Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides diversity to improve the healing process of bone fractures and defect by combining the use of 3D scaffolds, healing promoting factors, gene therapy and different drugs. Flexibility to use a different technique to fabricate scaffolds lead to the new insight into bone healing future. A bone graft is defined as promoted bone healing through osteogenesis, osteoinduction, and osteoconduction by the implanted material alone or with other materials. Ideal bone graft depends on several factors such as biomechanical characteristic, tissue viability, the morphological structure as well as biological characteristics. In this work, we have investigated ...
Two semicrystalline polymers were blended to fabricate porous scaffolds for tissue engineering appli...
Calcium-deficient hydroxyapatite (cd-HA) crystals with a rod-like shape, 10-30 nm in diameter and 60...
Scaffolds fabricated from biodegradable polymers and bioactive materials together with living cells ...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Porous scaffolds made of chitosan, polyvinyl alcohol and hydroxyapatite were prepared via freeze-dry...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
In this study, we developed and characterized various open-cell composite scaffolds for bone regener...
In this study, we developed and characterized various open-cell composite scaffolds for bone regener...
Two semicrystalline polymers were blended to fabricate porous scaffolds for tissue engineering appli...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
Two semicrystalline polymers were blended to fabricate porous scaffolds for tissue engineering appli...
Calcium-deficient hydroxyapatite (cd-HA) crystals with a rod-like shape, 10-30 nm in diameter and 60...
Scaffolds fabricated from biodegradable polymers and bioactive materials together with living cells ...
Tissue engineering is an evolving technique to reduce the limitations of the bone graft. It provides...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Highly porous 3Dimensional (3D) scaffold becomes a promising alternative approach for bone repairing...
Porous scaffolds made of chitosan, polyvinyl alcohol and hydroxyapatite were prepared via freeze-dry...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
In this study, we developed and characterized various open-cell composite scaffolds for bone regener...
In this study, we developed and characterized various open-cell composite scaffolds for bone regener...
Two semicrystalline polymers were blended to fabricate porous scaffolds for tissue engineering appli...
In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or...
Two semicrystalline polymers were blended to fabricate porous scaffolds for tissue engineering appli...
Calcium-deficient hydroxyapatite (cd-HA) crystals with a rod-like shape, 10-30 nm in diameter and 60...
Scaffolds fabricated from biodegradable polymers and bioactive materials together with living cells ...