ObjectiveTo testify the effect of the stem cells derived from the widely distributed fat tissue on repairing full-thickness hyaline cartilage defects.MethodsAdipose-derived stem cells (ADSCs) were derived from adipose tissue and cultured in vitro. Twenty-seven New Zealand white rabbits were divided into three groups randomly. The cultured ADSCs mixed with calcium alginate gel were used to fill the full-thickness hyaline cartilage defects created at the patellafemoral joint, and the defects repaired with gel or without treatment served as control groups. After 4, 8 and 12 weeks, the reconstructed tissue was evaluated macroscopically and microscopically. Histological analysis and qualitative scoring were also performed to detect the outcome.R...
Umbilical cord Wharton’s jelly-derived mesenchymal stem cell (WJMSC) is a new-found mesenchymal stem...
AbstractObjective: Full-thickness defects that penetrate articular cartilage are filled by fibrous, ...
Mesenchymal stem cells (MSCs) from bone marrow are multipotent cells capable of forming cartilage, b...
The purpose of this study was to evaluate the repaired tissues formed in full-thickness cartilage de...
Articular cartilage injury and defect caused by trauma and chronic osteoarthritis vascularity are ve...
ABSTRACT: Chondrogenic differentiated mesenchymal stem cells (CMSCs) have been shown to produce supe...
Background: Articular cartilage defect can lead to degradation of subchondral bone and osteoarthriti...
Chondrogenic differentiated mesenchymal stem cells (CMSCs) have been shown to produce superior chond...
Background: In recent years the use of diced cartilage grafts in reconstructive surgery particulary ...
Cartilage is unable to repair itself. The actual treatments for cartilage lesions primarily cover up...
Mesenchymal stem cells (MSCs) are known to have therapeutic potential for cartilage repair. However,...
Tissue engineering cell-based therapy using induced pluripotent stem cells and adipose-derived stem ...
OBJECTIVE Adipose-derived stem cells (ASCs), with their great availability and osteogenic potential ...
Tissue engineering represents an innovative approach for the treatment of severe bone defects in whi...
Regenerative therapies offer attractive alternatives for the treatment of osteochondral defects. Adi...
Umbilical cord Wharton’s jelly-derived mesenchymal stem cell (WJMSC) is a new-found mesenchymal stem...
AbstractObjective: Full-thickness defects that penetrate articular cartilage are filled by fibrous, ...
Mesenchymal stem cells (MSCs) from bone marrow are multipotent cells capable of forming cartilage, b...
The purpose of this study was to evaluate the repaired tissues formed in full-thickness cartilage de...
Articular cartilage injury and defect caused by trauma and chronic osteoarthritis vascularity are ve...
ABSTRACT: Chondrogenic differentiated mesenchymal stem cells (CMSCs) have been shown to produce supe...
Background: Articular cartilage defect can lead to degradation of subchondral bone and osteoarthriti...
Chondrogenic differentiated mesenchymal stem cells (CMSCs) have been shown to produce superior chond...
Background: In recent years the use of diced cartilage grafts in reconstructive surgery particulary ...
Cartilage is unable to repair itself. The actual treatments for cartilage lesions primarily cover up...
Mesenchymal stem cells (MSCs) are known to have therapeutic potential for cartilage repair. However,...
Tissue engineering cell-based therapy using induced pluripotent stem cells and adipose-derived stem ...
OBJECTIVE Adipose-derived stem cells (ASCs), with their great availability and osteogenic potential ...
Tissue engineering represents an innovative approach for the treatment of severe bone defects in whi...
Regenerative therapies offer attractive alternatives for the treatment of osteochondral defects. Adi...
Umbilical cord Wharton’s jelly-derived mesenchymal stem cell (WJMSC) is a new-found mesenchymal stem...
AbstractObjective: Full-thickness defects that penetrate articular cartilage are filled by fibrous, ...
Mesenchymal stem cells (MSCs) from bone marrow are multipotent cells capable of forming cartilage, b...