Modifying hydrogels in order to enhance their conductivity is an exciting field with applications in cardio and neuro-regenerative medicine. Therefore, we have designed hybrid alginate hydrogels containing uncoated and protein-coated reduced graphene oxide (rGO). We specifically studied the adsorption of three different proteins, BSA, elastin, and collagen, and the outcomes when these protein-coated rGO nanocomposites are embedded within the hydrogels. Our results demonstrate that BSA, elastin, and collagen are adsorbed onto the rGO surface, through a non-spontaneous phenomenon that fits Langmuir and pseudo-second-order adsorption models. Protein-coated rGOs are able to preclude further adsorption of erythropoietin, but not insulin. Collage...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
Dually crosslinked graphene oxide reinforced alginate/polyvinyl alcohol (PVA) double network (DN) hy...
Increasing the porosity of biomaterials is desirable for designing 3-D cell culture scaffolds with p...
This article belongs to the Special Issue Rational Design and Characterization of Hydrogels to Impro...
Modifying hydrogels in order to enhance their conductivity is an exciting field with applications in...
The use of embedded cells within alginate matrices is a developing technique with great clinical app...
The use of embedded cells within alginate matrices is a developing technique with great clinical app...
Hydrogels have attracted significant interest over the past several decades due to their outstanding...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Bio-nanocomposite hydrogels based on sodium alginate (SA) as polymer matrix and graphene oxide (GO)...
The surface charge of a biomaterial represents a promising tool to direct cellular behavior, which i...
The development of novel 3D systems is crucial for engineering artificial tissues since the behavior...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Alginate/graphene double network hydrogel has recently been demonstrated as a promising adsorbent fo...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
Dually crosslinked graphene oxide reinforced alginate/polyvinyl alcohol (PVA) double network (DN) hy...
Increasing the porosity of biomaterials is desirable for designing 3-D cell culture scaffolds with p...
This article belongs to the Special Issue Rational Design and Characterization of Hydrogels to Impro...
Modifying hydrogels in order to enhance their conductivity is an exciting field with applications in...
The use of embedded cells within alginate matrices is a developing technique with great clinical app...
The use of embedded cells within alginate matrices is a developing technique with great clinical app...
Hydrogels have attracted significant interest over the past several decades due to their outstanding...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Bio-nanocomposite hydrogels based on sodium alginate (SA) as polymer matrix and graphene oxide (GO)...
The surface charge of a biomaterial represents a promising tool to direct cellular behavior, which i...
The development of novel 3D systems is crucial for engineering artificial tissues since the behavior...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Alginate/graphene double network hydrogel has recently been demonstrated as a promising adsorbent fo...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
Biomaterials currently used in cardiac tissue engineering have certain limitations, such as lack of ...
Dually crosslinked graphene oxide reinforced alginate/polyvinyl alcohol (PVA) double network (DN) hy...
Increasing the porosity of biomaterials is desirable for designing 3-D cell culture scaffolds with p...