A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, which was composed of a poly(ε-caprolactone) (PCL) backbone network and a poly(lactide-co-glycolide)-block-poly(ethylene glycol)-block-poly(lactide-co-glycolide) (PLGA–PEG–PLGA) thermogel surface. The composite scaffold not only possessed adequate mechanical strength similar to native osteochondral tissue as a benefit of the PCL backbone, but also maintained cell-friendly microenvironment of the hydrogel. The PCL network with homogeneously-controlled pore size and total pore interconnectivity was fabricated by fused deposition modeling (FDM), and was impregnated into the PLGA–PEG–PLGA solution at low temperature (e.g., 4 °C). The PCL/Gel comp...
Hydrogels have shown great potential for cartilage tissue engineering applications due to their capa...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
Using synthetic polymers, scaffolds can be created for tissue engineering. The goal of this project ...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
Hydrogels can provide a suitable environment for tissue formation by embedded cells, which makes the...
The aim of this study was to report the fabrication of porous scaffolds with pre-designed internal p...
Articular cartilage possesses complex mechanical properties that provide healthy joints the ability ...
Abstract: Articular cartilage has limited potential for re-pair. Current clinical treatments for art...
In this study, a hybrid system consisting of 3D printed polycaprolactone (PCL) filled with hydrogel ...
Recently, cartilage tissue engineering (CTE) attracts increasing attention in cartilage defect repai...
Thermosensitive hydrogels are attractive alternative scaffolding materials for minimally invasive su...
Background: Biodegradable thermosensitive hydrogel scaffolds based on novel three-block PCL-PEG-PCL ...
Tissue engineering (TE) aims to regenerate damaged tissues by the combined use of biomaterials and c...
Articular cartilage is an anisotropic tissue composed of compositional and functional layers. One cl...
Hydrogels have shown great potential for cartilage tissue engineering applications due to their capa...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
Using synthetic polymers, scaffolds can be created for tissue engineering. The goal of this project ...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
Hydrogels can provide a suitable environment for tissue formation by embedded cells, which makes the...
The aim of this study was to report the fabrication of porous scaffolds with pre-designed internal p...
Articular cartilage possesses complex mechanical properties that provide healthy joints the ability ...
Abstract: Articular cartilage has limited potential for re-pair. Current clinical treatments for art...
In this study, a hybrid system consisting of 3D printed polycaprolactone (PCL) filled with hydrogel ...
Recently, cartilage tissue engineering (CTE) attracts increasing attention in cartilage defect repai...
Thermosensitive hydrogels are attractive alternative scaffolding materials for minimally invasive su...
Background: Biodegradable thermosensitive hydrogel scaffolds based on novel three-block PCL-PEG-PCL ...
Tissue engineering (TE) aims to regenerate damaged tissues by the combined use of biomaterials and c...
Articular cartilage is an anisotropic tissue composed of compositional and functional layers. One cl...
Hydrogels have shown great potential for cartilage tissue engineering applications due to their capa...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
Using synthetic polymers, scaffolds can be created for tissue engineering. The goal of this project ...