Cartilage tissue engineering remains problematic because no systems are able to induce signals that contribute to native cartilage structure formation. Therefore, we tested the potentiality of gelatin-polyethylene glycol scaffolds containing three different concentrations of chitosan (CH; 0%, 8%, and 16%) on chondrogenic differentiation of human platelet lysate-expanded human bone marrow mesenchymal stromal cells (hBM-MSCs). Typical chondrogenic (SOX9, collagen type 2, and aggrecan), hypertrophic (collagen type 10), and fibrotic (collagen type 1) markers were evaluated at gene and protein level at Days 1, 28, and 48. We demonstrated that 16% CH scaffold had the highest percentage of relaxation with the fastest relaxation rate. In particular...
Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) sc...
[[abstract]]©2007 Elsevier - Conjugating a single glycosaminoglycan (GAG) species such as chondroiti...
Scaffolds derived from natural polysaccharides are very promising in tissue engineering applications...
Cartilage tissue engineering remains problematic because no systems are able to induce signals that ...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
ii The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive fo...
Due to the attractive properties of poly(L-lactic acid) (PLLA) and chitosan (CHT) for tissue enginee...
Damage to cartilage such as osteochondral defects affect a large number of people worldwide, severel...
Accurate repair of osteochondral defects is a great challenge due to the complex structure of osteoc...
ABSTRACT: The current progression in tissue engineering and local gene delivery systems has enhanced...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
PhDCartilage is a type of connective tissue which has very little potential for spontaneous natural ...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
Cartilage is a type of connective tissue which has very little potential for spontaneous natural rep...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) sc...
[[abstract]]©2007 Elsevier - Conjugating a single glycosaminoglycan (GAG) species such as chondroiti...
Scaffolds derived from natural polysaccharides are very promising in tissue engineering applications...
Cartilage tissue engineering remains problematic because no systems are able to induce signals that ...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
ii The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive fo...
Due to the attractive properties of poly(L-lactic acid) (PLLA) and chitosan (CHT) for tissue enginee...
Damage to cartilage such as osteochondral defects affect a large number of people worldwide, severel...
Accurate repair of osteochondral defects is a great challenge due to the complex structure of osteoc...
ABSTRACT: The current progression in tissue engineering and local gene delivery systems has enhanced...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
PhDCartilage is a type of connective tissue which has very little potential for spontaneous natural ...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
Cartilage is a type of connective tissue which has very little potential for spontaneous natural rep...
Infrapatellar fat pad adipose stem cells (IPFP-ASCs) have been shown to harbor chondrogenic potentia...
Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) sc...
[[abstract]]©2007 Elsevier - Conjugating a single glycosaminoglycan (GAG) species such as chondroiti...
Scaffolds derived from natural polysaccharides are very promising in tissue engineering applications...