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尖端扭转型室速的机制:最新进展

Mechanisms of torsades de pointes: an update.

作者信息

Tsuji Yukiomi, Yamazaki Masatoshi, Shimojo Masafumi, Yanagisawa Satoshi, Inden Yasuya, Murohara Toyoaki

机构信息

Departments of Cardiovascular Research and Innovation, Cardiology and Advanced Cardiovascular Therapeutics, Nagoya University Graduate School of Medicine, Nagoya, Japan.

Department of Cardiology, Nagano Hospital, Soja and Medical Device Development and Regulation Research Center and Department of Precision Engineering, The University of Tokyo, Tokyo, Japan.

出版信息

Front Cardiovasc Med. 2024 Mar 5;11:1363848. doi: 10.3389/fcvm.2024.1363848. eCollection 2024.

Abstract

Torsades de Pointes (TdP) refers to a polymorphic ventricular tachycardia (VT) with undulating QRS axis that occurs in long QT syndrome (LQTS), although the term has been used to describe polymorphic ventricular tachyarrhythmias in which QT intervals are not prolonged, such as short-coupled variant of TdP currently known as short-coupled ventricular fibrillation (VF) and Brugada syndrome. Extensive works on LQTS-related TdP over more than 50 years since it was first recognized by Dessertennes who coined the French term meaning "twisting of the points", have led to current understanding of the electrophysiological mechanism that TdP is initiated by triggered activity due to early afterdepolarization (EAD) and maintained by reentry within a substrate of inhomogeneous repolarization. While a recently emerging notion that steep voltage gradients rather than EADs are crucial to generate premature ventricular contractions provides additions to the initiation mode, the research to elucidate the maintenance mechanism hasn't made much progress. The reentrant activity that produces the specific form of VT is not well characterized. We have conducted optical mapping in a rabbit model of electrical storm by electrical remodeling (QT prolongation) due to chronic complete atrioventricular block and demonstrated that a tissue-island with prolonged refractoriness due to enhanced late Na current (I) contributes to the generation of drifting rotors in a unique manner, which may explain the ECG characteristic of TdP. Moreover, we have proposed that the neural Na channel Na1.8-mediated I may be a new player to form the substrate for TdP. Here we discuss TdP mechanisms by comparing the findings in electrical storm rabbits with recently published studies by others in simulation models and human and animal models of LQTS.

摘要

尖端扭转型室性心动过速(TdP)是指长QT综合征(LQTS)中发生的一种多形性室性心动过速(VT),其QRS电轴呈波浪状起伏,尽管该术语也被用于描述QT间期未延长的多形性室性快速性心律失常,如目前被称为短联律室颤(VF)的短联律TdP变异型以及Brugada综合征。自 Dessertennes首次认识到LQTS相关的TdP并创造了这个法语术语(意为“尖端扭转”)以来,在过去50多年里,对其进行了广泛研究,使我们目前对TdP的电生理机制有了一定的认识,即TdP由早期后除极(EAD)引发的触发活动启动,并在复极不均一的基质内通过折返维持。虽然最近出现的一种观点认为陡峭的电压梯度而非EAD对室性早搏的产生至关重要,这为起始模式增添了新内容,但阐明维持机制的研究进展不大。产生特定形式VT的折返活动尚未得到很好的表征。我们通过慢性完全性房室传导阻滞导致的电重构(QT延长),在兔电风暴模型中进行了光学标测,结果表明,由于晚钠电流(I)增强导致不应期延长的组织岛以独特方式促成了漂移转子的产生,这可能解释了TdP的心电图特征。此外,我们还提出神经钠通道Na1.8介导的I可能是形成TdP基质的一个新因素。在此,我们通过比较电风暴兔的研究结果与其他人最近在模拟模型以及LQTS的人和动物模型中发表的研究,来探讨TdP的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99a9/10948600/3994d2f3f25b/fcvm-11-1363848-g001.jpg

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