ABSTRACT: Calvarial defects can result from several causes. Tissue engineering hold the potential to restore native form and protective function. We have recently shown that stemness and differentiation ability of spheroids from adipose-derived stem cells (S-ASCs) promotes osteoblasts growth within Integra in a small vertebral lesion. In our study, we aimed to test osteogenic potential of S-ASCs in aiding regeneration of a calvarial defect. Groups containing Integra showed increased bone regeneration at the calvarial defect-Integra interface compared with the control group. In particular, S-ASC-derived osteoblasts group showed a superior calvarial remodeling than undifferentiated S-ASCs group. Clusters of ossification were observed in these...
Bone defect can be provoked by several pathological conditions, like bone tumors, infections, major ...
Tissue engineering represents an innovative approach for the treatment of severe bone defects in whi...
OBJECTIVE Adipose-derived stem cells (ASCs), with their great availability and osteogenic potential ...
ABSTRACT: Calvarial defects can result from several causes. Tissue engineering hold the potential to...
BackgroundHuman adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type...
The repair of large bony defects remains challenging in the clinical setting. Human adipose-derived...
The repair of large bony defects remains challenging in the clinical setting. Human adipose-derived...
【Abstract】Objective: To evaluate the in vitro and in vivo osteogenic capability of adipose-derive...
Delayed vascularization and resultant resorption limits the clinical use of tissue engineered bony c...
Bone defect can be provoked by several pathological conditions, like bone tumors, infections, major ...
Background: Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell ty...
Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type with prov...
Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type with prov...
It has been shown that stem cells are able to calcify both in vitro and in vivo once implanted under...
Delayed vascularization and resultant resorption limits the clinical use of tissue engineered bony c...
Bone defect can be provoked by several pathological conditions, like bone tumors, infections, major ...
Tissue engineering represents an innovative approach for the treatment of severe bone defects in whi...
OBJECTIVE Adipose-derived stem cells (ASCs), with their great availability and osteogenic potential ...
ABSTRACT: Calvarial defects can result from several causes. Tissue engineering hold the potential to...
BackgroundHuman adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type...
The repair of large bony defects remains challenging in the clinical setting. Human adipose-derived...
The repair of large bony defects remains challenging in the clinical setting. Human adipose-derived...
【Abstract】Objective: To evaluate the in vitro and in vivo osteogenic capability of adipose-derive...
Delayed vascularization and resultant resorption limits the clinical use of tissue engineered bony c...
Bone defect can be provoked by several pathological conditions, like bone tumors, infections, major ...
Background: Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell ty...
Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type with prov...
Human adipose-derived stromal cells (hASCs) represent a multipotent cell stromal cell type with prov...
It has been shown that stem cells are able to calcify both in vitro and in vivo once implanted under...
Delayed vascularization and resultant resorption limits the clinical use of tissue engineered bony c...
Bone defect can be provoked by several pathological conditions, like bone tumors, infections, major ...
Tissue engineering represents an innovative approach for the treatment of severe bone defects in whi...
OBJECTIVE Adipose-derived stem cells (ASCs), with their great availability and osteogenic potential ...