The lack of a robust pipeline of medical therapeutic agents for the treatment of heart disease may be partially attributed to the lack of in vitro models that recapitulate the essential structure–function relationships of healthy and diseased myocardium. We designed and built a system to mimic mechanical overload in vitro by applying cyclic stretch to engineered laminar ventricular tissue on a stretchable chip. To test our model, we quantified changes in gene expression, myocyte architecture, calcium handling, and contractile function and compared our results vs. several decades of animal studies and clinical observations. Cyclic stretch activated gene expression profiles characteristic of pathological remodeling, including decreased α- to ...
The development of cardiac models that faithfully recapitulate heart conditions is the goal of cardi...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
The integration of in vitro cardiac tissue models, human induced pluripotent stem cells (hiPSCs) and...
Cardiovascular diseases are a major cause of mortality resulting in serious health concerns and dete...
Cardiovascular disease (CVD) is broadly characterized by a loss of global function, exacerbated by a...
In vitro studies of cardiac physiology and drug response have traditionally been performed on i...
Cardiac hypertrophy accompanies many forms of cardiovascular diseases. The mechanisms behind the dev...
Single cardiomyocytes contain myofibrils that harbor the sarcomere-based contractile machinery of th...
International audienceAims Cardiac remodelling is the process by which the heart adapts to its envir...
There is currently an overwhelming need for functional replacement of diseased or damaged cardiac ti...
Engineered cardiac tissue models become increasingly important for understanding normal and diseased...
Sudden cardiac death in the young is devastating. Advances in genetics have associated mutations in ...
Heart failure is a growing major cause of human morbidity and mortality worldwide. A wave of new ins...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
The development of cardiac models that faithfully recapitulate heart conditions is the goal of cardi...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
The integration of in vitro cardiac tissue models, human induced pluripotent stem cells (hiPSCs) and...
Cardiovascular diseases are a major cause of mortality resulting in serious health concerns and dete...
Cardiovascular disease (CVD) is broadly characterized by a loss of global function, exacerbated by a...
In vitro studies of cardiac physiology and drug response have traditionally been performed on i...
Cardiac hypertrophy accompanies many forms of cardiovascular diseases. The mechanisms behind the dev...
Single cardiomyocytes contain myofibrils that harbor the sarcomere-based contractile machinery of th...
International audienceAims Cardiac remodelling is the process by which the heart adapts to its envir...
There is currently an overwhelming need for functional replacement of diseased or damaged cardiac ti...
Engineered cardiac tissue models become increasingly important for understanding normal and diseased...
Sudden cardiac death in the young is devastating. Advances in genetics have associated mutations in ...
Heart failure is a growing major cause of human morbidity and mortality worldwide. A wave of new ins...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
The development of cardiac models that faithfully recapitulate heart conditions is the goal of cardi...
Engineered cardiac tissue models become increasingly important for understanding normal and disease ...
The integration of in vitro cardiac tissue models, human induced pluripotent stem cells (hiPSCs) and...