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September 27, 2012Circulation Heart Failure81 citations

Irregular Rhythm Adversely Influences Calcium Handling in Ventricular Myocardium

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LLLiang‐Han LingOKOuda KhammyMBMelissa Byrne

Key Points

  • To determine whether an irregular ventricular rhythm alters excitation-contraction coupling and calcium-handling protein expression in ventricular myocardium, promoting heart failure progression.
  • Paced rat ventricular myocytes at an average 2-Hz frequency in an irregular versus regular pattern for 24 hours to assess gene/protein expression and Fura-2AM calcium transients.

Structured PICO

Does irregular ventricular rhythm alter ventricular cardiomyocyte excitation-contraction coupling and calcium-handling protein expression in heart failure?

P
Population
Rat ventricular myocytes and left ventricular samples from end-stage heart failure patients with either persistent atrial fibrillation or sinus rhythm
I
Intervention
Irregular electrical field stimulation (average frequency 2 Hz) for 24 hours (in vitro); persistent atrial fibrillation (human samples)
C
Comparator
Regular electrical field stimulation (in vitro); sinus rhythm (human samples)
O
Outcome
Expression of calcium-handling genes and proteins (sarcoplasmic reticulum Ca2+ ATPase, serine-16 phosphorylation of phospholamban) and intracellular calcium transientssurrogate

Irregular ventricular rhythm directly impairs calcium handling and excitation-contraction coupling in ventricular myocardium, providing a mechanistic rationale for rhythm control in heart failure patients.

Abstract

BACKGROUND: Despite adequate rate control, the combination of atrial fibrillation with heart failure (HF) has been shown, in a number of studies, to hasten HF progression. In this context, we aimed to test the hypothesis that an irregular ventricular rhythm causes an alteration in ventricular cardiomyocyte excitation-contraction coupling which contributes to the progression of HF. METHODS AND RESULTS: We investigated the effects of electrical field stimulation (average frequency 2 Hz) in an irregular versus regular drive train pattern on the expression of calcium-handling genes and proteins in rat ventricular myocytes. The effect of rhythm on intracellular calcium transients was examined using Fura-2AM fluorescence spectroscopy. In conjunction, calcium-handling protein expression was examined in left ventricular samples obtained from end-stage HF patients, in patients with either persistent atrial fibrillation or sinus rhythm. Compared with regularly paced ventricular cardiomyocytes, in cells paced irregularly for 24 hours, there was a significant reduction in the expression of sarcoplasmic reticulum calcium (Ca(2+)) ATPase together with reduced serine-16 phosphorylation of phospholamban. These findings were accompanied by a 59% reduction (P<0.01) in the peak Ca2+ transient in irregulary paced myocytes compared with those with regular pacing. Consistent with these observations, we observed a 54% (P<0.05) decrease in sarcoplasmic reticulum Ca(2+)ATPase protein expression and an 85% (P<0.01) reduction in the extent of phosphorylation of phospholamban in the left ventricular myocardium of HF patients in atrial fibrillation compared with those in sinus rhythm. CONCLUSIONS: Together, these data demonstrate that ventricular rhythmicity contributes significantly to excitation-contraction coupling by altering the expression and activity of key calcium-handling proteins. These data suggest that control of rhythm may be of benefit in patients with HF.

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Cite This Study

Ling et al. (2012) studied this question.

synapsesocial.com/papers/69f1a08710fa38abb3d2363bhttps://doi.org/10.1161/circheartfailure.112.968321
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