In this pilot study, an autologous synthetic scaffold-free construct with hyaline quality, termed living hyaline cartilaginous graft (LhCG), was applied for treating cartilage lesions. Implantation of autologous LhCG was done at load-bearing regions of the knees in skeletally mature mini-pigs for 6 months. Over the course of this study, significant radiographical improvement in LhCG treated sites was observed via magnetic resonance imaging. Furthermore, macroscopic repair was effected by LhCG at endpoint. Microscopic inspection revealed that LhCG engraftment restored cartilage thickness, promoted integration with surrounding native cartilage, produced abundant cartilage-specific matrix molecules, and re-established an intact superficial tan...
Articular cartilage defects heal poorly and lead to catastrophic degenerative arthritis. Clinical ex...
Focal full-thickness articular cartilage defects are challenging to repair. The purpose of this stud...
The aim of this study was to evaluate a cell-seeded nanofibrous scaffold for cartilage repair in viv...
In this pilot study, an autologous synthetic scaffold-free construct with hyaline quality, termed li...
A novel living hyaline cartilage graft (LhCG) with controllable dimensions and free of non-cartilagi...
The articular cartilage is a load-bearing surface of synovial joints. However, it is highly suscepti...
Background: Chondrocyte-based cell therapy to repair cartilage has been used for >25 years despit...
Reinforced hydrogels represent a promising strategy for tissue engineering of articular cartilage. T...
Background: Articular cartilage injuries have poor repair capacity, leading to progressive joint dam...
Articular hyaline cartilage in the knee joint is crucial for smooth movement and support of the bone...
In this study, full-scale osteochondral defects are hypothesized, which penetrate the articular cart...
Background: Despite intensive research, regeneration of articular cartilage largely remains an unres...
Abstract Background Spontaneous recovery from articular cartilage injury is difficult, and the ongoi...
Objective: autologous chondrocyte implantation usually requires in vitro cell expansion before impla...
Articular cartilage defects heal poorly and lead to catastrophic degenerative arthritis. Clinical ex...
Articular cartilage defects heal poorly and lead to catastrophic degenerative arthritis. Clinical ex...
Focal full-thickness articular cartilage defects are challenging to repair. The purpose of this stud...
The aim of this study was to evaluate a cell-seeded nanofibrous scaffold for cartilage repair in viv...
In this pilot study, an autologous synthetic scaffold-free construct with hyaline quality, termed li...
A novel living hyaline cartilage graft (LhCG) with controllable dimensions and free of non-cartilagi...
The articular cartilage is a load-bearing surface of synovial joints. However, it is highly suscepti...
Background: Chondrocyte-based cell therapy to repair cartilage has been used for >25 years despit...
Reinforced hydrogels represent a promising strategy for tissue engineering of articular cartilage. T...
Background: Articular cartilage injuries have poor repair capacity, leading to progressive joint dam...
Articular hyaline cartilage in the knee joint is crucial for smooth movement and support of the bone...
In this study, full-scale osteochondral defects are hypothesized, which penetrate the articular cart...
Background: Despite intensive research, regeneration of articular cartilage largely remains an unres...
Abstract Background Spontaneous recovery from articular cartilage injury is difficult, and the ongoi...
Objective: autologous chondrocyte implantation usually requires in vitro cell expansion before impla...
Articular cartilage defects heal poorly and lead to catastrophic degenerative arthritis. Clinical ex...
Articular cartilage defects heal poorly and lead to catastrophic degenerative arthritis. Clinical ex...
Focal full-thickness articular cartilage defects are challenging to repair. The purpose of this stud...
The aim of this study was to evaluate a cell-seeded nanofibrous scaffold for cartilage repair in viv...