When large engineered tissue structures are used to achieve tissue regeneration, formation of vasculature is an essential process. We report a technique that combines 3D printing with spatial and temporal control of dual growth factors to prevascularize bone tissue. Human dental pulp stem cells (DPSCs) that have both osteogenic and vasculogenic potential were printed with bone morphogenetic protein-2 (BMP- 2) in the peripheral zone of the 3D printed construct, and with the vascular endothelial growth factor (VEGF) in the central zone, in which a hypoxic area forms. The structure was implanted in the back of a mouse and tissue regeneration was assessed after 28 d. Microvessels were newly formed in the hypoxic area of the printed large volume...
3D printing and ultrasound techniques are showing great promise in the evolution of human musculoske...
There is a considerable demand for tissue bioengineering to eliminate the need for the associated au...
Three-dimensional bioprinting can prove to be a promising technology for bone tissue regeneration as...
One of the major challenges facing the field of tissue engineering today is vascularisation. Without...
Vascularization is a fundamental prerequisite for large bone construct development and remains one o...
MasterVascularized tissue regeneration is one of main issues for sufficient nutrition transport. Whe...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
3D bioprinting has begun to show great promise in advancing the development of functional tissue/org...
Bone is a complex and highly dynamic tissue, which has been worldwide studied, from fundamental biol...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Identification of a suitable cell source combined with an appropriate 3D scaffold is an essential pr...
3D printing and ultrasound techniques are showing great promise in the evolution of human musculoske...
3D printing and ultrasound techniques are showing great promise in the evolution of human musculoske...
There is a considerable demand for tissue bioengineering to eliminate the need for the associated au...
Three-dimensional bioprinting can prove to be a promising technology for bone tissue regeneration as...
One of the major challenges facing the field of tissue engineering today is vascularisation. Without...
Vascularization is a fundamental prerequisite for large bone construct development and remains one o...
MasterVascularized tissue regeneration is one of main issues for sufficient nutrition transport. Whe...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
3D bioprinting has begun to show great promise in advancing the development of functional tissue/org...
Bone is a complex and highly dynamic tissue, which has been worldwide studied, from fundamental biol...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Identification of a suitable cell source combined with an appropriate 3D scaffold is an essential pr...
3D printing and ultrasound techniques are showing great promise in the evolution of human musculoske...
3D printing and ultrasound techniques are showing great promise in the evolution of human musculoske...
There is a considerable demand for tissue bioengineering to eliminate the need for the associated au...
Three-dimensional bioprinting can prove to be a promising technology for bone tissue regeneration as...