Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject of a tremendous amount of research, often with small-animal models such as rodents. However, the physiology of the human heart differs significantly from that of the rodent heart, underscoring the need for clinically relevant models to study heart disease. Here, we present a protocol to model ischemic heart disease using cardiomyocytes differentiated from human induced pluripotent stem cells (hiPS-CMs) and to quantify the damage and functional impairment of the ischemic cardiomyocytes. Exposure to 2% oxygen without glucose and serum increases the percentage of injured cells, which is indicated by staining of the nucleus with propidium iodide,...
Ischemic heart disease is a major cause of death worldwide, and the only available therapy to salvag...
Ventricular cardiac muscle cells, the cardiomyocytes, are the working muscle cells of the heart that...
To advance drug discovery for cardiovascular patients, new pre-clinical models and quantification me...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Diabetes is a global epidemic, with cardiovascular disease being the leading cause of death in diabe...
A scientific milestone that has tremendously impacted the cardiac research field has been the discov...
A comprehensive understanding of the pathophysiology and cellular responses to drugs in human heart ...
A comprehensive understanding of the pathophysiology and cellular responses to drugs in human heart ...
In the last decade, the generation of cardiac disease models based on human-induced pluripotent stem...
In the last decade, the generation of cardiac disease models based on human-induced pluripotent stem...
Ischemic heart disease is a major cause of death worldwide, and the only available therapy to salvag...
Ischemic heart disease is a major cause of death worldwide, and the only available therapy to salvag...
Ventricular cardiac muscle cells, the cardiomyocytes, are the working muscle cells of the heart that...
To advance drug discovery for cardiovascular patients, new pre-clinical models and quantification me...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Ischemic heart disease is a significant cause of death worldwide. It has therefore been the subject ...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Ischemic heart disease remains the largest cause of death worldwide. Accordingly, many researchers h...
Diabetes is a global epidemic, with cardiovascular disease being the leading cause of death in diabe...
A scientific milestone that has tremendously impacted the cardiac research field has been the discov...
A comprehensive understanding of the pathophysiology and cellular responses to drugs in human heart ...
A comprehensive understanding of the pathophysiology and cellular responses to drugs in human heart ...
In the last decade, the generation of cardiac disease models based on human-induced pluripotent stem...
In the last decade, the generation of cardiac disease models based on human-induced pluripotent stem...
Ischemic heart disease is a major cause of death worldwide, and the only available therapy to salvag...
Ischemic heart disease is a major cause of death worldwide, and the only available therapy to salvag...
Ventricular cardiac muscle cells, the cardiomyocytes, are the working muscle cells of the heart that...
To advance drug discovery for cardiovascular patients, new pre-clinical models and quantification me...