For tissue regeneration, three essential components of scaffolds, signals (biomolecules), and cells are required. Moreover, because bony defects are three-dimensional in many clinical circumstances, an exact 3D scaffold is important. Therefore, we proposed an effective reconstruction tool for cranial defects using human adipose-derived stem cells (hADSCs) and a 3D functional scaffold fabricated by solid free-form fabrication (SFF) technology that secretes biomolecules. We fabricated poly(propylene fumarate)-based 3D scaffolds with embedded microsphere-deliverable bone morphogenetic protein-2 (BMP-2) by microstereolithography. BMP-2-loaded SFF scaffolds with/without hADSCs (SFF/BMP/hADSCs scaffolds and SFF/BMP scaffolds, respectively) and BM...
Scaffolds composed of biodegradable polymers and biocompatible ceramics are being used as substitute...
The repair of critical bone loss remains a challenge to orthopaedic surgeons. Various artificial sca...
Background/purpose: Space-making is one of the essential factors for bone regeneration in severe bon...
Bony defects have been three-dimensionally (3D) created in many clinical circumstances however many ...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Solid freeform fabrication (SFF) is recognized as a promising tool for creating tissue engineering s...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
Production of a 3D bone construct with high-yield differentiated cells using an appropriate cell sou...
Presently, commercially available porous bone substitutes are manufactured by the sacrificial templa...
Bone deficiencies, caused by malformations, trauma or adverse effects from medical treatments, are a...
Defects in bone are a constant and serious problem. They occur as a result of high energy trauma, co...
Abstract: Engineering trabecular-like, three-dimensional bone tissue throughout biodegradable polyme...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
Scaffolds composed of biodegradable polymers and biocompatible ceramics are being used as substitute...
The repair of critical bone loss remains a challenge to orthopaedic surgeons. Various artificial sca...
Background/purpose: Space-making is one of the essential factors for bone regeneration in severe bon...
Bony defects have been three-dimensionally (3D) created in many clinical circumstances however many ...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Solid freeform fabrication (SFF) is recognized as a promising tool for creating tissue engineering s...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
Production of a 3D bone construct with high-yield differentiated cells using an appropriate cell sou...
Presently, commercially available porous bone substitutes are manufactured by the sacrificial templa...
Bone deficiencies, caused by malformations, trauma or adverse effects from medical treatments, are a...
Defects in bone are a constant and serious problem. They occur as a result of high energy trauma, co...
Abstract: Engineering trabecular-like, three-dimensional bone tissue throughout biodegradable polyme...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
3D printing technique is the most sophisticated technique to produce scaffolds with tailorable physi...
Scaffolds composed of biodegradable polymers and biocompatible ceramics are being used as substitute...
The repair of critical bone loss remains a challenge to orthopaedic surgeons. Various artificial sca...
Background/purpose: Space-making is one of the essential factors for bone regeneration in severe bon...