Key result
Chloride channels and transporters crucially regulate cardiomyocyte bioelectrical activity and determine action potential configuration.
Why the study?
Disruption of transmembrane chloride transport alters normal electrical activity and causes cardiac pathologies and arrhythmias, prompting a review of how chloride transport influences cardiomyocyte bioelectrical activity.
Design
Review
Authors
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May implicate chloride channels in arrhythmias; leaves open therapeutic targeting without dedicated trials.
This review highlights the critical role of chloride channels and transporters in cardiac electrophysiology and their potential implication in arrhythmias.
Voronina et al. (2024) conducted a review in Cardiac electrophysiology and arrhythmias. Chloride channels and transporters was evaluated. Chloride channels and transporters, including CFTR, ClC-2, CaCC, and VRAC, play a crucial role in regulating the bioelectrical activity of cardiomyocytes and determining action potential configuration.
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