Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and their combination has a better effect on bone tissue engineering than either single element. This study demonstrates a new degradable gelatin/carboxymethyl chitosan (CMC) bone scaffold loaded with both nano-HA and β-TCP (hereinafter referred to as HCP), and freeze drying combined with stir foaming was used to obtain highly connected macropores. Only a few studies have used these components to synthesize a four-component osteogenic scaffold. The aim of this study was to comprehensively assess the biocompatibility and osteoinductivity of the nanocomposites. Three HCP/CMC/gelatin scaffolds were made with different HCP contents: group A (10 wt% HCP...
Background: The tissue engineering field has developed a scaffold that can be used to increase the b...
A novel biodegradable hydroxyapatite/chitosan-gelatin network (HA/CS-Gel) composite of similar compo...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
The present study delineates a relatively simpler approach for fabrication of a macroporous three-di...
A novel three-dimensional (3D) scaffold has been developed from the unique combination of nanohydrox...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Composite scaffolds prepared from natural polymers and hydroxyapatite (HA) are expected to have enha...
Background: The tissue engineering field has developed a scaffold that can be used to increase the b...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
The tissue engineering field has developed a scaffold that can be used to increase the bone regenera...
The chitosan/gelatin hydrogel incorporated with biphasic calcium phosphate nanoparticles (BCP-NPs) a...
The tissue engineering field has developed a scaffold that can be used to increase the bone regenera...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Background: The tissue engineering field has developed a scaffold that can be used to increase the b...
A novel biodegradable hydroxyapatite/chitosan-gelatin network (HA/CS-Gel) composite of similar compo...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
The present study delineates a relatively simpler approach for fabrication of a macroporous three-di...
A novel three-dimensional (3D) scaffold has been developed from the unique combination of nanohydrox...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Composite scaffolds prepared from natural polymers and hydroxyapatite (HA) are expected to have enha...
Background: The tissue engineering field has developed a scaffold that can be used to increase the b...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
The tissue engineering field has developed a scaffold that can be used to increase the bone regenera...
The chitosan/gelatin hydrogel incorporated with biphasic calcium phosphate nanoparticles (BCP-NPs) a...
The tissue engineering field has developed a scaffold that can be used to increase the bone regenera...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Background: The tissue engineering field has developed a scaffold that can be used to increase the b...
A novel biodegradable hydroxyapatite/chitosan-gelatin network (HA/CS-Gel) composite of similar compo...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...