AbstractDevelopment of bioinspired or biomimetic materials is currently a challenge in the field of tissue regeneration. In-situ 3D biomimetic microporous nanocomposite scaffold has been developed using a simple lyophilization post hydrothermal reaction for bone healing applications. The fabricated 3D porous scaffold possesses advantages of good bonelike apatite particles distribution, thermal properties and high porous interconnected network structure. High dispersion bonelike apatite nanoparticles (NPs) rapidly nucleated and deposited from surrounding biological minerals within chitosan (CTS) matrices using hydrothermal technique. After that, freeze-drying method was applied on the composite solution to form the desired porous 3D architec...
The field of bone tissue engineering seeks to mimic the bone extracellular matrix composition, balan...
Highly porous poly( L -lactic acid)/apatite composites were prepared through in situ formation of ...
An optimal carrier for bone tissue engineering should be both a controlled release system and a sca...
Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue r...
Tissue engineering offers a significant potential alternative to conventional methods for rectifying...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Three-dimensional macroporous scaffolds are commonly used in bone tissue engineering applications si...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
Advancement and development in bone tissue engineering, particularly that of composite scaffolds, ar...
The porous composite scaffolds (PHBV/HA) consisting of poly (3-hydroxybutyrate-co-3-hydroxyvalerate)...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Three new biodegradable and bioactive scaffolds based on hydroxyapatite (HAP), β tricalcium phosphat...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
The field of bone tissue engineering seeks to mimic the bone extracellular matrix composition, balan...
Highly porous poly( L -lactic acid)/apatite composites were prepared through in situ formation of ...
An optimal carrier for bone tissue engineering should be both a controlled release system and a sca...
Development of bioinspired or biomimetic materials is currently a challenge in the field of tissue r...
Tissue engineering offers a significant potential alternative to conventional methods for rectifying...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Three-dimensional macroporous scaffolds are commonly used in bone tissue engineering applications si...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
Advancement and development in bone tissue engineering, particularly that of composite scaffolds, ar...
The porous composite scaffolds (PHBV/HA) consisting of poly (3-hydroxybutyrate-co-3-hydroxyvalerate)...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Three new biodegradable and bioactive scaffolds based on hydroxyapatite (HAP), β tricalcium phosphat...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
The field of bone tissue engineering seeks to mimic the bone extracellular matrix composition, balan...
Highly porous poly( L -lactic acid)/apatite composites were prepared through in situ formation of ...
An optimal carrier for bone tissue engineering should be both a controlled release system and a sca...