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Published on: July 15, 2019
Variability of Action Potentials Within and Among Cardiac Cell Clusters Derived from Human Embryonic Stem Cells
Renjun Zhu1, Michal A Millrod2, Elias T Zambidis2
1Department of Biomedical Engineering, The Johns Hopkins University, Baltimore, MD 21205.
Insights
Electrophysiological variability in human embryonic stem cell-derived cardiomyocytes (hESC-CMs) persists. This study identified distinct electrophysiological phenotypes within and across hESC-CM clusters, aiding quality improvement for applications.
Area of Science:
- Cardiology
- Stem Cell Biology
- Electrophysiology
Background:
- Electrophysiological variability in pluripotent stem cell-derived cardiomyocytes (hESC-CMs) hinders scientific and translational use.
- Action potential (AP) variability is a key challenge in hESC-CM research.
Purpose of the Study:
- To investigate and characterize the electrophysiological variability in hESC-CM clusters.
- To identify distinct electrophysiological phenotypes within hESC-CM populations.
Main Methods:
- High-resolution optical mapping of over 23,000 action potentials (APs) from hESC-CM clusters.
- Analysis of AP parameters including APD30, APD80, triangulation, and fractional repolarization.
- Application of an automated method to group cells based on AP shape and identify subpopulations.
Main Results:
- Significant AP variability was observed among and within hESC-CM clusters despite efforts to standardize conditions.
- Similar APs were found in spatially close cells, suggesting localized electrophysiological characteristics.
- Distinct electrophysiological phenotypes were identified within single clusters and across different clusters, forming subpopulations.
Conclusions:
- hESC-CMs exhibit significant electrophysiological heterogeneity, forming distinct phenotypic regions.
- Identifying these phenotypes is crucial for improving hESC-CM quality for diagnostic, therapeutic, and drug screening applications.
- Systematic analysis of heterogeneity aids in evaluating strategies for enhancing hESC-CMs.
Abstract:
Electrophysiological variability in cardiomyocytes derived from pluripotent stem cells continues to be an impediment for their scientific and translational applications. We studied the variability of action potentials (APs) recorded from clusters of human embryonic stem cell-derived cardiomyocytes (hESC-CMs) using high-resolution optical mapping. Over 23,000 APs were analyzed through four parameters: APD30, APD80, triangulation and fractional repolarization. Although measures were taken to reduce variability due to cell culture conditions and rate-dependency of APs, we still observed significant variability in APs among and within the clusters. However, similar APs were found in spatial locations with close proximity, and in some clusters formed distinct regions having different AP characteristics that were reflected as separate peaks in the AP parameter distributions, suggesting multiple electrophysiological phenotypes. Using a recently developed automated method to group cells based on their entire AP shape, we identified distinct regions of different phenotypes within single clusters and common phenotypes across different clusters when separating APs into 2 or 3 subpopulations. The systematic analysis of the heterogeneity and potential phenotypes of large populations of hESC-CMs can be used to evaluate strategies to improve the quality of pluripotent stem cell-derived cardiomyocytes for use in diagnostic and therapeutic applications and in drug screening.
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