This study aimed to clarify the therapeutic effect and regenerative potential of the novel, amino acids-enriched acellular biocement (CAL) based on calcium phosphate on osteochondral defects in sheep. Eighteen sheep were divided into three groups, the treated group (osteochondral defects filled with a CAL biomaterial), the treated group with a biocement without amino acids (C cement), and the untreated group (spontaneous healing). Cartilages of all three groups were compared with natural cartilage (negative control). After six months, sheep were evaluated by gross appearance, histological staining, immunohistochemical staining, histological scores, X-ray, micro-CT, and MRI. Treatment of osteochondral defects by CAL resulted in efficient art...
The repair of articular cartilage typically involves the repair of cartilage-subchondral bone tissue...
Regenerative therapies offer attractive alternatives for the treatment of osteochondral defects. Adi...
Abstract: Bone marrow stromal cells (BMSC) show promise in cartilage repair, and sheep are the most ...
OBJECTIVE: The objective of this study was to describe the mechanism of healing of osteochondral def...
The objective of this article was to investigate the safety and regenerative potential of a newly de...
OBJECTIVE: To investigate the effect of decellularized cartilage-derived matrix (CDM) scaffolds, by ...
OBJECTIVE: To investigate the effect of decellularized cartilage-derived matrix (CDM) scaffolds, by ...
Osteoarthritis results from the degradation of articular cartilage and is one of the leading global ...
Aims: Minimally manipulated cells, such as autologous bone marrow concentrates (BMC), have been inve...
The treatment of osteochondral defects (OCD) remains a great challenge in orthopaedics. Tissue engin...
Objectives: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
OBJECTIVES: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
Objectives: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
PURPOSE: The objective of this study was to examine whether different mechanical modifications a...
Treatment of defects in joint cartilage aims to re-establish normal joint function. In vitro experim...
The repair of articular cartilage typically involves the repair of cartilage-subchondral bone tissue...
Regenerative therapies offer attractive alternatives for the treatment of osteochondral defects. Adi...
Abstract: Bone marrow stromal cells (BMSC) show promise in cartilage repair, and sheep are the most ...
OBJECTIVE: The objective of this study was to describe the mechanism of healing of osteochondral def...
The objective of this article was to investigate the safety and regenerative potential of a newly de...
OBJECTIVE: To investigate the effect of decellularized cartilage-derived matrix (CDM) scaffolds, by ...
OBJECTIVE: To investigate the effect of decellularized cartilage-derived matrix (CDM) scaffolds, by ...
Osteoarthritis results from the degradation of articular cartilage and is one of the leading global ...
Aims: Minimally manipulated cells, such as autologous bone marrow concentrates (BMC), have been inve...
The treatment of osteochondral defects (OCD) remains a great challenge in orthopaedics. Tissue engin...
Objectives: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
OBJECTIVES: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
Objectives: In this study, Adipose stem cells (ADSC) and bone marrow stem cells (BMSC), multipotent ...
PURPOSE: The objective of this study was to examine whether different mechanical modifications a...
Treatment of defects in joint cartilage aims to re-establish normal joint function. In vitro experim...
The repair of articular cartilage typically involves the repair of cartilage-subchondral bone tissue...
Regenerative therapies offer attractive alternatives for the treatment of osteochondral defects. Adi...
Abstract: Bone marrow stromal cells (BMSC) show promise in cartilage repair, and sheep are the most ...