Abstract Biodegradable porous biomaterial scaffolds play a critical role in bone regeneration. In this study, the porous nano-hydroxyapatite/collagen/poly(lactic-co-glycolic acid)/graphene oxide (nHAC/PLGA/GO) composite scaffolds containing different amount of GO were fabricated by freeze-drying method. The results show that the synthesized scaffolds possess a three-dimensional porous structure. GO slightly improves the hydrophilicity of the scaffolds and reinforces their mechanical strength. Young’s modulus of the 1.5 wt% GO incorporated scaffold is greatly increased compared to the control sample. The in vitro experiments show that the nHAC/PLGA/GO (1.5 wt%) scaffolds significantly cell adhesion and proliferation of osteoblast cells (MC3T...
This paper provides review updates on the current development of bionanocomposites with polymeric ma...
The excellent biocompatible and osteogenesis characteristics of porous scaffolds play a vital role i...
Human mesenchymal stem cells (hMSCs) hold great promise for bone regeneration, yet the direction of ...
The importance of bone scaffolds has increased many folds in the last few years; however, during bon...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Abstract A variety of bone-related diseases and injures and limitations of traditional regeneration ...
Bone tissue engineering scaffold provides an effective treatment for bone defect repair. Biodegradab...
Currently, combining biomaterial scaffolds with living stem cells for tissue regeneration is a main ...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Composite biomaterials with hierarchical structures have emerged as new approaches for bone-tissue e...
Due to their potential renewable materials-based tissue engineering scaffolds has gained more attent...
Developing a biodegradable scaffold remains a major challenge in bone tissue engineering. This study...
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem cell osteog...
Several significant advancements in the field of bone regenerative medicine have been made in recent...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
This paper provides review updates on the current development of bionanocomposites with polymeric ma...
The excellent biocompatible and osteogenesis characteristics of porous scaffolds play a vital role i...
Human mesenchymal stem cells (hMSCs) hold great promise for bone regeneration, yet the direction of ...
The importance of bone scaffolds has increased many folds in the last few years; however, during bon...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Abstract A variety of bone-related diseases and injures and limitations of traditional regeneration ...
Bone tissue engineering scaffold provides an effective treatment for bone defect repair. Biodegradab...
Currently, combining biomaterial scaffolds with living stem cells for tissue regeneration is a main ...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Composite biomaterials with hierarchical structures have emerged as new approaches for bone-tissue e...
Due to their potential renewable materials-based tissue engineering scaffolds has gained more attent...
Developing a biodegradable scaffold remains a major challenge in bone tissue engineering. This study...
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem cell osteog...
Several significant advancements in the field of bone regenerative medicine have been made in recent...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
This paper provides review updates on the current development of bionanocomposites with polymeric ma...
The excellent biocompatible and osteogenesis characteristics of porous scaffolds play a vital role i...
Human mesenchymal stem cells (hMSCs) hold great promise for bone regeneration, yet the direction of ...