Department of Cardiology, Shanghai Institute of Cardiovascular Diseases, Shanghai Xuhui District Central Hospital & Zhongshan-xuhui Hospital, Zhongshan Hospital, Fudan University, Shanghai, China.
Department of Cardiology, Shanghai Xuhui District Central Hospital & Zhongshan-xuhui Hospital, Shanghai, China.
Clin Transl Med. 2021 Oct;11(10):e530. doi: 10.1002/ctm2.530.
Cardiac voltage-gated ion channels (VGICs) play critical roles in mediating cardiac electrophysiological signals, such as action potentials, to maintain normal heart excitability and contraction. Inherited or acquired alterations in the structure, expression, or function of VGICs, as well as VGIC-related side effects of pharmaceutical drug delivery can result in abnormal cellular electrophysiological processes that induce life-threatening cardiac arrhythmias or even sudden cardiac death. Hence, to reduce possible heart-related risks, VGICs must be acknowledged as important targets in drug discovery and safety studies related to cardiac disease. In this review, we first summarize the development and application of electrophysiological techniques that are employed in cardiac VGIC studies alone or in combination with other techniques such as cryoelectron microscopy, optical imaging and optogenetics. Subsequently, we describe the characteristics, structure, mechanisms, and functions of various well-studied VGICs in ventricular myocytes and analyze their roles in and contributions to both physiological cardiac excitability and inherited cardiac diseases. Finally, we address the implications of the structure and function of ventricular VGICs for drug safety evaluation. In summary, multidisciplinary studies on VGICs help researchers discover potential targets of VGICs and novel VGICs in heart, enrich their knowledge of the properties and functions, determine the operation mechanisms of pathological VGICs, and introduce groundbreaking trends in drug therapy strategies, and drug safety evaluation.
心脏电压门控离子通道(VGICs)在介导心脏电生理信号(如动作电位)方面发挥着关键作用,以维持正常的心脏兴奋性和收缩性。VGIC 的结构、表达或功能的遗传或获得性改变,以及药物传递的 VGIC 相关副作用,可导致异常的细胞电生理过程,引发危及生命的心律失常甚至心脏性猝死。因此,为了降低可能与心脏相关的风险,VGIC 必须被视为与心脏疾病相关的药物发现和安全性研究中的重要靶点。在这篇综述中,我们首先总结了单独或与其他技术(如冷冻电子显微镜、光学成像和光遗传学)结合使用的心脏 VGIC 研究中使用的电生理技术的发展和应用。随后,我们描述了各种研究充分的心室肌细胞中 VGIC 的特征、结构、机制和功能,并分析了它们在生理心脏兴奋性和遗传性心脏疾病中的作用和贡献。最后,我们探讨了心室 VGIC 的结构和功能对药物安全性评估的意义。总之,对 VGIC 的多学科研究有助于研究人员发现心脏中潜在的 VGIC 靶点和新型 VGIC,丰富对其特性和功能的认识,确定病理性 VGIC 的作用机制,并引入药物治疗策略和药物安全性评估的开创性趋势。