Human induced pluripotent stem cells (hiPSCs) have demonstrated great potential for hyaline cartilage regeneration. However, current approaches for chondrogenic differentiation of hiPSCs are complicated and inefficient primarily due to intermediate embryoid body formation, which is required to generate endodermal, ectodermal, and mesodermal cell lineages. We report a new, straightforward and highly efficient approach for chondrogenic differentiation of hiPSCs, which avoids embryoid body formation. We differentiated hiPSCs directly into mesenchymal stem /stromal cells (MSC) and chondrocytes. hiPSC-MSC-derived chondrocytes showed significantly increased Col2A1, GAG, and SOX9 gene expression compared to hiPSC-MSCs. Following transplantation of...
In an effort to develop an effective source of clinically relevant cells and tissues for cartilage r...
Background Cell sheet fabrication for articular cartilage regenerative medicine necessitates a large...
[Abstract] The establishment of cartilage regenerative medicine is an important clinical issue, but ...
SummaryDefects in articular cartilage ultimately result in loss of joint function. Repairing cartila...
SummaryJoint injury and osteoarthritis affect millions of people worldwide, but attempts to generate...
Background: A lack of cell or tissue sources hampers regenerative medicine for articular cartilage d...
Abstract Cartilage has little intrinsic capacity for repair, so transplantation of exogenous cartil...
Abstract Background A lack of cell or tissue sources hampers regenerative medicine for articular car...
AbstractCartilage defects have limited capacity for repair and are often replaced by fibrocartilage ...
SummaryDefects in articular cartilage ultimately result in loss of joint function. Repairing cartila...
Cartilage is the first skeletal tissue to be formed during development, and is necessary for bone fo...
Defects in articular cartilage ultimately result in loss of joint function. Repairing cartilage defe...
Defects in articular cartilage ultimately result in loss of joint function. Repairing cartilage defe...
Scientists have tried to reprogram various origins of primary cells into human induced pluripotent s...
Cartilage has limited capability for regeneration; therefore cartilage injuries tend to lead to grad...
In an effort to develop an effective source of clinically relevant cells and tissues for cartilage r...
Background Cell sheet fabrication for articular cartilage regenerative medicine necessitates a large...
[Abstract] The establishment of cartilage regenerative medicine is an important clinical issue, but ...
SummaryDefects in articular cartilage ultimately result in loss of joint function. Repairing cartila...
SummaryJoint injury and osteoarthritis affect millions of people worldwide, but attempts to generate...
Background: A lack of cell or tissue sources hampers regenerative medicine for articular cartilage d...
Abstract Cartilage has little intrinsic capacity for repair, so transplantation of exogenous cartil...
Abstract Background A lack of cell or tissue sources hampers regenerative medicine for articular car...
AbstractCartilage defects have limited capacity for repair and are often replaced by fibrocartilage ...
SummaryDefects in articular cartilage ultimately result in loss of joint function. Repairing cartila...
Cartilage is the first skeletal tissue to be formed during development, and is necessary for bone fo...
Defects in articular cartilage ultimately result in loss of joint function. Repairing cartilage defe...
Defects in articular cartilage ultimately result in loss of joint function. Repairing cartilage defe...
Scientists have tried to reprogram various origins of primary cells into human induced pluripotent s...
Cartilage has limited capability for regeneration; therefore cartilage injuries tend to lead to grad...
In an effort to develop an effective source of clinically relevant cells and tissues for cartilage r...
Background Cell sheet fabrication for articular cartilage regenerative medicine necessitates a large...
[Abstract] The establishment of cartilage regenerative medicine is an important clinical issue, but ...