» Articles » PMID: 18757866

Role of Subendocardial Purkinje Network in Triggering Torsade De Pointes Arrhythmia in Experimental Long QT Syndrome

Overview
Journal Europace
Date 2008 Sep 2
PMID 18757866
Citations 20
Authors
Affiliations
Soon will be listed here.
Abstract

Aims: The present study addresses the controversy regarding the 'primary' role of the subendocardial Purkinje network in triggering torsade de pointes (TdP) ventricular tachyarrhythmia (VAs) in the long QT syndrome (LQTS).

Methods And Results: We investigated the well-established canine anthopleurin-A (AP-A) surrogate model of LQT3 to study the role of the subendocardial Purkinje network in triggering VAs. Three-dimensional activation and repolarization patterns were analysed from unipolar extracellular electrograms utilizing 64 plunge needle electrodes. In 6 dogs, the animals were placed on cardiopulmonary bypass and chemical ablation of the endocardial Purkinje network was obtained using Lugol's solution. Spontaneous VAs consistently developed in response to AP-A infusion and were triggered by a subendocardial focal activity acting on a substrate of spatial three-dimensional dispersion of repolarization. Endocardial ablation was considered successful by the development of complete atrioventricular block in the absence of ventricular escape rhythm. Following endocardial ablation spontaneous VAs were no longer observed. However, an appropriately coupled premature stimulus consistently induced re-entrant VAs.

Conclusion: The present study strongly suggests that in the LQTS, focal activity generated in subendocardial Purkinje tissue is the primary, if not the only, trigger for TdP VAs by acting on a substrate of three-dimensional dispersion of myocardial repolarization to induce re-entrant excitation.

Citing Articles

Mechanisms of torsades de pointes: an update.

Tsuji Y, Yamazaki M, Shimojo M, Yanagisawa S, Inden Y, Murohara T Front Cardiovasc Med. 2024; 11:1363848.

PMID: 38504714 PMC: 10948600. DOI: 10.3389/fcvm.2024.1363848.


Mechanisms underlying age-associated manifestation of cardiac sodium channel gain-of-function.

Nowak M, Poelzing S, Weinberg S J Mol Cell Cardiol. 2020; 153:60-71.

PMID: 33373643 PMC: 8026540. DOI: 10.1016/j.yjmcc.2020.12.008.


NOTCH1 is critical for fibroblast-mediated induction of cardiomyocyte specialization into ventricular conduction system-like cells in vitro.

Ribeiro da Silva A, Neri E, Turaca L, Dariolli R, Fonseca-Alaniz M, Santos-Miranda A Sci Rep. 2020; 10(1):16163.

PMID: 32999360 PMC: 7527973. DOI: 10.1038/s41598-020-73159-0.


Feasibility of selective cardiac ventricular electroporation.

Sugrue A, Vaidya V, Livia C, Padmanabhan D, Abudan A, Isath A PLoS One. 2020; 15(2):e0229214.

PMID: 32084220 PMC: 7034868. DOI: 10.1371/journal.pone.0229214.


Delayed afterdepolarization-induced triggered activity in cardiac purkinje cells mediated through cytosolic calcium diffusion waves.

Shah C, Jiwani S, Limbu B, Weinberg S, Deo M Physiol Rep. 2019; 7(24):e14296.

PMID: 31872561 PMC: 6928245. DOI: 10.14814/phy2.14296.