The dense uniaxially aligned cardiac cytoarchitecture of the myocardium along with electrical and mechanical coupling between the cardiac cells are key factors in the synchronous contractility of the heart. Following myocardial infarction, the organized architecture of the myocardium is disrupted and non-functional scar tissues are produced. Engineered cardiac tissues, developed in hydrogel-based biomaterials, featuring biomimetic topographical cues have shown significant promise for regeneration and repair of injured myocardium. However, currently engineered tissues still do not exhibit an electrically conductive matrix integrated with highly oriented cellular constructs to promote tissue-level functionalities. To address this limitation, ...
Engineered cardiac patches (ECPs) hold great promise to repair ischemia-induced damages to the myoca...
An engineered heart tissue (EHT) derived from human induced pluripotent stem cells (hiPSCs) allows t...
Electrically conductive biomaterials and nanomaterials have demonstrated great potential in the deve...
abstract: Cardiac tissue engineering is an emerging field that has the potential to regenerate and r...
Cardiovascular disease is the leading cause of death in the US, which can result in blockage of a co...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
Heart failure is a major international health issue. Myocardial mass loss and lack of contractility ...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
Myocardial microenvironment plays a decisive role in guiding the function and fate of cardiomyocytes...
Thesis (M.A.)--Boston UniversityCardiovascular disease is the leading cause of mortality in the worl...
Myocardial infarction (MI) leads to a multi-phase reparative process at the site of damaged heart th...
Direct stem cell encapsulation and cardiac differentiation within supporting biomaterial scaffolds a...
Utilization of electrically conductive nanomaterials for developing nanocomposite scaffolds has been...
Cardiac tissue engineering is a strategy to replace damaged contractile tissue and model cardiac dis...
Engineered cardiac patches (ECPs) hold great promise to repair ischemia-induced damages to the myoca...
An engineered heart tissue (EHT) derived from human induced pluripotent stem cells (hiPSCs) allows t...
Electrically conductive biomaterials and nanomaterials have demonstrated great potential in the deve...
abstract: Cardiac tissue engineering is an emerging field that has the potential to regenerate and r...
Cardiovascular disease is the leading cause of death in the US, which can result in blockage of a co...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
Heart failure is a major international health issue. Myocardial mass loss and lack of contractility ...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
Myocardial microenvironment plays a decisive role in guiding the function and fate of cardiomyocytes...
Thesis (M.A.)--Boston UniversityCardiovascular disease is the leading cause of mortality in the worl...
Myocardial infarction (MI) leads to a multi-phase reparative process at the site of damaged heart th...
Direct stem cell encapsulation and cardiac differentiation within supporting biomaterial scaffolds a...
Utilization of electrically conductive nanomaterials for developing nanocomposite scaffolds has been...
Cardiac tissue engineering is a strategy to replace damaged contractile tissue and model cardiac dis...
Engineered cardiac patches (ECPs) hold great promise to repair ischemia-induced damages to the myoca...
An engineered heart tissue (EHT) derived from human induced pluripotent stem cells (hiPSCs) allows t...
Electrically conductive biomaterials and nanomaterials have demonstrated great potential in the deve...