Novel three-dimensional hybrid polymer–hydroxyapatite nanocomposites have been developed as load-bearing synthetic bone graft through in situ mineralization process, using natural polymers carboxymethyl cellulose (CMC) and gelatin (Gel) as matrix. This process is simple and does not involve any chemical cross-linker. Detailed structural and physicochemical characterization of the samples disclosed that incorporation of gelatin with CMC assists the formation of CMC-Gel polymeric network of new conformational structure through non-covalent interactions (H-bond). The formation of hydroxyapatite (HA) in this polymeric network was occurred in such a fashion that the HA serves as bridging molecule which strengthen the polymeric network more and f...
Causes of bone deficiency are numerous, but biomimetic alloplastic grafts provide an alternative to ...
Biomimetic organic-inorganic nanocomposite scaffolds represent a tremendous opportunity to accelerat...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
Novel three-dimensional hybrid polymer–hydroxyapatite nanocomposites have been developed as load-bea...
A three-dimensional porous hydroxyapatite nanocomposite has been synthesized by a simple, less energ...
Bioactive 3D composites play an important role in advanced biomaterial design to provide molecular c...
A novel three-dimensional (3D) scaffold has been developed from the unique combination of nanohydrox...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
1 - ArticleThe combination of gelatin (Gel) with a bioactive component hydroxyapatite (HA) and carti...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Hydrogels have attracted considerable attention in biomedical engineering applications due to their ...
Causes of bone deficiency are numerous, but biomimetic alloplastic grafts provide an alternative to ...
Biomimetic organic-inorganic nanocomposite scaffolds represent a tremendous opportunity to accelerat...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...
Novel three-dimensional hybrid polymer–hydroxyapatite nanocomposites have been developed as load-bea...
A three-dimensional porous hydroxyapatite nanocomposite has been synthesized by a simple, less energ...
Bioactive 3D composites play an important role in advanced biomaterial design to provide molecular c...
A novel three-dimensional (3D) scaffold has been developed from the unique combination of nanohydrox...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Hydroxyapatite-chitosan/gelatin (HA:Chi:Gel) nanocomposite scaffold has potential to serve as a temp...
1 - ArticleThe combination of gelatin (Gel) with a bioactive component hydroxyapatite (HA) and carti...
Hydroxyapatite (HA) and tricalcium phosphate (TCP) constitute 60% of the content of the bone, and th...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
Hydrogels have attracted considerable attention in biomedical engineering applications due to their ...
Causes of bone deficiency are numerous, but biomimetic alloplastic grafts provide an alternative to ...
Biomimetic organic-inorganic nanocomposite scaffolds represent a tremendous opportunity to accelerat...
Multi-component bone tissue engineering scaffolds are the dominant trend to address complex requirem...