In this study, the preparation of porous nanocomposite scaffolds (HX-CNT) from a combination of a hydroxamic derivative of alginate (HX) and an amine-functionalized multiwalled carbon nanotube (CNT) at different concentrations is described. The structure of HX was investigated by FTIR, and the degree of substitution around 9% was confirmed by elemental analysis. The interaction between CNT and alginate derivative in the nanocomposite crosslinked with calcium was confirmed by FTIR, Raman spectroscopy, and SEM. The results obtained in this study showed that scaffolds based on HX-CNT composites with a 4 wt% concentration level exhibited improved physical and mechanical properties compared to plain alginate (Young’s modulus increased from 2.2 t...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
We aimed to develop an alginate hydrogel (AH) modified with nano-/microfibers of titanium dioxide (n...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Rajendiran Rajesh, Y Dominic Ravichandran Organic Chemistry Division, School of Advanced Sciences, ...
In this study, we designed, synthesized, and characterized ultrahigh purity single-walled carbon nan...
In this study, we designed, synthesized, and characterized ultrahigh purity single-walled carbon nan...
62 p.Biomaterials for cardiovascular tissue engineering should have good mechanical properties to wi...
It is common knowledge that pure alginate hydrogel is more likely to have weak mechanical strength, ...
Paper presented at the 2006 IEEE 32nd Annual Northeast Bioengineering Conference, Easton, PA.Three-d...
Three-dimensional composite alginate/single wall carbon nanotube (SWCNT) scaffolds encapsulated wit...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
The biocompatibility of carbon nanotubes (CNT) is fairly a challenging task for their applications i...
Halloysite nanotube (HNT)-reinforced alginate-based nanofibrous scaffolds were successfully fabricat...
Major target for prosthetic constructs of bone is the ability to elicit osteoinduction, osteoconduct...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
We aimed to develop an alginate hydrogel (AH) modified with nano-/microfibers of titanium dioxide (n...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
Hydrogel has been widely used in tissue engineering application due to its biocompatibility and its ...
Rajendiran Rajesh, Y Dominic Ravichandran Organic Chemistry Division, School of Advanced Sciences, ...
In this study, we designed, synthesized, and characterized ultrahigh purity single-walled carbon nan...
In this study, we designed, synthesized, and characterized ultrahigh purity single-walled carbon nan...
62 p.Biomaterials for cardiovascular tissue engineering should have good mechanical properties to wi...
It is common knowledge that pure alginate hydrogel is more likely to have weak mechanical strength, ...
Paper presented at the 2006 IEEE 32nd Annual Northeast Bioengineering Conference, Easton, PA.Three-d...
Three-dimensional composite alginate/single wall carbon nanotube (SWCNT) scaffolds encapsulated wit...
International audience3D nanocomposite scaffolds have attracted significant attention in bone tissue...
The biocompatibility of carbon nanotubes (CNT) is fairly a challenging task for their applications i...
Halloysite nanotube (HNT)-reinforced alginate-based nanofibrous scaffolds were successfully fabricat...
Major target for prosthetic constructs of bone is the ability to elicit osteoinduction, osteoconduct...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...
We aimed to develop an alginate hydrogel (AH) modified with nano-/microfibers of titanium dioxide (n...
A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) ...