The osteochondral defect (OD) comprises the articular cartilage and its subchondral bone. The treatment of these lesions remains as one of the most problematic clinical issues, since these defects include different tissues, requiring distinct healing approaches. Among the growing applications of regenerative medicine, clinical articular cartilage repair has been used for two decades, and it is an effective example of translational medicine; one of the most used cell-based repair strategies includes implantation of autologous cells in degradable scaffolds such as alginate, agarose, collagen, chitosan, chondroitin sulfate, cellulose, silk fibroin, hyaluronic acid, and gelatin, among others. Concerning the repair of osteochondral defects, tiss...
Many health problems remaining to be untreatable throughout the human history can be overcome by uti...
SummaryObjectiveThe natural repair of osteochondral defects can be enhanced with biocompatible, biod...
In the last few years, osteochondral tissue engineering has shown an increasing development in advan...
The management of cartilage defects is one of the most challenging problems for public and medical c...
none6noDate: 12 September 2013The modern regenerative procedures demonstrated to offer the replaceme...
Series: Studies in mechanobiology, tissue engineering and biomaterials, ISSN 1868-2006, vol. 21The r...
In spite of the considerable achievements in the field of regenerative medicine in the past several ...
One of the main topics of regenerative medicine and tissue engineering is to address the problem of ...
Osteochondral defects can be challenging to treat, first, because the damaged articular cartilage ha...
Due to the limited regenerative capacity of cartilage, untreated joint defects can advance to more e...
The repair of articular cartilage typically involves the repair of cartilage-subchondral bone tissue...
Articular cartilage tissue possesses poor ability to regenerate; as the lesion progresses, it extend...
none8The use of biomaterials for cartilage repair has strongly increased in the last decade, due to ...
Osteochondral defects are caused by injury to both the articular cartilage and subchondral bone with...
Owing to own nature of articular cartilage, it almost has no self-healing ability once damaged. Desp...
Many health problems remaining to be untreatable throughout the human history can be overcome by uti...
SummaryObjectiveThe natural repair of osteochondral defects can be enhanced with biocompatible, biod...
In the last few years, osteochondral tissue engineering has shown an increasing development in advan...
The management of cartilage defects is one of the most challenging problems for public and medical c...
none6noDate: 12 September 2013The modern regenerative procedures demonstrated to offer the replaceme...
Series: Studies in mechanobiology, tissue engineering and biomaterials, ISSN 1868-2006, vol. 21The r...
In spite of the considerable achievements in the field of regenerative medicine in the past several ...
One of the main topics of regenerative medicine and tissue engineering is to address the problem of ...
Osteochondral defects can be challenging to treat, first, because the damaged articular cartilage ha...
Due to the limited regenerative capacity of cartilage, untreated joint defects can advance to more e...
The repair of articular cartilage typically involves the repair of cartilage-subchondral bone tissue...
Articular cartilage tissue possesses poor ability to regenerate; as the lesion progresses, it extend...
none8The use of biomaterials for cartilage repair has strongly increased in the last decade, due to ...
Osteochondral defects are caused by injury to both the articular cartilage and subchondral bone with...
Owing to own nature of articular cartilage, it almost has no self-healing ability once damaged. Desp...
Many health problems remaining to be untreatable throughout the human history can be overcome by uti...
SummaryObjectiveThe natural repair of osteochondral defects can be enhanced with biocompatible, biod...
In the last few years, osteochondral tissue engineering has shown an increasing development in advan...