Assessing drug safety by identifying the axis of arrhythmia in cardiomyocyte electrophysiology.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38079357.
- Also identified by DOI 10.7554/eLife.90027 and PMC identifier 10712948.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Many classes of drugs can induce fatal cardiac arrhythmias by disrupting the electrophysiology of cardiomyocytes. Safety guidelines thus require all new drugs to be assessed for pro-arrhythmic risk prior to conducting human trials. The standard safety protocols primarily focus on drug blockade of the delayed-rectifier potassium current (<i>I</i><sub>Kr</sub>). Yet the risk is better assessed using four key ion currents (<i>I</i><sub>Kr</sub>, <i>I</i><sub>CaL</sub>, <i>I</i><sub>NaL</sub>, <i>I</i><sub>Ks</sub>). We simulated 100,000 phenotypically diverse cardiomyocytes to identify the underlying relationship between the blockade of those currents and the emergence of ectopic beats in the action potential. We call that relationship the axis of arrhythmia. It serves as a yardstick for quantifying the arrhythmogenic risk of any drug from its profile of multi-channel block alone. We tested it on 109 drugs and found that it predicted the clinical risk labels with an accuracy of 88.1-90.8%. Pharmacologists can use our method to assess the safety of novel drugs without resorting to animal testing or unwieldy computer simulations.
Medical subject headings
- Myocytes, Cardiac
- Arrhythmias, Cardiac