SummaryObjectiveTo investigate the roles of exogenous basic fibroblast growth factor (bFGF) on the repair of full-thickness articular cartilage defects in rabbits.DesignIn the present study, a double-layered collagen membrane sandwiched with bFGF-loaded-nanoparticles between a dense layer and a loose layer was implanted into full-thickness articular cartilage defects in rabbits. By grafting the membrane in a different direction, the dense layer or the loose layer facing the surface of the subchondral bone, the effects of the released bFGF on the defects and the profiles of nine growth factors (GFs) in synovial fluid (SF) were investigated using histological methods and antibody arrays, respectively.ResultsIn the group with the loose layer f...
SummaryObjectiveThe goal of this study was to test the ability of an injectable self-assembling pept...
OBJECTIVE: As our population ages, treatment for joint pain associated with articular cartilage dama...
population of mesenchymal stem cells for the repair of articular cartilage. Although bone morphogen...
SummaryObjectivesAdministration of fibroblast growth factor (FGF)-2 for 2 weeks induces a successful...
AbstractObjectivesIn full-thickness articular defects, fibroblast growth factor-2 (FGF-2) participat...
Background Defects of articular cartilage are an unsolved problem in orthopaedics. In the present st...
AbstractObjective Novel approaches to intervention in joint diseases consist of the replacement of d...
AbstractObjective: Full-thickness defects that penetrate articular cartilage are filled by fibrous, ...
AbstractObjective: Induction of growth-factor-based repair in full-thickness articular cartilage def...
AbstractObjectiveTo investigate cartilage response to fibroblast growth factor-2 (FGF-2) with increa...
SummaryObjectiveTo identify the effect of fibroblastic growth factor-2 (FGF-2) on the intrinsic dama...
Cartilage defect has become serious problem for orthopaedic surgeon and patients because of its diff...
BACKGROUND Synovial explants furnish an in-situ population of mesenchymal stem cells for the repa...
Articular cartilage repair might be stimulated by the controlled delivery of therapeutic factors. We...
SummaryObjectiveChondrocyte-seeded tissue engineering scaffolds hold the promise of enhancing certai...
SummaryObjectiveThe goal of this study was to test the ability of an injectable self-assembling pept...
OBJECTIVE: As our population ages, treatment for joint pain associated with articular cartilage dama...
population of mesenchymal stem cells for the repair of articular cartilage. Although bone morphogen...
SummaryObjectivesAdministration of fibroblast growth factor (FGF)-2 for 2 weeks induces a successful...
AbstractObjectivesIn full-thickness articular defects, fibroblast growth factor-2 (FGF-2) participat...
Background Defects of articular cartilage are an unsolved problem in orthopaedics. In the present st...
AbstractObjective Novel approaches to intervention in joint diseases consist of the replacement of d...
AbstractObjective: Full-thickness defects that penetrate articular cartilage are filled by fibrous, ...
AbstractObjective: Induction of growth-factor-based repair in full-thickness articular cartilage def...
AbstractObjectiveTo investigate cartilage response to fibroblast growth factor-2 (FGF-2) with increa...
SummaryObjectiveTo identify the effect of fibroblastic growth factor-2 (FGF-2) on the intrinsic dama...
Cartilage defect has become serious problem for orthopaedic surgeon and patients because of its diff...
BACKGROUND Synovial explants furnish an in-situ population of mesenchymal stem cells for the repa...
Articular cartilage repair might be stimulated by the controlled delivery of therapeutic factors. We...
SummaryObjectiveChondrocyte-seeded tissue engineering scaffolds hold the promise of enhancing certai...
SummaryObjectiveThe goal of this study was to test the ability of an injectable self-assembling pept...
OBJECTIVE: As our population ages, treatment for joint pain associated with articular cartilage dama...
population of mesenchymal stem cells for the repair of articular cartilage. Although bone morphogen...