The capacity to deliver, temporally, bioactive growth factors in combination with appropriate progenitor and stem cells to sites of tissue regeneration promoting angiogenesis and osteogenesis offers therapeutic opportunities in regenerative medicine. We have examined the bone regenerative potential of encapsulated vascular endothelial growth factor (VEGF(165)) biodegradable poly(DL-lactic acid) (PLA) scaffolds created using supercritical CO(2) fluid technology to encapsulate and release solvent-sensitive and thermolabile growth factors in combination with human bone marrow stromal cells (HBMSC) implanted in a mouse femur segmental defect (5 mm) for 4 weeks. HBMSC seeded on VEGF encapsulated PLA scaffolds showed significant bone regeneration...
The ability to deliver, over time, biologically active vascular endothelial growth factor-165 (VEGF)...
The healing of large, critically sized bone defects remains an unmet clinical need in modern orthop...
Background: In bone tissue engineering (BTE), extensive research into vascular endothelial growth fa...
Regenerating bone tissue involves complex, temporal and coordinated signal cascades of which bone mo...
The functional repair of large skeletal defects remains a significant challenge to orthopaedic surge...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
We have previously reported the fabrication of a polycaprolactone and hydroxyapatite composite scaff...
The ability to deliver, over time, biologically active osteogenic growth factors by means of designe...
Repairing critical-size bone defects with engineered scaffolds remains a challenge in orthopedic pra...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
The prevalence of bone loss due to injury, disease and birth defects is a significant problem in the...
The ability to deliver, over time, biologically active vascular endothelial growth factor-165 (VEGF)...
The healing of large, critically sized bone defects remains an unmet clinical need in modern orthop...
Background: In bone tissue engineering (BTE), extensive research into vascular endothelial growth fa...
Regenerating bone tissue involves complex, temporal and coordinated signal cascades of which bone mo...
The functional repair of large skeletal defects remains a significant challenge to orthopaedic surge...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
This study trialled the controlled delivery of growth factors within a biodegradable scaffold in a l...
We have previously reported the fabrication of a polycaprolactone and hydroxyapatite composite scaff...
The ability to deliver, over time, biologically active osteogenic growth factors by means of designe...
Repairing critical-size bone defects with engineered scaffolds remains a challenge in orthopedic pra...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
Although bone has an intrinsic capacity for self repair, the healing of large bone defects that typi...
The prevalence of bone loss due to injury, disease and birth defects is a significant problem in the...
The ability to deliver, over time, biologically active vascular endothelial growth factor-165 (VEGF)...
The healing of large, critically sized bone defects remains an unmet clinical need in modern orthop...
Background: In bone tissue engineering (BTE), extensive research into vascular endothelial growth fa...