In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on alginate (Alg) and nano-hydroxyapatite (nHA) loaded with phenolic purified extracts from the aerial part of Linum usitatissimum (LOH) as the bone tissue engineering scaffold. nHA was synthesized based on the wet chemical technique/precipitation reaction and incorporated into Alg hydrogel as the filler via physical cross-linking. The characterizations (SEM, DLS, and Zeta potential) revealed that the synthesized nHA possess a plate-like shape with nanometric dimensions. The fabricated nanocomposite has a porous architecture with interconnected pores. The average pore size was in the range of 100–200 µm and the porosity range of 80–90%. The LOH rele...
Copyright © 2014 B. Hemabarathy Bharatham et al. This is an open access article distributed under th...
Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering i...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
International audienceIn the current paper, we fabricated, characterized, and applied nanocomposite ...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
Alginate/hydroxyapatite composite scaffolds were developed using a novel production design. Hydroxya...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
Major target for prosthetic constructs of bone is the ability to elicit osteoinduction, osteoconduct...
[[abstract]]In this paper, a series of alginate/hydroxyapatite (HAP) composite scaffolds were prepar...
Objective: To prepare and characterize composite scaffolds of a hydroxyapatite (HA) and an alginate ...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
Copyright © 2014 B. Hemabarathy Bharatham et al. This is an open access article distributed under th...
Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering i...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
International audienceIn the current paper, we fabricated, characterized, and applied nanocomposite ...
In the current paper, we fabricated, characterized, and applied nanocomposite hydrogel based on algi...
Alginate/hydroxyapatite composite scaffolds were developed using a novel production design. Hydroxya...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
Major target for prosthetic constructs of bone is the ability to elicit osteoinduction, osteoconduct...
[[abstract]]In this paper, a series of alginate/hydroxyapatite (HAP) composite scaffolds were prepar...
Objective: To prepare and characterize composite scaffolds of a hydroxyapatite (HA) and an alginate ...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
Copyright © 2014 B. Hemabarathy Bharatham et al. This is an open access article distributed under th...
Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering i...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...