quinidine.

Conclusions:

  • SCVF patients possess circulating autoantibodies against the cardiac TREK-1 channel.
  • Anti-TREK-1 autoantibodies represent the first identified biomarker for SCVF.
  • These autoantibodies are implicated in the arrhythmogenesis of SCVF.
Abstract

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