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March 12, 2002Circulation304 citationsOpen Access

Unique Topographical Distribution of M Cells Underlies Reentrant Mechanism of Torsade de Pointes in the Long-QT Syndrome

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FAFadi G. AkarGYGan-Xin YanCACharles Antzelevitch

Structured PICO

What is the cellular basis and role of M cells in the development of reentrant Torsade de Pointes arrhythmias in Long-QT syndrome?

P
Population
Canine wedge preparation (n=14)
I
Intervention
Surrogate model of LQT2
C
Comparator
Controls
O
Outcome
Spatial organization of repolarization and arrhythmogenesissurrogate

The study provides direct evidence that islands of M cells create steep spatial gradients of repolarization, forming the basis for reentrant Torsade de Pointes arrhythmias in Long-QT syndrome.

Abstract

BACKGROUND: Specific ion channel mutations underlie the congenital long-QT syndrome (LQTS). However, the mechanisms by which dysfunction at the molecular level translates into functional electrical instability leading to torsade de pointes (TdP) in LQTS are poorly understood. METHODS AND RESULTS: The cellular basis of TdP was investigated using a novel approach of transmural optical imaging in the canine wedge preparation (n=14). The spatial organization of repolarization and arrhythmogenesis were determined in a surrogate model of LQT2. Action potentials were recorded simultaneously from 128 sites spanning the transmural wall of the left ventricle. In LQT2, QT interval prolongation was paralleled by an abrupt rise in transmural dispersion of repolarization (DOR) from 2.7 plus/minus 0.9 ms/mm (controls) to 12.2 plus/minus 2.1 ms/mm (LQT2). Islands of midmyocardial (M) cells formed zones of increased refractoriness in LQT2, producing steep spatial gradients of repolarization that were directly responsible for conduction block and self-sustained intramural reentrant circuits underlying TdP. CONCLUSIONS: These data provide direct evidence supporting the functional expression of M cells in intact myocardium and a central role for M cells in the development of reentrant TdP arrhythmias in LQTS.

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Cite This Study

Akar et al. (2002) studied this question.

synapsesocial.com/papers/6a0883c37de338f10b10beddhttps://doi.org/10.1161/hc1002.105231
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Also Consider

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  1. 1Cellular uncoupling can unmask dispersion of action potential duration in ventricular myocardium. A computer modeling study.1989 · 172 citations
  2. 2A dynamic model of the cardiac ventricular action potential. II. Afterdepolarizations, triggered activity, and potentiation.1994 · 468 citations
  3. 3Congenital Long-QT Syndrome Caused by a Novel Mutation in a Conserved Acidic Domain of the Cardiac Na + Channel1999 · 144 citations
  4. 4Distribution of M Cells in the Canine Ventricle1994 · 135 citations
  5. 5Role of Structural Barriers in the Mechanism of Alternans-Induced Reentry2000 · 193 citations