In recent years, various clinical trials are exploring the efficacy of cell-based strategies to treat cartilage defects. Human adipose-derived stem/stromal cells (hASCs) have great potential for the regeneration of articular cartilage due to their ability to undergo differentiation into the chondrogenic lineage. In most cell-based therapies, the single dose requires 107-109 cells, and then it is necessary to move from manual flask-based culture to bioreactor whose monitoring and control of biological variability is necessary. Furthermore, before clinical use, the success of hASC differentiation need to be thoroughly inspected. In this study, we sought to assess with complementary methods the chondrogenic potential of hASCs expanded in f...
AIM: To compare the incorporation, growth, and chondrogenic potential of bone marrow (BM) and adipos...
Cells constitute one of the fundamental components of any cartilage tissue engineering approach. Ad...
Human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs) have been shown as the most po...
In recent years, various clinical trials are exploring the efficacy of cell-based strategies to trea...
Regenerative medicine techniques are currently being investigated to replace damaged cartilage. Crit...
Currently, fetal bovine serum (FBS) have been widely use in culture media to promote human cell prol...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
Human mesenchymal stem cells (hMSCs) can differentiate into cells of connective tissue lineages, inc...
OBJECTIVES: Understanding the changes in chondrogenic gene expression that are involved in the diffe...
Osteoarthritis is a leading cause of disability in the United States. Current methods of treatment a...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Human chondrocytes are expanded and used in autologous chondrocyte implantation techniques and are k...
Cartilage is unable to repair itself. The actual treatments for cartilage lesions primarily cover up...
Functional articular cartilage tissue repair continues to be an unsolved problem for orthopedic surg...
Damaged or diseased mature articular cartilage cannot undergo effective tissue repair and due to its...
AIM: To compare the incorporation, growth, and chondrogenic potential of bone marrow (BM) and adipos...
Cells constitute one of the fundamental components of any cartilage tissue engineering approach. Ad...
Human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs) have been shown as the most po...
In recent years, various clinical trials are exploring the efficacy of cell-based strategies to trea...
Regenerative medicine techniques are currently being investigated to replace damaged cartilage. Crit...
Currently, fetal bovine serum (FBS) have been widely use in culture media to promote human cell prol...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
Human mesenchymal stem cells (hMSCs) can differentiate into cells of connective tissue lineages, inc...
OBJECTIVES: Understanding the changes in chondrogenic gene expression that are involved in the diffe...
Osteoarthritis is a leading cause of disability in the United States. Current methods of treatment a...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Human chondrocytes are expanded and used in autologous chondrocyte implantation techniques and are k...
Cartilage is unable to repair itself. The actual treatments for cartilage lesions primarily cover up...
Functional articular cartilage tissue repair continues to be an unsolved problem for orthopedic surg...
Damaged or diseased mature articular cartilage cannot undergo effective tissue repair and due to its...
AIM: To compare the incorporation, growth, and chondrogenic potential of bone marrow (BM) and adipos...
Cells constitute one of the fundamental components of any cartilage tissue engineering approach. Ad...
Human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs) have been shown as the most po...