Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde cellulose followed by sulfonation using bisulfite. The physicochemical properties of the sulfonated beads, i.e., high surface area, high degree of oxidation, spherical shape, and the possibility of tailoring the porosity, make them interesting candidates for the development of immunosorbent platforms, including their application in extracorporeal blood treatments. A desired property for materials used in such applications is blood compatibility; therefore in the present work, we investigate the hemocompatibility of the sulfonated cellulose beads using an in vitro whole blood model. Complement system activation (C3a and sC5b-9 levels), coagula...
Cladophora cellulose polypyrrole composites are recognized as potential biomaterials with future app...
An emerging interest regarding nanoparticles (NPs) concerns their potential immunomodulatory and pro...
In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Bacterial cellulose (BC) has been suggested to be a suitable biomaterial for the development of card...
A current trend utilizing the biomedical approach in the field of wound care is focused on the incre...
In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic ...
Cladophora cellulose polypyrrole composites are recognized as potential biomaterials with future app...
An emerging interest regarding nanoparticles (NPs) concerns their potential immunomodulatory and pro...
In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Bacterial cellulose (BC) has been suggested to be a suitable biomaterial for the development of card...
A current trend utilizing the biomedical approach in the field of wound care is focused on the incre...
In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic ...
Cladophora cellulose polypyrrole composites are recognized as potential biomaterials with future app...
An emerging interest regarding nanoparticles (NPs) concerns their potential immunomodulatory and pro...
In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic ...