Development, calibration, and validation of a novel human ventricular myocyte model in health, disease, and drug block

Author:

Tomek Jakub1ORCID,Bueno-Orovio Alfonso1,Passini Elisa1,Zhou Xin1,Minchole Ana1,Britton Oliver1,Bartolucci Chiara2,Severi Stefano2ORCID,Shrier Alvin3,Virag Laszlo4,Varro Andras4,Rodriguez Blanca1

Affiliation:

1. Department of Computer Science, British Heart Foundation Centre of Research Excellence, University of Oxford, Oxford, United Kingdom

2. Department of Electrical, Electronic, and Information Engineering "Guglielmo Marconi", University of Bologna, Bologna, Italy

3. Department of Physiology, McGill University, Montreal, Canada

4. Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Szeged, Szeged, Hungary

Abstract

Human-based modelling and simulations are becoming ubiquitous in biomedical science due to their ability to augment experimental and clinical investigations. Cardiac electrophysiology is one of the most advanced areas, with cardiac modelling and simulation being considered for virtual testing of pharmacological therapies and medical devices. Current models present inconsistencies with experimental data, which limit further progress. In this study, we present the design, development, calibration and independent validation of a human-based ventricular model (ToR-ORd) for simulations of electrophysiology and excitation-contraction coupling, from ionic to whole-organ dynamics, including the electrocardiogram. Validation based on substantial multiscale simulations supports the credibility of the ToR-ORd model under healthy and key disease conditions, as well as drug blockade. In addition, the process uncovers new theoretical insights into the biophysical properties of the L-type calcium current, which are critical for sodium and calcium dynamics. These insights enable the reformulation of L-type calcium current, as well as replacement of the hERG current model.

Funder

Wellcome

British Heart Foundation

European Commission

National Centre for the Replacement, Refinement and Reduction of Animals in Research

European Federation of Pharmaceutical Industries and Associations

BHF Centre of Research Excellence, Oxford

UK National Supercomputing

Partnership for Advanced Computing in Europe AISBL

Amazon Web Services

Horizon 2020

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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