Key result
A novel screening system combining in vitro patch clamp assays and a multiscale heart simulator reliably predicted concentration-dependent ventricular arrhythmias for 12 tested drugs.
Why the study?
Does a screening system combining in vitro patch clamp and a multiscale heart simulator reliably predict drug-induced arrhythmogenic risk?
Does a screening system combining in vitro patch clamp and a multiscale heart simulator reliably predict drug-induced arrhythmogenic risk?
A novel screening system combining in vitro patch clamp assays and an in silico multiscale heart simulator can reliably and efficiently predict drug-induced arrhythmogenic risk.
May accelerate preclinical arrhythmia screening; leaves open translation to clinical drug safety assessment.
To save time and cost for drug discovery, a paradigm shift in cardiotoxicity testing is required. We introduce a novel screening system for drug-induced arrhythmogenic risk that combines in vitro pharmacological assays and a multiscale heart simulator. For 12 drugs reported to have varying cardiotoxicity risks, dose-inhibition curves were determined for six ion channels using automated patch clamp systems. By manipulating the channel models implemented in a heart simulator consisting of more than 20 million myocyte models, we simulated a standard electrocardiogram (ECG) under various doses of drugs. When the drug concentrations were increased from therapeutic levels, each drug induced a concentration-dependent characteristic type of ventricular arrhythmia, whereas no arrhythmias were observed at any dose with drugs known to be safe. We have shown that our system combining in vitro and in silico technologies can predict drug-induced arrhythmogenic risk reliably and efficiently.
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Okada et al. (2015) studied Drug-induced arrhythmogenic risk. Screening system combining in vitro pharmacological assays and a multiscale heart simulator was evaluated on Ventricular arrhythmia on simulated ECG. A novel screening system combining in vitro patch clamp assays and a multiscale heart simulator reliably predicted concentration-dependent ventricular arrhythmias for 12 tested drugs.
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