儿茶酚胺能多态性室性心动过速
医学
短QT综合征
心源性猝死
长QT综合征
Brugada综合征
诱导多能干细胞
赫尔格
离子通道病
重症监护医学
心脏病学
内科学
QT间期
兰尼碱受体2
钾通道
兰尼定受体
胚胎干细胞
化学
钙
基因
生物化学
作者
Sneha Annie Sebastian,Venkatesh Panthangi,Yashendra Sethi,Inderbir Padda,Ubaid Khan,Ziad R Affas,Chinmaya Mareddy,Lee Dolack,Gurpreet Johal
标识
DOI:10.1016/j.cpcardiol.2023.101990
摘要
Sudden cardiac death (SCD) is one of the leading causes of death worldwide, usually involving young people. SCD remains a critical public health problem accounting for 185,000-450,000 deaths annually, representing around 7%-18% of all deaths globally. As per evidence, ∼2%-54% of sudden unexpected deaths in people under the age of 35 years fail to show evidence of structural cardiac abnormalities at autopsy, making ion channelopathies the probable causes in such cases. The most generally recognized cardiac ion channelopathies with genetic testing are long QT syndrome (LQTS), Brugada syndrome (BrS), short QT syndrome (SQTS), and catecholaminergic polymorphic ventricular tachycardia (CPVT). The substantial progress in understanding the genetics of ion channelopathies in the last 2 decades has obliged the early diagnosis and prevention of SCD to a certain extent. In this review, we analyze the critical challenges and recent advancements in the identification, risk stratification, and clinical management of potentially fatal cardiac ion channel disorders. We also emphasize the application of precision medicine (PM) and artificial intelligence (AI) for comprehending the underlying genetic mechanisms, especially the role of human induced pluripotent stem cell (iPSC) based platforms to unravel the primary refractory clinical problems associated with channelopathies.
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