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The ultrarapid delayed rectifier potassium current has important functional role in the repolarization reserve of canine and human ventricular muscle.

Abdelmagid, Alaa Amin Elmubarak and Mohammed, Aiman and Mohácsi, Gábor and Paskuj, Benjámin and Bitay, Gergő and Tomek, Jakub and Dalal, Sahil and Árpádffy-Lovas, Tamás and Demeter-Haludka, Vivien and Koncz, Istvan and Naveed, Muhammad and Virág, László and Nagy, Norbert and Varró, András and Baczkó, István and Jost, Norbert László and Kohajda, Zsófia and Topal, Leila (2026) The ultrarapid delayed rectifier potassium current has important functional role in the repolarization reserve of canine and human ventricular muscle. JOURNAL OF PHYSIOLOGY-LONDON. ISSN 0022-3751 (In Press)

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Abstract

The ultrarapid delayed rectifier potassium current (IKur) has long been considered an atrial-specific current with no functional role in the ventricles, despite evidence of its expression in ventricular myocytes. In the present study we challenged this prevailing concept and investigated the potential role of IKur in ventricular repolarization. Kv1.5 protein expression was determined by immunocytochemistry in canine and undiseased human cardiac tissue samples. Action potentials (APs) were recorded using conventional microelectrode techniques in canine and human cardiac preparations, and ion currents were measured using the whole-cell patch-clamp technique in isolated cardiomyocytes. In silico simulations were performed to investigate the role of the IKur current using a human ventricular model (T-WorldIKur). Kv1.5 protein expression was detected in canine atrial, ventricular and Purkinje fibre cells, as well as in undiseased human left ventricular myocardium. In canine atrial preparations IKur inhibition shifted the plateau phase of the AP into the positive voltage direction and consequently shortened AP duration. Application of 100 µM 4-aminopyridine (4-AP) revealed ionic currents of similar magnitude in ventricular myocytes and Purkinje fibres, which were attributed to IKur. Inhibition of IKur caused prolongation of the APs recorded from endocardial and midmyocardial preparations, as well as from Purkinje fibres. Under conditions of attenuated repolarization reserve IKur inhibition induced augmented repolarization lengthening and frequent early afterdepolarizations (EADs). In silico modelling data regarding the IKur inhibition-evoked EAD formations are in good agreement with the experimental findings. IKur is present and functionally active in ventricular myocardium and may represent a significant contributor to ventricular repolarization reserve. KEY POINTS: The ultrarapid delayed rectifier potassium current (IKur) has long been considered an atrial-specific current with no functional role in the ventricles. In the present study, we challenged this prevailing concept and investigated the potential role of IKur in ventricular repolarization. Cellular electrophysiology and molecular cardiological experiments were performed on cardiac preparations obtained from dog and undiseased human hearts. We present clear evidence that IKur current is present in the ventricular myocardium at both molecular and functional levels. We also confirm that IKur current plays a significant role in ventricular repolarization reserve. We concluded that IKur is present and functionally active in ventricular myocardium and may represent a significant contributor to ventricular repolarization reserve.

Item Type: Article
Additional Information: Department of Pharmacology and Pharmacotherapy, Albert Szent-Györgyi Medical School, University of Szeged, Szeged, Hungary Department of Anatomy, Physiology, and Genetics, University of Oxford, United Kingdom HUN-REN-SZTE Research Group for Cardiovascular Pharmacology, Hungarian Research Network, Szeged, Hungary Pharmaceutical and Medical Device Developments Competence Centre of the Life Sciences Cluster of the Centre of Excellence for Interdisciplinary Research, Development and Innovation of the University of Szeged, Szeged, Hungary Export Date: 29 July 2026; Cited By: 0; Correspondence Address: I. Baczkó; Department of Pharmacology and Pharmacotherapy, Albert Szent-Györgyi Medical School, University of Szeged, Szeged, Hungary; email: jost.norbert@med.u-szeged.hu; N. Jost; Department of Pharmacology and Pharmacotherapy, Albert Szent-Györgyi Medical School, University of Szeged, Szeged, Hungary; email: baczko.istvan@med.u-szeged.hu; CODEN: JPHYA
Uncontrolled Keywords: Electrophysiology; cardiac muscle; repolarization reserve; Proarrhythmia; IKur current;
Subjects: R Medicine / orvostudomány > R1 Medicine (General) / orvostudomány általában
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 18 Sep 2026 06:53
Last Modified: 18 Sep 2026 06:53
URI: https://real.mtak.hu/id/eprint/246622

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