Nanoscale manipulations of the extracellular microenvironment are increasingly attracting attention in tissue engineering. Here, combining microscopy, biological, and single-cell electrophysiological methodologies, we demonstrate that neonatal rat ventricular myocytes cultured on substrates of multiwall carbon nanotubes interact with carbon nanotubes by forming tight contacts and show increased viability and proliferation. Furthermore, we observed changes in the electrophysiological properties of cardiomyocytes, suggesting that carbon nanotubes are able to promote cardiomyocyte maturation
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Hongyu Sun,1,* Yongchao Mou,2,* Yi Li,3,* Xia Li,4,* Zi Chen,2 Kayla Duval,2 Zhu Huang,1 Ruiwu Dai,1...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Nanoscale manipulations of the extracellular microenvironment are increasingly attracting attention ...
Nanoscale manipulations of the extracellular microenvironment are increasingly attracting attention ...
Myocardial tissue engineering currently represents one of the most realistic strategies for cardiac ...
6siDue to the unique electrical, mechanical and thermal features of carbon nanotubes (CNTs), several...
Heart failure is a disease of epidemic proportion and a leading cause of mortality in the world. Bec...
Heart failure is a disease of epidemic proportion, and is a leading cause of mortality in the world....
Cardiovascular disease (CVD) is the number one global cause of death, accounting for approximately 3...
Cardiovascular disease is currently the top global cause of death, however, research into new therap...
The application of nanotechnology to the cardiovascular system has increasingly caught scientists\u2...
Myocardial infarction (cardiac tissue death) is among the most prevalent causes of death among the c...
Recently, carbon nanotubes together with other types of conductive materials have been used to enhan...
Carbon nanotubes (CNTs) have appeared in recent years as innovative components for the development o...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Hongyu Sun,1,* Yongchao Mou,2,* Yi Li,3,* Xia Li,4,* Zi Chen,2 Kayla Duval,2 Zhu Huang,1 Ruiwu Dai,1...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Nanoscale manipulations of the extracellular microenvironment are increasingly attracting attention ...
Nanoscale manipulations of the extracellular microenvironment are increasingly attracting attention ...
Myocardial tissue engineering currently represents one of the most realistic strategies for cardiac ...
6siDue to the unique electrical, mechanical and thermal features of carbon nanotubes (CNTs), several...
Heart failure is a disease of epidemic proportion and a leading cause of mortality in the world. Bec...
Heart failure is a disease of epidemic proportion, and is a leading cause of mortality in the world....
Cardiovascular disease (CVD) is the number one global cause of death, accounting for approximately 3...
Cardiovascular disease is currently the top global cause of death, however, research into new therap...
The application of nanotechnology to the cardiovascular system has increasingly caught scientists\u2...
Myocardial infarction (cardiac tissue death) is among the most prevalent causes of death among the c...
Recently, carbon nanotubes together with other types of conductive materials have been used to enhan...
Carbon nanotubes (CNTs) have appeared in recent years as innovative components for the development o...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Hongyu Sun,1,* Yongchao Mou,2,* Yi Li,3,* Xia Li,4,* Zi Chen,2 Kayla Duval,2 Zhu Huang,1 Ruiwu Dai,1...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...