Bone transplantation is regarded as the preferred therapy to treat a variety of bone defects. Autologous bone tissue is often lacking at the source, and the mesenchymal stem cells (MSCs) responsible for bone repair mechanisms are extracted by invasive procedures. This study explores the potential of autologous mesenchymal stem cells derived from the hair follicle outer root sheath (MSCORS). We demonstrated that MSCORS have a remarkable capacity to differentiate in vitro towards the osteogenic lineage. Indeed, when combined with a novel gelatin-based hydrogel called Osteogel, they provided additional osteoinductive cues in vitro that may pave the way for future application in bone regeneration. MSCORS were also compared to MSCs from adipose ...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Purpose: Bone regeneration through distraction osteogenesis (DO) is promising but remarkably slow. T...
For critical size bone defects and bone non-unions, bone tissue engineering using osteoblastic diffe...
Objective. To evaluate bone regeneration potential of mesenchymal stem cells Background. Bone fractu...
Critical size bone defects and non-unions remain challenging situations for the orthopedic surgeon. ...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Current tissue engineering uses 3D biomaterials in combination with stem cells, since mature cells a...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Abstract: A 3D-printed biodegradable hydrogel, consisting of alginate, gelatin, and freeze-dried bon...
3D biomaterials have been widely used in reconstructive bone surgery as cell carriers providing mech...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Purpose: Bone regeneration through distraction osteogenesis (DO) is promising but remarkably slow. T...
For critical size bone defects and bone non-unions, bone tissue engineering using osteoblastic diffe...
Objective. To evaluate bone regeneration potential of mesenchymal stem cells Background. Bone fractu...
Critical size bone defects and non-unions remain challenging situations for the orthopedic surgeon. ...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Autologous bone transplantation is the principal method for reconstruction of large bone defects. Th...
Current tissue engineering uses 3D biomaterials in combination with stem cells, since mature cells a...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Gelatin–dextran hydrogel scaffolds (G-PEG-Dx) were evaluated for their ability to activate the bone ...
Abstract: A 3D-printed biodegradable hydrogel, consisting of alginate, gelatin, and freeze-dried bon...
3D biomaterials have been widely used in reconstructive bone surgery as cell carriers providing mech...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Mesenchymal stem cells (MSCs) hold great promise for regenerative therapies in the musculoskeletal s...
Purpose: Bone regeneration through distraction osteogenesis (DO) is promising but remarkably slow. T...
For critical size bone defects and bone non-unions, bone tissue engineering using osteoblastic diffe...