Alginate hydrogels are commonly used in biomedical applications such as scaffolds for tissue engineering, drug delivery, and as a medium for cell immobilization. Multivalent cations are often employed to create physical crosslinks between carboxyl and hydroxyl moieties on neighbouring polysaccharide chains, creating hydrogels with a range of mechanical properties. This work describes the manufacture and characterisation of sodium alginate hydrogels using the divalent cations Mg2+, Ca2+ and Sr2+ to promote gelation via non-covalent crosslinks. The gelation time and Young's modulus are characterised as a function of cation and alginate concentrations. The implications of this work towards the use of environmental elasticity to control stem ce...
A technique for synthesizing biocompatible hydrogels by cross-linking calcium-form poly(γ-glutamic a...
ABSTRACT: We successfully synthesized a family of alginate/polyacrylamide hydrogels using various mu...
Ionically crosslinked alginate hydrogels are attractive scaffolds because of their biocompatibility ...
Alginate hydrogels are commonly used in biomedical applications such as scaffolds for tissue enginee...
Hydrogels have been widely used in biomedical applications such as scaffolds for tissue engineering,...
Alginate-based hydrogels can be obtained by the simple addition of bivalent ions to aqueous polysacc...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Biopolymeric hydrogels have been utilized as a technique to provide three-dimensional structures and...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
The physical properties of alginate gels correlate with alginate composition. Blocks of guluronic ac...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
A technique for synthesizing biocompatible hydrogels by cross-linking calcium-form poly(γ-glutamic a...
ABSTRACT: We successfully synthesized a family of alginate/polyacrylamide hydrogels using various mu...
Ionically crosslinked alginate hydrogels are attractive scaffolds because of their biocompatibility ...
Alginate hydrogels are commonly used in biomedical applications such as scaffolds for tissue enginee...
Hydrogels have been widely used in biomedical applications such as scaffolds for tissue engineering,...
Alginate-based hydrogels can be obtained by the simple addition of bivalent ions to aqueous polysacc...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Biopolymeric hydrogels have been utilized as a technique to provide three-dimensional structures and...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
The physical properties of alginate gels correlate with alginate composition. Blocks of guluronic ac...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
A technique for synthesizing biocompatible hydrogels by cross-linking calcium-form poly(γ-glutamic a...
ABSTRACT: We successfully synthesized a family of alginate/polyacrylamide hydrogels using various mu...
Ionically crosslinked alginate hydrogels are attractive scaffolds because of their biocompatibility ...