Schwartz Peter J, Sala Luca
Istituto Auxologico Italiano IRCCS, Center for Cardiac Arrhythmias of Genetic Origin and Laboratory of Cardiovascular Genetics.
Department of Biotechnology and Biosciences, University of Milano - Bicocca, Milan, Italy.
Curr Opin Cardiol. 2023 May 1;38(3):149-156. doi: 10.1097/HCO.0000000000001027. Epub 2023 Jan 30.
To summarize and critically assess the contribution of genetics to the Long QT Syndrome (LQTS), with specific reference to the unraveling of its underlying mechanisms and to its impact on clinical practice.
The evolution towards our current approach to therapy for LQTS patients is examined in terms of risk stratification, gene-specific management, and assessment of the clinical impact that genetic modifiers may have in modulating the natural history of the patients. Glimpses are provided on the newest multidisciplinary approaches to study disease mechanisms, test new candidate drugs and identify precision treatments.
It is undeniable that genetics has revolutionized our mechanistic understanding of cardiac channelopathies. Its impact has been enormous but, curiously, the way LQTS patients are being treated today is largely the same that was used in the pregenetic era, even though management has been refined and gene-specific differences allow a more individually tailored antiarrhythmic protection. The synergy of genetic findings with modern in vitro and in silico tools may expand precision treatments; however, they will need to prove more effective than the current therapeutic approaches and equally safe.
总结并批判性评估遗传学对长QT综合征(LQTS)的贡献,特别提及对其潜在机制的揭示及其对临床实践的影响。
从风险分层、基因特异性管理以及遗传修饰因子对患者自然病程调节的临床影响评估等方面,审视了当前LQTS患者治疗方法的演变。介绍了研究疾病机制、测试新候选药物和确定精准治疗的最新多学科方法。
不可否认,遗传学彻底改变了我们对心脏离子通道病的机制理解。其影响巨大,但奇怪的是,尽管管理已得到完善且基因特异性差异允许更个体化的抗心律失常保护,但如今LQTS患者的治疗方式在很大程度上仍与遗传学前时代相同。遗传学发现与现代体外和计算机工具的协同作用可能会扩大精准治疗;然而,它们需要证明比当前治疗方法更有效且同样安全。