International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue engineering applications. In the current study, we fabricated a 3D nanocomposite scaffold based on a bacterial polyglucuronic acid (PGU) and sodium alginate (Alg) composite with carbon nanofibers (CNFs) as the bone tissue engineering scaffold. The CNFs were obtained from electrospun polyacrylonitrile nanofibers through heat treatment. The fabricated CNFs were incorporated into a PGU/Alg polymeric solution, which was physically cross-linked using CaCl2 solution. The fabricated nanocomposites were characterized to evaluate the internal structure, porosity, swelling kinetics, hemocompatibility, and cytocompatibility. The characterizations indic...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
To address the need to biodegradable, electroactive conduits accelerating nerve regeneration, here w...
Due to their potential renewable materials-based tissue engineering scaffolds has gained more attent...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
It is common knowledge that pure alginate hydrogel is more likely to have weak mechanical strength, ...
International audienceIn the current paper, we fabricated, characterized, and applied nanocomposite ...
Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering i...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
Alginate (Alg) and bacterial nanocellulose (BNC) have exhibited great potential in biomedical applic...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
n this study nano-composite scaffolds to be used as bone grafts have been endowed with antibacterial...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
To address the need to biodegradable, electroactive conduits accelerating nerve regeneration, here w...
Due to their potential renewable materials-based tissue engineering scaffolds has gained more attent...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
It is common knowledge that pure alginate hydrogel is more likely to have weak mechanical strength, ...
International audienceIn the current paper, we fabricated, characterized, and applied nanocomposite ...
Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering i...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
Alginate (Alg) and bacterial nanocellulose (BNC) have exhibited great potential in biomedical applic...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
n this study nano-composite scaffolds to be used as bone grafts have been endowed with antibacterial...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
To address the need to biodegradable, electroactive conduits accelerating nerve regeneration, here w...
Due to their potential renewable materials-based tissue engineering scaffolds has gained more attent...