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Clinical and Genetic Diagnosis for Inherited Cardiac Arrhythmias

机译:临床和遗传诊断遗传心律失常

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Molecular genetic studies in the last 2 decades have revealed a link between several inherited cardiac arrhythmias and genes encoding for ion channels or other membrane components. Two recent international expert consensus statements endorsed by 3 continental electrophysiology societies have updated the clinical and genetic diagnoses and management in patients with inherited arrhythmia syndromes, including congenital long QT syndrome (LQTS) and Brugada syndrome. Thirteen genotypes have been identified in 50% to 80% of clinically affected patients with congenital LQTS. Therefore, genotype-phenotype correlations have been investigated, especially, in the 3 major genotypes-LQT1, LQT2 and LQT3 syndromes-enabling genotype-specific management and therapy. On the other hand, less than half of patients with Brugada syndrome can be genotyped, and mainly for the sodium channel gene, SCN5A . However, recent advances in molecular genetic testing include genome-wide association studies using gene arrays and targeted, whole-exome and whole-genome next-generation sequencing techniques. In this article, I will review the clinical and genetic diagnoses in congenital LQTS and Brugada syndrome.
机译:在过去的2年中,分子遗传学研究揭示了几种遗传心律失常和用于离子通道或其他膜组分的基因之间的联系。最近批准的3个欧陆电生理学社会批准的两项国际专家共识陈述已更新遗传性心律失常综合征患者的临床和遗传诊断和管理,包括先天性长QT综合征(LQTS)和Brugada综合征。已在50%至80%的临床影响患者中鉴定了十三个基因型,先天性LQT。因此,已经研究了基因型 - 表型相关性,特别是在3个主要基因型-LQT1,LQT2和LQT3综合征 - 能够实现基因型特异性管理和治疗中。另一方面,少于一半的患有巴鲁达综合征的患者可以进行基因分型,主要用于钠通道基因,SCN5A。然而,分子遗传检测的最近进步包括使用基因阵列和靶向,全外部和全基因组的下一代测序技术的基因组 - 宽协会研究。在本文中,我将审查先天性LQT和Brugada综合征中的临床和遗传诊断。

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