Chondrocytes are easily de-differentiated when cultured in monolayer, and tissue-engineered cartilage can be generated by seeding chondrocytes onto three-dimensional porous synthetic biodegradable polymers. In this study, we investigated the biochemical and molecular aspects of chondrocytes in a monolayer-culture system and selected the optimal subculture passages based on their de-differentiation. We also compared two commonly used synthetic biodegradable polymers, polylactide (PLA), and polylactic-co-glycolic acid (PLGA), for their suitability as scaffolds for artificial cartilage. De-differentiated chondrocytes were observed after two passages. These results suggested that the first cell passage was optimal for seeding as only a few chon...
Compressive mechanical stimuli are crucial in regenerating cartilage with tissue engineering, which ...
Articular cartilage is a vital connective tissue in the musculoskeletal system. Because articular ca...
The effect of dynamic culture conditions on neocartilage formation in type II collagen modified poly...
Synthetic biodegradable polyesters poly(L-lactide) (PLLA) and poly(D,L- lactide-coglycolide) (PLGA) ...
This study demonstrates the use of biodegradable poly(lactide-co-glycolide) (PLG) microspheres as a ...
Background: Synthetic- and naturally derived- biodegradable polymers have been widely used to cons...
Immortalized rat chondrocytes (IRCs) were employed to evaluate the cytocompatibility of different bi...
Introduction: Damage and degeneration of articular joints is a major health concern. Left untreated,...
Utilizing ATDC5 murine chondrogenic cells and human articular chondrocytes, this study sought to dev...
Porous poly(ethylene glycol) terephthalate:poly (butylene terephthalate) (PEGT:PBT) scaffolds with h...
Damage of hyaline cartilage species such as nasoseptal or joint cartilage requires proper reconstruc...
Background: Articular cartilage injuries are a major challenge in orthopedic surgery. Articular cart...
Poly(1,8-octanediol-co-citrate) (POC) is a biocompatible, biodegradable elastomer with potential app...
In order to contribute to the development of minimally invasive surgery techniques for autologous ch...
Articular cartilage is well known for its simple uniqueness of avascular and aneural structure that ...
Compressive mechanical stimuli are crucial in regenerating cartilage with tissue engineering, which ...
Articular cartilage is a vital connective tissue in the musculoskeletal system. Because articular ca...
The effect of dynamic culture conditions on neocartilage formation in type II collagen modified poly...
Synthetic biodegradable polyesters poly(L-lactide) (PLLA) and poly(D,L- lactide-coglycolide) (PLGA) ...
This study demonstrates the use of biodegradable poly(lactide-co-glycolide) (PLG) microspheres as a ...
Background: Synthetic- and naturally derived- biodegradable polymers have been widely used to cons...
Immortalized rat chondrocytes (IRCs) were employed to evaluate the cytocompatibility of different bi...
Introduction: Damage and degeneration of articular joints is a major health concern. Left untreated,...
Utilizing ATDC5 murine chondrogenic cells and human articular chondrocytes, this study sought to dev...
Porous poly(ethylene glycol) terephthalate:poly (butylene terephthalate) (PEGT:PBT) scaffolds with h...
Damage of hyaline cartilage species such as nasoseptal or joint cartilage requires proper reconstruc...
Background: Articular cartilage injuries are a major challenge in orthopedic surgery. Articular cart...
Poly(1,8-octanediol-co-citrate) (POC) is a biocompatible, biodegradable elastomer with potential app...
In order to contribute to the development of minimally invasive surgery techniques for autologous ch...
Articular cartilage is well known for its simple uniqueness of avascular and aneural structure that ...
Compressive mechanical stimuli are crucial in regenerating cartilage with tissue engineering, which ...
Articular cartilage is a vital connective tissue in the musculoskeletal system. Because articular ca...
The effect of dynamic culture conditions on neocartilage formation in type II collagen modified poly...