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Technical Applications of Microelectrode Array and Patch Clamp Recordings on Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes
Published on: August 4, 2022
Prediction of drug-induced cardiotoxicity using human embryonic stem cell-derived cardiomyocytes
Stefan R Braam1, Leon Tertoolen, Anja van de Stolpe
1Department of Anatomy and Embryology, Leiden University Medical Centre, Leiden, The Netherlands.
Abstract:
Recent withdrawals of prescription drugs from clinical use because of unexpected side effects on the heart have highlighted the need for more reliable cardiac safety pharmacology assays. Block of the human Ether-a-go go Related Gene (hERG) ion channel in particular is associated with life-threatening arrhythmias, such as Torsade de Pointes (TdP). Here we investigated human cardiomyocytes derived from pluripotent (embryonic) stem cells (hESC) as a renewable, scalable, and reproducible system on which to base cardiac safety pharmacology assays. Analyses of extracellular field potentials in hESC-derived cardiomyocytes (hESC-CM) and generation of derivative field potential duration (FPD) values showed dose-dependent responses for 12 cardiac and noncardiac drugs. Serum levels in patients of drugs with known effects on QT interval overlapped with prolonged FPD values derived from hESC-CM, as predicted. We thus propose hESC-CM FPD prolongation as a safety criterion for preclinical evaluation of new drugs in development. This is the first study in which dose responses of such a wide range of compounds on hESC-CM have been generated and shown to be predictive of clinical effects. We propose that assays based on hESC-CM could complement or potentially replace some of the preclinical cardiac toxicity screening tests currently used for lead optimization and further development of new drugs.
Insights
Human stem cell-derived cardiomyocytes offer a reliable method for predicting drug-induced cardiac arrhythmias. This new assay system, using field potential duration, can improve preclinical drug safety evaluations.
Area of Science:
- Cardiology
- Pharmacology
- Stem Cell Biology
Background:
- Drug-induced cardiotoxicity necessitates improved preclinical safety assays.
- hERG channel blockade is linked to dangerous arrhythmias like Torsade de Pointes (TdP).
Purpose of the Study:
- To evaluate human embryonic stem cell-derived cardiomyocytes (hESC-CM) as a model for cardiac safety pharmacology.
- To establish hESC-CM field potential duration (FPD) as a predictive safety criterion.
Main Methods:
- Cultured hESC-CM to assess extracellular field potentials.
- Measured dose-dependent FPD changes in response to 12 cardiac and non-cardiac drugs.
- Correlated hESC-CM FPD values with known clinical QT interval effects.
Main Results:
- hESC-CM demonstrated dose-dependent responses to various drugs.
- Prolonged FPD in hESC-CM correlated with observed clinical effects on QT interval.
- This system provides predictive data for drug cardiotoxicity.
Conclusions:
- hESC-CM FPD prolongation is a viable safety criterion for preclinical drug evaluation.
- This assay system can complement or replace existing cardiac toxicity screening methods.
- This study presents the first dose-response data for a wide range of compounds on hESC-CM, showing predictive clinical relevance.
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