BackgroundCardiac electrical conduction delays and blocks cause rhythm disturbances such as complete heart block, which can be fatal. Standard of care relies on electronic devices to artificially restore synchrony. We sought to create a new modality for treating these disorders by engineering electrical conduction tracts designed to propagate electrical impulses.ObjectivesThis study sought to create a new approach for treating cardiac conduction disorders by using engineered electrical conduction tracts (EECTs).MethodsParamagnetic beads were conjugated with an antibody to gamma-sarcoglycan, a cardiomyocyte cell surface antigen, and mixed with freshly isolated neonatal rat ventricular cardiomyocytes. A magnetic field was used to pattern a li...
Myocardial fibrosis (MF), an event that follows myocardial infarction (MI), generates fibrotic scar ...
Regeneration of cardiac tissue remains an ideal approach to restore cardiac function after myocardia...
Cardiac cells are subjected to mechanical and electrical forces, which regulate gene expression and ...
AbstractBackgroundCardiac electrical conduction delays and blocks cause rhythm disturbances such as ...
Background: Cardiomyocytes derived from pluripotent stem cells are immature. Maturation of cardiomyo...
Cardiovascular diseases are the main cause of death in the world and are often associated with the o...
Heart failure remains a major public health concern with a 5-year mortality rate higher than that of...
<p>Disruption of coordinated impulse propagation in the heart as a result of fibrosis or myocardial ...
After myocardial infarction, the stressed environment may cause negative cardiac remodeling. An emer...
AbstractSpontaneously beating engineered heart tissue (EHT) represents an advanced in vitro model fo...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
ObjectivesWe evaluated whether human adult bone marrow-derived mesenchymal stem cells (hMSCs) could ...
Cardiac tissue engineering is a promising approach to provide large-scale tissues for transplantatio...
Background - Human embryonic stem cells (hESCs) derived from blastocysts can propagate indefinitely ...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
Myocardial fibrosis (MF), an event that follows myocardial infarction (MI), generates fibrotic scar ...
Regeneration of cardiac tissue remains an ideal approach to restore cardiac function after myocardia...
Cardiac cells are subjected to mechanical and electrical forces, which regulate gene expression and ...
AbstractBackgroundCardiac electrical conduction delays and blocks cause rhythm disturbances such as ...
Background: Cardiomyocytes derived from pluripotent stem cells are immature. Maturation of cardiomyo...
Cardiovascular diseases are the main cause of death in the world and are often associated with the o...
Heart failure remains a major public health concern with a 5-year mortality rate higher than that of...
<p>Disruption of coordinated impulse propagation in the heart as a result of fibrosis or myocardial ...
After myocardial infarction, the stressed environment may cause negative cardiac remodeling. An emer...
AbstractSpontaneously beating engineered heart tissue (EHT) represents an advanced in vitro model fo...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
ObjectivesWe evaluated whether human adult bone marrow-derived mesenchymal stem cells (hMSCs) could ...
Cardiac tissue engineering is a promising approach to provide large-scale tissues for transplantatio...
Background - Human embryonic stem cells (hESCs) derived from blastocysts can propagate indefinitely ...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
Myocardial fibrosis (MF), an event that follows myocardial infarction (MI), generates fibrotic scar ...
Regeneration of cardiac tissue remains an ideal approach to restore cardiac function after myocardia...
Cardiac cells are subjected to mechanical and electrical forces, which regulate gene expression and ...