International audienceRegenerative medicine is evolving fast, in particular since the potential of stem cells has been assessed. This evolution process requires the development of new tools capable of meeting the needs of this field of investigation. Cell delivery is a crucial issue for the success of regenerative medicine as cells should be easily seeded, expanded and introduced on site with maintenance of their phenotype and their capability to develop into a neo tissue/organ. On a material standpoint, cell delivery system should meet the preceding needs but also permit an easy introduction at the site and remain without hampering tissue development. As is shown in this review, polysaccharide hydrogels, and in particular in situ forming o...
This presentation intends to present polysaccharidebased matrices for regenerative medicine and as d...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...
International audienceRepairing or replacing damaged human tissues has been the ambitious goal of re...
International audienceRegenerative medicine is evolving fast, in particular since the potential of s...
Stem cell-based therapy appears as a promising strategy to induce regeneration of damaged and diseas...
International audienceStem cell-based therapy is a promising approach for the treatment of a myriad ...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
AbstractThe encapsulation of stem cells in a hydrogel substrate provides a promising future in biome...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
The aim of this work is to design a natural polymers-based hydrogel for cell encapsulation of both m...
Tissue engineering intends to create functionalized tissues/organs for regenerating the injured part...
Annually, millions of patients suffer from irreversible injury owing to the loss or failure of an or...
Hydrogels as artificial biomaterial scaffolds offer a much favoured 3D microenvironment for tissue e...
Stem cells are a unique class of cells residing in the body which can replicate indefinitely and dev...
This presentation intends to present polysaccharidebased matrices for regenerative medicine and as d...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...
International audienceRepairing or replacing damaged human tissues has been the ambitious goal of re...
International audienceRegenerative medicine is evolving fast, in particular since the potential of s...
Stem cell-based therapy appears as a promising strategy to induce regeneration of damaged and diseas...
International audienceStem cell-based therapy is a promising approach for the treatment of a myriad ...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
AbstractThe encapsulation of stem cells in a hydrogel substrate provides a promising future in biome...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
The aim of this work is to design a natural polymers-based hydrogel for cell encapsulation of both m...
Tissue engineering intends to create functionalized tissues/organs for regenerating the injured part...
Annually, millions of patients suffer from irreversible injury owing to the loss or failure of an or...
Hydrogels as artificial biomaterial scaffolds offer a much favoured 3D microenvironment for tissue e...
Stem cells are a unique class of cells residing in the body which can replicate indefinitely and dev...
This presentation intends to present polysaccharidebased matrices for regenerative medicine and as d...
Hydrogels are three-dimensional, hydrophilic, polymeric networks, with chemical or physical cross-li...
International audienceRepairing or replacing damaged human tissues has been the ambitious goal of re...