International audienceMesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of producing bone. In previous studies, we extensively demonstrated that, when seeded on collagen I scaffolds, these cells can be conveniently used for the repair of human mandible defects. Here, we assess the stability and quality of the regenerated bone and vessel network 3 years after the grafting intervention, with conventional procedures and in-line holotomography, an advanced phase-imaging method using synchrotron radiation that offers improved sensitivity toward low-absorbing structures. We found that the regenerated tissue from the graft sites was composed of a fully compact bone with a higher matrix density than control hum...
Regeneration of osseous defects by a tissue-engineering approach provides a novel means of treatment...
Mesenchymal stem cells (MSCs) are able to differentiate into a variety of cell types, offering promi...
Human tissue regeneration, especially the bone, today is one of the most important challenges for me...
International audienceMesenchymal stem cells deriving from dental pulp differentiate into osteoblast...
Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of producing...
Abstract Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of...
Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of producing...
Periodontal bone defects occur in a wide variety of clinical situations. Adult stem cell- and biomat...
Background Autologous grafting, despite some disadvantages, is still considered the gold standard fo...
Autografts, which are commonly used for alveolar bone regeneration, often utilize the ilium and jaw ...
The current gold standard for reconstructive bone surgery is based on autologous bone grafts. Howeve...
In this study we used a biocomplex constructed from dental pulp stem/progenitor cells (DPCs) and a c...
Most of the cases of dental implant surgery, especially the bone defect extensively, are essential f...
Objectives: Recently, it has been reported that heterologous biomaterials, where the collagen matrix...
Objective: To evaluate the osteogenic differentiation potential of human dental pulp stem cells (DPS...
Regeneration of osseous defects by a tissue-engineering approach provides a novel means of treatment...
Mesenchymal stem cells (MSCs) are able to differentiate into a variety of cell types, offering promi...
Human tissue regeneration, especially the bone, today is one of the most important challenges for me...
International audienceMesenchymal stem cells deriving from dental pulp differentiate into osteoblast...
Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of producing...
Abstract Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of...
Mesenchymal stem cells deriving from dental pulp differentiate into osteoblasts capable of producing...
Periodontal bone defects occur in a wide variety of clinical situations. Adult stem cell- and biomat...
Background Autologous grafting, despite some disadvantages, is still considered the gold standard fo...
Autografts, which are commonly used for alveolar bone regeneration, often utilize the ilium and jaw ...
The current gold standard for reconstructive bone surgery is based on autologous bone grafts. Howeve...
In this study we used a biocomplex constructed from dental pulp stem/progenitor cells (DPCs) and a c...
Most of the cases of dental implant surgery, especially the bone defect extensively, are essential f...
Objectives: Recently, it has been reported that heterologous biomaterials, where the collagen matrix...
Objective: To evaluate the osteogenic differentiation potential of human dental pulp stem cells (DPS...
Regeneration of osseous defects by a tissue-engineering approach provides a novel means of treatment...
Mesenchymal stem cells (MSCs) are able to differentiate into a variety of cell types, offering promi...
Human tissue regeneration, especially the bone, today is one of the most important challenges for me...