Scaffolds populated with human cardiac progenitor cells (CPCs) represent a therapeutic opportunity for heart regeneration after myocardial infarction. In this work, square-grid scaffolds are prepared by melt-extrusion additive manufacturing from a polyurethane (PU), further subjected to plasma treatment for acrylic acid surface grafting/polymerization and finally grafted with laminin-1 (PU-LN1) or gelatin (PU-G) by carbodiimide chemistry. LN1 is a cardiac niche extracellular matrix component and plays a key role in heart formation during embryogenesis, while G is a low-cost cell-adhesion protein, here used as a control functionalizing molecule. X-ray photoelectron spectroscopy analysis shows nitrogen percentage increase after functionalizat...
International audienceFor tissue-engineering studies of the infarcted heart it is essential to ident...
Three-dimensional (3D) tissue models offer new tools in the study of diseases. In the case of the en...
Cardiac tissue engineering (CTE) can be used to repair and replace the damaged myocardium due to cor...
Scaffolds populated with human cardiac progenitor cells (CPCs) represent a therapeutic opportunity f...
Scaffolds for myocardial Tissue Engineering (TE) should display biomimetic properties respect to car...
INTRODUCTION: Human cardiac fibroblasts (CFs) have been found to deposit in vitro a 2D “biomatrix” (...
A remarkable challenge in myocardial tissue engineering is the development of biomimetic constructs ...
Bi-layered scaffolds with a 0°/90° lay-down pattern were prepared by melt-extrusion additive manufac...
Bi-layered scaffolds with a 0°/90° lay-down pattern were prepared by melt-extrusion additive manufac...
Humans are continuously exposed to a huge amount and a variety of chemicals. Animal tests are the go...
International audienceFor tissue-engineering studies of the infarcted heart it is essential to ident...
Three-dimensional (3D) tissue models offer new tools in the study of diseases. In the case of the en...
Cardiac tissue engineering (CTE) can be used to repair and replace the damaged myocardium due to cor...
Scaffolds populated with human cardiac progenitor cells (CPCs) represent a therapeutic opportunity f...
Scaffolds for myocardial Tissue Engineering (TE) should display biomimetic properties respect to car...
INTRODUCTION: Human cardiac fibroblasts (CFs) have been found to deposit in vitro a 2D “biomatrix” (...
A remarkable challenge in myocardial tissue engineering is the development of biomimetic constructs ...
Bi-layered scaffolds with a 0°/90° lay-down pattern were prepared by melt-extrusion additive manufac...
Bi-layered scaffolds with a 0°/90° lay-down pattern were prepared by melt-extrusion additive manufac...
Humans are continuously exposed to a huge amount and a variety of chemicals. Animal tests are the go...
International audienceFor tissue-engineering studies of the infarcted heart it is essential to ident...
Three-dimensional (3D) tissue models offer new tools in the study of diseases. In the case of the en...
Cardiac tissue engineering (CTE) can be used to repair and replace the damaged myocardium due to cor...