Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and evaluated as potentially suitable materials for cell microencapsulation. Grafting 5-13% of the backbone units of sodium alginate (Na-alg) with alpha-amine-omega-thiol PEG maintained the gelling capacity in presence of calcium ions, while thiol end groups allowed for preparing chemically crosslinked hydrogel via spontaneous disulfide bond formation. The combination of these two gelling mechanisms yielded Ca-alg-PEG. Human hepatocellular carcinoma cells (Huh-7) were encapsulated in Ca-alg-PEG and calcium alginate beads (Ca-alg), and cultured for 2 weeks under agitation conditions. Immediately after completion of the microencapsulation, the cell vi...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
Alginate hydrogels can be used to develop a three-dimensional environment in which various cell type...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
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...
Cell therapy could be a solution for many diseases that currently pose a huge health burden on patie...
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...
International audienceThree-dimensional (3D) culture systems have been introduced to provide cells w...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
Alginate microcapsules have the potential as immune barriers for cell transplantation where the algi...
An improved internal gelation approach is developed to encapsulate single mammalian cells in monodis...
Two novel types of hydrogel microspheres (MS) are presented. First, one-component microspheres (1-co...
Liver tissue engineering has been an emerging field that shows promising advances to regenerate the ...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
Alginate hydrogels can be used to develop a three-dimensional environment in which various cell type...
Novel calcium alginate poly(ethylene glycol) hybrid microspheres (Ca-alg-PEG) were developed and eva...
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...
Cell therapy could be a solution for many diseases that currently pose a huge health burden on patie...
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...
International audienceThree-dimensional (3D) culture systems have been introduced to provide cells w...
The production of hydrogel microspheres (MS) for cell immobilization, maintaining the favorable prop...
Alginate microcapsules have the potential as immune barriers for cell transplantation where the algi...
An improved internal gelation approach is developed to encapsulate single mammalian cells in monodis...
Two novel types of hydrogel microspheres (MS) are presented. First, one-component microspheres (1-co...
Liver tissue engineering has been an emerging field that shows promising advances to regenerate the ...
Alginate hydrogels have been investigated for a broad variety of medical applications. The ability t...
The production of hydrogel micropsheres (MS) presenting physical, mechanical, and biological propert...
Alginate hydrogels can be used to develop a three-dimensional environment in which various cell type...