The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable properties of alginate gels but presenting enhanced performance in terms of in vivo durability and physical properties, is desirable to extend the therapeutic potential of cell transplantation. A novel type of hydrogel MS was produced by straightforward functionalization of sodium alginate (Na-alg) with heterotelechelic poly(ethylene glycol) (PEG) derivatives equipped with either end thiol or 1,2-dithiolane moieties. Activation of the hydroxyl moieties of the alginate backbone in the form of imidazolide intermediate allowed for fast conjugation to PEG oligomers through a covalent carbamate linkage. Evaluation of the modified alginates for the pr...
Alginate microcapsules have the potential as immune barriers for cell transplantation where the algi...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
Two types of hydrogel microspheres have been developed. Fast ionotropic gelation of sodium alginate ...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
Cell therapy could be a solution for many diseases that currently pose a huge health burden on patie...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
The development of multifunctional encapsulation biomaterials could help the translation of cell‐bas...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Cell microencapsulation is an active interdisciplinary research field. It requires the input from ma...
The progress of medical therapies, which rely on the transplantation of microencapsulated living cel...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
Alginate microcapsules have the potential as immune barriers for cell transplantation where the algi...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
Two types of hydrogel microspheres have been developed. Fast ionotropic gelation of sodium alginate ...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
Cell therapy could be a solution for many diseases that currently pose a huge health burden on patie...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
The development of multifunctional encapsulation biomaterials could help the translation of cell‐bas...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Alginate has been exploited commercially for decades in foods, textiles, paper, pharmaceutical indus...
Cell microencapsulation is an active interdisciplinary research field. It requires the input from ma...
The progress of medical therapies, which rely on the transplantation of microencapsulated living cel...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
Alginate microcapsules have the potential as immune barriers for cell transplantation where the algi...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
Two types of hydrogel microspheres have been developed. Fast ionotropic gelation of sodium alginate ...