
Cardiac transmembrane ion channels and action potentials: cellular physiology and arrhythmogenic behavior
Author(s) -
András Varró,
Jakub Tomek,
Norbert Nagy,
László Virág,
Elisa Passini,
Blanca Rodriguez,
István Baczkó
Publication year - 2021
Publication title -
physiological reviews
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 13.853
H-Index - 342
eISSN - 1522-1210
pISSN - 0031-9333
DOI - 10.1152/physrev.00024.2019
Subject(s) - ion channel , cardiac electrophysiology , electrophysiology , neuroscience , cell physiology , cardiac action potential , cardiovascular physiology , biology , medicine , cell , receptor , repolarization , genetics
Cardiac arrhythmias are among the leading causes of mortality. They often arise from alterations in the electrophysiological properties of cardiac cells and their underlying ionic mechanisms. It is therefore critical to further unravel the pathophysiology of the ionic basis of human cardiac electrophysiology in health and disease. In the first part of this review, current knowledge on the differences in ion channel expression and properties of the ionic processes that determine the morphology and properties of cardiac action potentials and calcium dynamics from cardiomyocytes in different regions of the heart are described. Then the cellular mechanisms promoting arrhythmias in congenital or acquired conditions of ion channel function (electrical remodeling) are discussed. The focus is on human-relevant findings obtained with clinical, experimental, and computational studies, given that interspecies differences make the extrapolation from animal experiments to human clinical settings difficult. Deepening the understanding of the diverse pathophysiology of human cellular electrophysiology will help in developing novel and effective antiarrhythmic strategies for specific subpopulations and disease conditions.