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April 12, 2005Journal of Cardiovascular Electrophysiology11 citations

Ventricular Arrhythmias Following Exposure of Failing Hearts to Oxidative Stress in Vitro

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FBFrançois BrigadeauPGPatrick GeléCMChristelle Marquié

Structured PICO

Does oxidative stress induce ventricular arrhythmias in a porcine model of heart failure?

P
Population
Isolated perfused hearts from sham-operated (n=6) and fast pacing (250 ms, 2 weeks)-induced heart failure porcines (n=8)
I
Intervention
Perfusion of 100, 300, and 1000 micromol/L H2O2
C
Comparator
Sham-operated porcine hearts exposed to the same H2O2 concentrations
O
Outcome
Ventricular arrhythmias and epicardial conduction velocitiessurrogate

Oxidative stress induces more frequent ventricular arrhythmias (extrasystoles and slow ventricular rhythms) in failing hearts compared to normal hearts, independent of abnormal myocardial conduction.

Abstract

INTRODUCTION: There is experimental evidence that heart failure (HF) is an oxidative stress and that HF myocytes may be damaged by oxygen-derived free radicals. However, the arrhythmogenicity of these radicals has not been studied in HF. METHODS AND RESULTS: Isolated perfused hearts were obtained from sham-operated (SHAM, n = 6), and fast pacing (250 ms, 2 weeks)-induced heart failure porcines (HF, n = 8). Epicardial conduction was mapped in the longitudinal and transverse directions and ventricular arrhythmias were closely monitored after perfusion of 100, 300, and 1000 micromol/L H(2)O(2). Left ventricular epicardium was sampled for action potentials recordings in the same conditions. Myocardial levels of thiobarbituric acid reactive substances and antioxidant enzymatic capacity were also assessed. Epicardial conduction velocities were unaffected by H(2)O(2) in both groups. Isolated ventricular premature beats and runs of slow ventricular rhythm with H(2)O(2) more frequently occurred in HF compared to SHAM despite an increased antioxidant capacity including Cu/Zn and Mn superoxide dismutase, catalase, glutathione reductase, and glutathione peroxidase. Sustained arrhythmias were not observed. Higher thiobarbituric acid reactive substances levels were found in HF confirming endogenous oxidative stress. Action potential duration at plateau level was increased following H(2)O(2) in SHAM but not in HF epicardial fibers where a toxic effect developed at 1000 micromol/L. CONCLUSION: Oxidative stress with concomitant increase in antioxidant capacity develops in this HF model. There is a greater proclivity to oxidative stress-mediated arrhythmias in HF. These arrhythmias are mainly extrasystoles or slow ventricular rhythms and not dependent on abnormal myocardial conduction.

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Cite This Study

Brigadeau et al. (2005) studied this question.

synapsesocial.com/papers/6a8bc5fdf71fc1553cbea89dhttps://doi.org/10.1046/j.1540-8167.2005.40584.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Greater susceptibility of failing cardiac myocytes to oxygen free radical-mediated injury2001 · 58 citations
  2. 2Increased susceptibility of aged hearts to ventricular fibrillation during oxidative stress2009 · 140 citations
  3. 3Oxidative stress and heart failure2011 · 1,228 citations
  4. 4Cellular electrophysiological basis for oxygen radical-induced arrhythmias. A patch-clamp study in guinea pig ventricular myocytes.1991 · 92 citations
  5. 5Perfusing isolated rat hearts with hydrogen peroxide: an experimental model of cardiac dysfunction caused by reactive oxygen species1996 · 17 citations