Human cardiac myocytes derived from pluripotent stem cells (hCM) have invigorated interest in genetic disease mechanisms and cardiac safety testing; however, the technology to fully assess electrophysiological function in an assay that is amenable to high throughput screening has lagged. We describe a fully contactless system using optical pacing with an infrared (IR) laser and multi-site high fidelity fluorescence imaging to assess multiple electrophysiological parameters from hCM monolayers in a standard 96-well plate. Simultaneous multi-site action potentials (FluoVolt) or Ca2+ transients (Fluo4-AM) were measured, from which high resolution maps of conduction velocity and action potential duration (APD) were obtained in a single well. En...
Many vital processes depend on the generation, changes, and conduction of cellular transmembrane pot...
Heart disease has been the leading cause of death in the United States for more than one century. Mo...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...
Human cardiac myocytes derived from pluripotent stem cells (hCM) have invigorated interest in geneti...
Current techniques for fast characterization of cardiac electrophysiology employ optical technologie...
This article shows the combination of light activatable ion channels and microelectrode array (MEA) ...
Rationale: Human induced pluripotent stem cell–derived cardiomyocytes (iPSC-CMs) offer a powerful in...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Side effects on cardiac ion channels causing lethal arrhythmias are one major reason for drug withdr...
Rationale: Monitoring and controlling cardiac myocyte activity with optogenetic tools offer exciting...
RATIONALE: Monitoring and controlling cardiac myocyte activity with optogenetic tools offer exciting...
noIntroduction: Potential-sensitive dyes have primarily been used to optically record action potenti...
The emerging heart-on-a-chip platforms are promising approaches to establish cardiac cell/tissue mod...
The rising phase of rat cardiac action potentials was measured in physiological solutions using the ...
Many vital processes depend on the generation, changes, and conduction of cellular transmembrane pot...
Heart disease has been the leading cause of death in the United States for more than one century. Mo...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...
Human cardiac myocytes derived from pluripotent stem cells (hCM) have invigorated interest in geneti...
Current techniques for fast characterization of cardiac electrophysiology employ optical technologie...
This article shows the combination of light activatable ion channels and microelectrode array (MEA) ...
Rationale: Human induced pluripotent stem cell–derived cardiomyocytes (iPSC-CMs) offer a powerful in...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Current cardiac drug safety assessments focus on hERG channel block and QT prolongation for evaluati...
Side effects on cardiac ion channels causing lethal arrhythmias are one major reason for drug withdr...
Rationale: Monitoring and controlling cardiac myocyte activity with optogenetic tools offer exciting...
RATIONALE: Monitoring and controlling cardiac myocyte activity with optogenetic tools offer exciting...
noIntroduction: Potential-sensitive dyes have primarily been used to optically record action potenti...
The emerging heart-on-a-chip platforms are promising approaches to establish cardiac cell/tissue mod...
The rising phase of rat cardiac action potentials was measured in physiological solutions using the ...
Many vital processes depend on the generation, changes, and conduction of cellular transmembrane pot...
Heart disease has been the leading cause of death in the United States for more than one century. Mo...
The non-invasive technique of optical mapping by using voltage-sensitive fluorescent dyes (VSFD), es...