Motivated by the success of using graphene oxide (GO) as a nanofiller of composites, there is a drive to search for this new kind of carbon material as a reinforcing phase in biocomposites. In the present work, graphene oxide and chitosan (CS) functionalized graphene oxide were introduced as templates to fabricate hydroxyapatite (HA) using a facile solution-based in situ synthesis method, and GO-HA and CS-GO-HA nanocomposites were successfully prepared for the first time. It was found that the spindle like HA nanoparticles with a diameter of about 27 +/- 7 nm and a length around 150 +/- 25 nm were decorated randomly and strongly on the surface or aggregated at the edges of the pristine and chitosan functionalized GO matrix. Compared with HA...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Hydroxyapatite (HA) is an attractive bioceramic for hard tissue repair and regeneration due to its p...
Biomimetic calcium phosphate mineralized graphene oxide/chitosan (GO/CS) scaffolds with hierarchical...
This paper presents the fabrication and characterization of electrospun graphene oxide/calcium hydro...
Presently, tissue engineering approaches have been focused toward finding new potential scaffolds wi...
Central to the design and development of biomedical-adaptive graphene oxide (GO) is functional modif...
Presently, tissue engineering approaches have been focused toward finding new potential scaffolds wi...
Hydroxyapatite, as the natural inorganic phase of the bone tissue has been widely used as the main s...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
Regardless of its successful clinical applications, load-bearing implant applications of hydroxyapat...
In the last few years, graphene oxide (GO) has gained considerable importance in scaffold preparatio...
Human mesenchymal stem cells (hMSCs) have great potential as cell sources for bone tissue engineerin...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Hydroxyapatite (HA) is an attractive bioceramic for hard tissue repair and regeneration due to its p...
Biomimetic calcium phosphate mineralized graphene oxide/chitosan (GO/CS) scaffolds with hierarchical...
This paper presents the fabrication and characterization of electrospun graphene oxide/calcium hydro...
Presently, tissue engineering approaches have been focused toward finding new potential scaffolds wi...
Central to the design and development of biomedical-adaptive graphene oxide (GO) is functional modif...
Presently, tissue engineering approaches have been focused toward finding new potential scaffolds wi...
Hydroxyapatite, as the natural inorganic phase of the bone tissue has been widely used as the main s...
In bone tissue engineering, it is imperative to design multifunctional biomaterials that can induce ...
Regardless of its successful clinical applications, load-bearing implant applications of hydroxyapat...
In the last few years, graphene oxide (GO) has gained considerable importance in scaffold preparatio...
Human mesenchymal stem cells (hMSCs) have great potential as cell sources for bone tissue engineerin...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Hydroxyapatite (HA) is an attractive bioceramic for hard tissue repair and regeneration due to its p...
Biomimetic calcium phosphate mineralized graphene oxide/chitosan (GO/CS) scaffolds with hierarchical...