Human bone marrow mesenchymal stem cells (HBMSCs) has been the gold standard for bone regeneration. However, the low proliferation rate and long doubling time limited its clinical applications. This study aims to compare the bone tissue engineering efficacy of human dental pulp stem cells (HDPSCs) with HBMSCs in 2D, and 3D anorganic bone mineral (ABM) coated with a biomimetic collagen peptide (ABM-P-15) for improving bone-forming speed and efficacy in vitro and in vivo. The multipotential of both HDPSCs and HBMSCs have been compared in vitro. The bone formation of HDPSCs on ABM-P-15 was tested using in vivo model. The osteogenic potential of the cells was confirmed by alkaline phosphatase (ALP) and immunohistological staining for osteogenic...
Bone tissue engineering approaches are encouraging for the improvement of conventional bone grafting...
ABSTRACT Background and Objective: Stem cells offer an interesting tool for tissue engineering, but...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Introduction: The increasing clinical demand for bone regeneration and repair in the context of our ...
Introduction: The present study was aimed to evaluate and compare adhesion, proliferation, and diffe...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells successfully used in human bone tis...
Bone tissue engineering is an area of regenerative medicine that attempts to repair bone defects. Se...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells that have been successfully used in...
New methods have been developed to achieve tissue regeneration of complex bone defects and restore t...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells that have been successfully used in...
[Excerpt] Tissue engineering (TE) has emerged in the last decade of the 20th century as an alternati...
Massive amounts of cell are needed for creating tissue engineered 3D constructs, which often require...
Identification of a suitable cell source combined with an appropriate 3D scaffold is an essential pr...
Treatment of extensive bone defects requires autologous bone grafting or implantation of bone substi...
The current clinical choice for bone regeneration is autologous bone grafts from the iliac crest. Th...
Bone tissue engineering approaches are encouraging for the improvement of conventional bone grafting...
ABSTRACT Background and Objective: Stem cells offer an interesting tool for tissue engineering, but...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Introduction: The increasing clinical demand for bone regeneration and repair in the context of our ...
Introduction: The present study was aimed to evaluate and compare adhesion, proliferation, and diffe...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells successfully used in human bone tis...
Bone tissue engineering is an area of regenerative medicine that attempts to repair bone defects. Se...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells that have been successfully used in...
New methods have been developed to achieve tissue regeneration of complex bone defects and restore t...
Human dental pulp stem cells (hDPSCs) are mesenchymal stem cells that have been successfully used in...
[Excerpt] Tissue engineering (TE) has emerged in the last decade of the 20th century as an alternati...
Massive amounts of cell are needed for creating tissue engineered 3D constructs, which often require...
Identification of a suitable cell source combined with an appropriate 3D scaffold is an essential pr...
Treatment of extensive bone defects requires autologous bone grafting or implantation of bone substi...
The current clinical choice for bone regeneration is autologous bone grafts from the iliac crest. Th...
Bone tissue engineering approaches are encouraging for the improvement of conventional bone grafting...
ABSTRACT Background and Objective: Stem cells offer an interesting tool for tissue engineering, but...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...