Joint repair remains a major challenge in orthopaedics. Recent progress in biomaterial design has led to the fabrication of a plethora of promising devices. Pre-clinical testing of any joint repair strategy typically requires the use of large animal models (e.g., sheep, goat, pig or horse). Despite the key role of such models in clinical translation, there is still a lack of consensus regarding optimal experimental design, making it difficult to draw conclusions on their efficacy. In this context, the authors performed a systematic literature review and a risk of bias assessment on large animal models published between 2010 and 2020, to identify key experimental parameters that significantly affect the biomaterial therapeutic outcome and cl...
Objective: autologous chondrocyte implantation usually requires in vitro cell expansion before impla...
Articular cartilage defects are common after joint injuries. When left untreated, the biomechanical ...
Reinforced hydrogels represent a promising strategy for tissue engineering of articular cartilage. T...
Much research is currently ongoing into new therapies for cartilage defect repair with new biomateri...
Much research is currently ongoing into new therapies for cartilage defect repair with new biomateri...
The treatment of osteochondral defects (OCD) remains a great challenge in orthopaedics. Tissue engin...
OBJECTIVE: The objective of this study was to describe the mechanism of healing of osteochondral def...
Cartilage lesions still represent an unsolved problem: despite the efforts of the basic and translat...
Osteoarthritis results from the degradation of articular cartilage and is one of the leading global ...
© The Author(s) 2017. Objective: The objective of this study was to describe the mechanism of healin...
Animal assays represent an important stage between in vitro studies and human clinical applications....
This study was designed to determine if the maturation stage of engineered cartilage implanted in a ...
Objectives: Bioreactor-based production systems have the potential to overcome limitations associate...
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 ...
Objective: autologous chondrocyte implantation usually requires in vitro cell expansion before impla...
Articular cartilage defects are common after joint injuries. When left untreated, the biomechanical ...
Reinforced hydrogels represent a promising strategy for tissue engineering of articular cartilage. T...
Much research is currently ongoing into new therapies for cartilage defect repair with new biomateri...
Much research is currently ongoing into new therapies for cartilage defect repair with new biomateri...
The treatment of osteochondral defects (OCD) remains a great challenge in orthopaedics. Tissue engin...
OBJECTIVE: The objective of this study was to describe the mechanism of healing of osteochondral def...
Cartilage lesions still represent an unsolved problem: despite the efforts of the basic and translat...
Osteoarthritis results from the degradation of articular cartilage and is one of the leading global ...
© The Author(s) 2017. Objective: The objective of this study was to describe the mechanism of healin...
Animal assays represent an important stage between in vitro studies and human clinical applications....
This study was designed to determine if the maturation stage of engineered cartilage implanted in a ...
Objectives: Bioreactor-based production systems have the potential to overcome limitations associate...
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 ...
Objective: autologous chondrocyte implantation usually requires in vitro cell expansion before impla...
Articular cartilage defects are common after joint injuries. When left untreated, the biomechanical ...
Reinforced hydrogels represent a promising strategy for tissue engineering of articular cartilage. T...