With the development of biomimetic scaffolds for engineered cardiac constructs, a considerable number of biomaterials has been evaluated. However, in most previously reported cardiac constructs, the function of the cardiomyocytes (CMs) is restricted because of mismatches in the mechanics, conductivity, and submicrometer structure of the matrix. In this work, type I collagen hydrogels were combined with carbon nanotubes (CNTs) to assess potential improvements in hydrogel strength and conductivity and potential effects on the hydrogel structure. CMs seeded within the CNT–collagen hybrid hydrogels showed improved cardiac cell functions compared to those within pure collagen hydrogels, which suggested great promise of CNT–collagen hydrogels as ...
abstract: Cardiac tissue engineering is an emerging field that has the potential to regenerate and r...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Abstract Background The niche of tissue development in vivo involves the growth matrix, biophysical ...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Hongyu Sun,* Jing Zhou,* Zhu Huang,* Linlin Qu,* Ning Lin,* Chengxiao Liang, Ruiwu Dai, Lijun Tang, ...
Scaffolds derived from decellularized cardiac tissue offer an enormous advantage for cardiac applica...
Thesis (M.A.)--Boston UniversityCardiovascular disease is the leading cause of mortality in the worl...
WOS: 000339035000009PubMed ID: 24927679In the past few years, a considerable amount of effort has be...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Myocardial infarction (cardiac tissue death) is among the most prevalent causes of death among the c...
Myocardial microenvironment plays a decisive role in guiding the function and fate of cardiomyocytes...
In the past few years, a considerable amount of effort has been devoted toward the development of bi...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Recently, carbon nanotubes together with other types of conductive materials have been used to enhan...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
abstract: Cardiac tissue engineering is an emerging field that has the potential to regenerate and r...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Abstract Background The niche of tissue development in vivo involves the growth matrix, biophysical ...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Hongyu Sun,* Jing Zhou,* Zhu Huang,* Linlin Qu,* Ning Lin,* Chengxiao Liang, Ruiwu Dai, Lijun Tang, ...
Scaffolds derived from decellularized cardiac tissue offer an enormous advantage for cardiac applica...
Thesis (M.A.)--Boston UniversityCardiovascular disease is the leading cause of mortality in the worl...
WOS: 000339035000009PubMed ID: 24927679In the past few years, a considerable amount of effort has be...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Myocardial infarction (cardiac tissue death) is among the most prevalent causes of death among the c...
Myocardial microenvironment plays a decisive role in guiding the function and fate of cardiomyocytes...
In the past few years, a considerable amount of effort has been devoted toward the development of bi...
The major limitation of current engineered myocardial patches for the repair of heart defects is tha...
Recently, carbon nanotubes together with other types of conductive materials have been used to enhan...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
abstract: Cardiac tissue engineering is an emerging field that has the potential to regenerate and r...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Abstract Background The niche of tissue development in vivo involves the growth matrix, biophysical ...