The myocardium behaves like a sophisticated orchestra that expresses its true potential only if each member performs the correct task harmonically. Recapitulating its complexity within engineered 3D functional constructs with tailored biological and mechanical properties, is one of the current scientific priorities in the field of regenerative medicine and tissue engineering. In this study, driven by the necessity of fabricating advanced model of cardiac tissue, we present an innovative approach consisting of heterogeneous, multi-cellular constructs composed of Human Umbilical Vein Endothelial Cells (HUVECs) and induced pluripotent cell-derived cardiomyocytes (iPSC-CMs). Cells were encapsulated within hydrogel strands containing alginate an...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
According to the American Heart Association, one in three adults currently suffer from cardiovascula...
This work focuses on engineering 3 dimensional (3D) fibrous hybrid scaffolds with human induced plur...
The myocardium behaves like a sophisticated orchestra that expresses its true potential only if each...
The role of a biomedical engineer is to solve unmet health-related needs that face society. For the ...
Purpose of reviewBioengineering of functional cardiac tissue composed of primary cardiomyocytes has ...
Engineering cardiac tissues and organ models remains a great challenge due to the hierarchical struc...
The production of a functional cardiac tissue to be transplanted in the injured area of the infarcte...
More relevant human tissue models are needed to produce reliable results when studying disease mecha...
Myocardial infarction (MI) is the leading cause of death worldwide causing irreversible damage to th...
ObjectiveCardiac tissue engineering has been proposed as a treatment to repair impaired hearts. Bioe...
Heart disease is the leading cause of death worldwide. Due to the limited regenerative ability of na...
The production of a functional cardiac tissue to be transplanted in the injured area of the infarcte...
The fabrication of mature engineered cardiac tissue is one of the major challenges in cardiac tissue...
Abstract Stem cell-based cardiac regenerative therapy is expected to be a promising strategy for the...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
According to the American Heart Association, one in three adults currently suffer from cardiovascula...
This work focuses on engineering 3 dimensional (3D) fibrous hybrid scaffolds with human induced plur...
The myocardium behaves like a sophisticated orchestra that expresses its true potential only if each...
The role of a biomedical engineer is to solve unmet health-related needs that face society. For the ...
Purpose of reviewBioengineering of functional cardiac tissue composed of primary cardiomyocytes has ...
Engineering cardiac tissues and organ models remains a great challenge due to the hierarchical struc...
The production of a functional cardiac tissue to be transplanted in the injured area of the infarcte...
More relevant human tissue models are needed to produce reliable results when studying disease mecha...
Myocardial infarction (MI) is the leading cause of death worldwide causing irreversible damage to th...
ObjectiveCardiac tissue engineering has been proposed as a treatment to repair impaired hearts. Bioe...
Heart disease is the leading cause of death worldwide. Due to the limited regenerative ability of na...
The production of a functional cardiac tissue to be transplanted in the injured area of the infarcte...
The fabrication of mature engineered cardiac tissue is one of the major challenges in cardiac tissue...
Abstract Stem cell-based cardiac regenerative therapy is expected to be a promising strategy for the...
Here, we have developed a 3D bioprinted microchanneled gelatin hydrogel that promotes human mesench...
According to the American Heart Association, one in three adults currently suffer from cardiovascula...
This work focuses on engineering 3 dimensional (3D) fibrous hybrid scaffolds with human induced plur...