The aim of this study is to fabricate and test a 3D-printed PCL scaffold incorporating IGF-1-releasing PLGA nanoparticles for cartilage tissue engineering. IGF-1 loaded PLGA nanoparticles were produced by the double-emulsion method, and were incorporated onto 3D printed PCL scaffolds via PDA. Particle size, loading effciency (LE) and encapsulation effciency (EE) of the nanoparticles were examined. SEM, pore size, porosity, compression testing, contact angle, IGF-1 release kinetics of the composite scaffolds were also determined. For cell culture studies, CCK-8, Live/dead, MTT, GAG content and expression level of chondrocytes specific proteins and genes and HIF-1α were also tested. There was no difference of the nanoparticle size. And the LE...
Since articular cartilage has a limited self regeneration capability, alternative methods are needed...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
AbstractThis paper investigates the use of PCL and PCL/PLA scaffolds produced using a novel additive...
Introduction: Poly lactic co- glycolic acid (PLGA) and poly caprolacton (PCL) are highly applicable ...
PubMedID: 22081628The effects of double release of insulin-like growth factor I (IGF-I) and growth f...
Nano-fibrous scaffolds which could potentially mimic the architecture of extracellular matrix (ECM) ...
Degeneration of articular cartilage due to damages, diseases, or age-related factors can significant...
The aim of this work is to develop polymeric particulate systems loaded with transforming growth fac...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
In recent years, cell-based therapies using adult stem cells have attracted considerable interest in...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Scaffolds play an important role in tissue engineering and their structure and biocompatibility have...
The aim of this study was to develop bFGF and TGF-β1 loaded polymeric nanoparticles (PNPs) and denta...
Objective. To examine the biocompatibility of a novel nanohydroxyapatite/poly[lactic-co-glycolic aci...
Cartilage lesions can progress into secondary osteoarthritis and cause severe clinical problems in n...
Since articular cartilage has a limited self regeneration capability, alternative methods are needed...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
AbstractThis paper investigates the use of PCL and PCL/PLA scaffolds produced using a novel additive...
Introduction: Poly lactic co- glycolic acid (PLGA) and poly caprolacton (PCL) are highly applicable ...
PubMedID: 22081628The effects of double release of insulin-like growth factor I (IGF-I) and growth f...
Nano-fibrous scaffolds which could potentially mimic the architecture of extracellular matrix (ECM) ...
Degeneration of articular cartilage due to damages, diseases, or age-related factors can significant...
The aim of this work is to develop polymeric particulate systems loaded with transforming growth fac...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
In recent years, cell-based therapies using adult stem cells have attracted considerable interest in...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
Scaffolds play an important role in tissue engineering and their structure and biocompatibility have...
The aim of this study was to develop bFGF and TGF-β1 loaded polymeric nanoparticles (PNPs) and denta...
Objective. To examine the biocompatibility of a novel nanohydroxyapatite/poly[lactic-co-glycolic aci...
Cartilage lesions can progress into secondary osteoarthritis and cause severe clinical problems in n...
Since articular cartilage has a limited self regeneration capability, alternative methods are needed...
A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, ...
AbstractThis paper investigates the use of PCL and PCL/PLA scaffolds produced using a novel additive...