Different forms of biomaterials, including microspheres, sponges, hydrogels, and nanofibers, have been broadly used in cartilage regeneration; however, effects of internal structures of the biomaterials on cells and chondrogenesis remain largely unexplored. We hypothesized that different internal structures of sponges and hydrogels led to phenotypic disparity of the cells and may lead to disparate chondrogenesis. In the current study, the chondrocytes in sponges and hydrogels of chitosan were compared with regard to cell distribution, morphology, gene expression, and production of extracellular matrix. The chondrocytes clustered or attached to the materials with spindle morphologies in the sponges, while they distributed evenly with spheric...
Hydrogels are promising materials for cartilage repair, but the properties required for optimal func...
PhDCartilage is a type of connective tissue which has very little potential for spontaneous natural ...
Background: Due to their intrinsic properties, stem cells are promising tools for new developments i...
Current regenerative strategies used for cartilage repair rely on biomaterial functionality as a sca...
We aimed to investigate freshly isolated compared with culture-expanded chondrocytes with respect to...
Poly(1,8-octanediol-co-citrate) (POC) is a biocompatible, biodegradable elastomer with potential app...
The injectable and hydrophilic nature of hydrogels makes them suitable candidates for cartilage tiss...
Hydrogels provide a 3-dimensional network for embedded cells and offer promise for cartilage tissue ...
Recent investigations into micro-architecture of scaffolds has revealed that mean pore sizes are cel...
The positive interaction of materials with tissues is an important step in regenerative medicine str...
Hydrogels are promising materials for cartilage repair, but the properties required for optimal func...
Articular cartilage (AC) lacks the ability to self-repair and cell-based approaches, primarily based...
[[abstract]]Autologous cell transplantation is a promising approach for cartilage repair, but the ex...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
Background: Due to their intrinsic properties, stem cells are promising tools for new developments i...
Hydrogels are promising materials for cartilage repair, but the properties required for optimal func...
PhDCartilage is a type of connective tissue which has very little potential for spontaneous natural ...
Background: Due to their intrinsic properties, stem cells are promising tools for new developments i...
Current regenerative strategies used for cartilage repair rely on biomaterial functionality as a sca...
We aimed to investigate freshly isolated compared with culture-expanded chondrocytes with respect to...
Poly(1,8-octanediol-co-citrate) (POC) is a biocompatible, biodegradable elastomer with potential app...
The injectable and hydrophilic nature of hydrogels makes them suitable candidates for cartilage tiss...
Hydrogels provide a 3-dimensional network for embedded cells and offer promise for cartilage tissue ...
Recent investigations into micro-architecture of scaffolds has revealed that mean pore sizes are cel...
The positive interaction of materials with tissues is an important step in regenerative medicine str...
Hydrogels are promising materials for cartilage repair, but the properties required for optimal func...
Articular cartilage (AC) lacks the ability to self-repair and cell-based approaches, primarily based...
[[abstract]]Autologous cell transplantation is a promising approach for cartilage repair, but the ex...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
Background: Due to their intrinsic properties, stem cells are promising tools for new developments i...
Hydrogels are promising materials for cartilage repair, but the properties required for optimal func...
PhDCartilage is a type of connective tissue which has very little potential for spontaneous natural ...
Background: Due to their intrinsic properties, stem cells are promising tools for new developments i...