This study investigated the delivery of bone morphogenetic protein (BMP)4-secreting muscle-derived stem cells (MDSC-B4) capable of inducing bone formation in mice using collagen gel (CG), fibrin sealant (FS), and gelatin sponge carriers. After implanting these various cell-loaded scaffolds intramuscularly or into critical-size skull defects, we measured the extent of heterotopic ossification and calvarial defect healing over a 6-week period via radiographic, radiomorphometric, histological, and micro-computed tomography analyses. As expected, in the absence of MDSC-B4, there was no ectopic ossification and only minimal calvarial regeneration using each type of scaffold. Although CG and gelatin sponges loaded with BMP4-secreting cells produc...
The importance of provision of growth factors in the engineering of tissues has long been shown to c...
Biomimetic bone tissue engineering strategies partially recapitulate development. We recently showed...
The prevalence of bone and articular cartilage injuries is expected to increase with the aging popul...
This study investigated the delivery of bone morphogenetic protein (BMP)4-secreting muscle-derived s...
This study investigated the delivery of bone morphogenetic protein (BMP)4-secreting muscle-derived s...
Objective: Regeneration of osseous defects by tissue-engineering or cell delivery approach provides ...
Muscle-derived cells have been successfully isolated using a variety of different methods and have b...
There are currently several commercialized products approved by the Food and Drug Administration and...
Abstract Bone morphogenetic protein 2 (BMP‐2)‐loaded collagen sponges remain the clinical standard f...
OBJECTIVE: Muscle-derived stem cells (MDSCs) isolated from mouse skeletal muscle exhibit long-time p...
The regeneration of large bone defects remains an unsolved clinical problem, which could benefit fro...
The functional repair of large skeletal defects remains a significant challenge to orthopaedic surge...
Extracellular matrix (hMatrix) derived from osteogenically enhanced mesenchymal stem cells (OEhMSCs)...
Bone is a very active and dynamic tissue that is constantly remodelled in response to mechanical str...
Trauma and disease frequently result in fractures or critical sized bone defects and their managemen...
The importance of provision of growth factors in the engineering of tissues has long been shown to c...
Biomimetic bone tissue engineering strategies partially recapitulate development. We recently showed...
The prevalence of bone and articular cartilage injuries is expected to increase with the aging popul...
This study investigated the delivery of bone morphogenetic protein (BMP)4-secreting muscle-derived s...
This study investigated the delivery of bone morphogenetic protein (BMP)4-secreting muscle-derived s...
Objective: Regeneration of osseous defects by tissue-engineering or cell delivery approach provides ...
Muscle-derived cells have been successfully isolated using a variety of different methods and have b...
There are currently several commercialized products approved by the Food and Drug Administration and...
Abstract Bone morphogenetic protein 2 (BMP‐2)‐loaded collagen sponges remain the clinical standard f...
OBJECTIVE: Muscle-derived stem cells (MDSCs) isolated from mouse skeletal muscle exhibit long-time p...
The regeneration of large bone defects remains an unsolved clinical problem, which could benefit fro...
The functional repair of large skeletal defects remains a significant challenge to orthopaedic surge...
Extracellular matrix (hMatrix) derived from osteogenically enhanced mesenchymal stem cells (OEhMSCs)...
Bone is a very active and dynamic tissue that is constantly remodelled in response to mechanical str...
Trauma and disease frequently result in fractures or critical sized bone defects and their managemen...
The importance of provision of growth factors in the engineering of tissues has long been shown to c...
Biomimetic bone tissue engineering strategies partially recapitulate development. We recently showed...
The prevalence of bone and articular cartilage injuries is expected to increase with the aging popul...