The chitosan/gelatin hydrogel incorporated with biphasic calcium phosphate nanoparticles (BCP-NPs) as scaffold (CGB) for bone tissue engineering was reported in this article. Such nanocomposite hydrogels were fabricated by using cycled freeze-thawing method, of which physicochemical and biological properties were regulated by adjusting the weight ratio of chitosan/gelatin/BCP-NPs. The needle-like BCP-NPs were dispersed into composites uniformly, and physically cross-linked with chitosan and gelatin, which were identified via Scanning Electron Microscope (SEM) images and Fourier Transform Infrared Spectroscopy (FT-IR) analysis. The porosity, equilibrium swelling ratio, and compressive strength of CGB scaffolds were mainly influenced by the B...
A series of biodegradable composite scaffolds was fabricated from an aqueous solution of gelatin, ca...
Bone repair bionanocomposite scaffolds were produced by incorporating dense bioactive glass nanopart...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Composite scaffolds prepared from natural polymers and hydroxyapatite (HA) are expected to have enha...
Although bone tissue has a unique healing capacity that does not induce scar tissue formation, compl...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
A series of biodegradable composite scaffolds was fabricated from an aqueous solution of gelatin, ca...
Bone repair bionanocomposite scaffolds were produced by incorporating dense bioactive glass nanopart...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
The aim of this study was to mimic the specific structure of bone and fabricate a biomimetic nano-hy...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Ceramic and metallic nanoparticles can improve the mechanical and biological properties of polymeric...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Recently, bone tissue engineering emerged as a viable therapeutic alternative, comprising bone impla...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Composite scaffolds prepared from natural polymers and hydroxyapatite (HA) are expected to have enha...
Although bone tissue has a unique healing capacity that does not induce scar tissue formation, compl...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
A series of biodegradable composite scaffolds was fabricated from an aqueous solution of gelatin, ca...
Bone repair bionanocomposite scaffolds were produced by incorporating dense bioactive glass nanopart...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...