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Electrophysiological mechanisms of vandetanib-induced cardiotoxicity: Comparison of action potentials in rabbit Purkinje fibers and pluripotent stem cell-derived cardiomyocytes

机译:Vandetanib引起的心脏毒性的电生理机制:兔Purkinje纤维和多能干细胞衍生的心肌细胞中动作电位的比较

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摘要

Vandetanib, a multi-kinase inhibitor used for the treatment of various cancers, has been reported to induce several adverse cardiac effects. However, the underlying mechanisms of vandetanib-induced cardiotoxicity are unclear. This study aimed to investigate the mechanism of vandetanib-induced cardiotoxicity using intracellular electrophysiological recordings on human-induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs), rabbit Purkinje fibers, and HEK293 cells transiently expressing human ether-a-go-go-related gene (hERG; the rapidly activating delayed rectifier K+ channel, IKr), KCNQ1/KCNE1 (the slowly activating delayed rectifier K+ current, IKs), KCNJ2 (the inwardly rectifying K+ current, IK1) or SCN5A (the inward Na+ current, INa). Purkinje fiber assays and ion channel studies showed that vandetanib at concentrations of 1 and 3 μM inhibited the hERG currents and prolonged the action potential duration. Alanine scanning and in silico hERG docking studies demonstrated that Y652 and F656 in the hERG S6 domain play critical roles in vandetanib binding. In hiPSC-CMs, vandetanib markedly reduced the maximum rate of depolarization during the AP upstroke. Ion channel studies revealed that hiPSC-CMs were more sensitive to inhibition of the INa by vandetanib than in a heterogeneously expressed HEK293 cell model, consistent with the changes in the AP parameters of hiPSC-CMs. The subclasses of Class I antiarrhythmic drugs inhibited INa currents in a dose-dependent manner in hiPSC-CMs and SCN5A-encoded HEK293 cells. The inhibitory potency of vandetanib for INa was much higher in hiPSC-CMs (IC50: 2.72 μM) than in HEK293 cells (IC50: 36.63 μM). These data suggest that AP and INa assays using hiPSC-CMs are useful electrophysiological models for prediction of drug-induced cardiotoxicity.
机译:Vandetanib是一种用于治疗各种癌症的多激酶抑制剂,据报道可诱发多种心脏不良反应。但是,vandetanib引起的心脏毒性的潜在机制尚不清楚。这项研究的目的是利用细胞内电生理学记录,研究人类诱导的多能干细胞衍生的心肌细胞(hiPSC-CMs),兔Purkinje纤维和瞬时表达人类以太Gogo的HEK293细胞的vandetanib引起的心脏毒性机制。相关基因(hERG;快速激活的延迟整流K + 通道IKr),KCNQ1 / KCNE1(慢激活的延迟整流K + 电流IKs),KCNJ2(向内整流K + 电流IK1)或SCN5A(向内Na + 电流INa)。 Purkinje纤维测定法和离子通道研究表明,范德他尼浓度为1和3μM会抑制hERG电流并延长动作电位持续时间。丙氨酸扫描和计算机内hERG对接研究表明,hERG S6域中的Y652和F656在vandetanib结合中起关键作用。在hiPSC-CM中,vandetanib显着降低了AP上扬过程中的最大去极化率。离子通道研究表明,hiPSC-CM对范德他尼抑制INa的敏感性比异质表达的HEK293细胞模型更为敏感,这与hiPSC-CM的AP参数的变化一致。 I类抗心律不齐药物的亚类在hiPSC-CM和SCN5A编码的HEK293细胞中以剂量依赖的方式抑制INa电流。在hiPSC-CMs(IC50:2.72μM)中,vandetanib对INa的抑制效力比在HEK293细胞中(IC50:36.63μM)高得多。这些数据表明,使用hiPSC-CM进行的AP和INa分析对于预测药物诱发的心脏毒性是有用的电生理模型。

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