The ability to precisely control the properties of natural polymers and fabricate three-dimensional (3D) structures is critical for biomedical applications. In this work, we report the printing of complex 3D structures made of soft polysaccharide (chitosan) inks directly in air and at room temperature. We perform a comprehensive characterization of the 3D printing process by analyzing the effect of ink properties (i.e., rheological properties and solvent evaporation) and process-related printing parameters (i.e., nozzle diameter, robot velocity, and applied pressure). The effects of the neutralization step on the hydrogel formation and their mechanical properties are also investigated. Solvent evaporation tests show that the chitosan ink pr...
In this paper, a novel hybrid biomaterial ink consisting of two water-soluble polymers is investigat...
Hydrogel materials are being investigated for application as scaffolds in tissue engineering owing t...
3D biomaterial manufacturing strategies show an extraordinary driving force for the development of i...
Three-dimensional (3D) printing represents a suitable technology for the development of biomimetic s...
A major challenge in three-dimensional (3D) printing of hydrogels is the fabrication of stable const...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
Chitosan-pectin hydrogels were prepared, and their rheological properties were assessed in order to ...
The augmented demand for medical devices devoted to tissue regeneration and possessing a controlled ...
Chitosan-pectin hydrogels were prepared, and their rheological properties were assessed in order to ...
International audienceBone substitute fabrication is of interest to meet the worldwide incidence of ...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Chitosan (CS) has gained particular attention in biomedical applications due to its biocompatibility...
Hydrogels are a class of hydrated and compliant polymer materials that display a variety of desirabl...
Recently, various innovative technologies have been developed for the enhanced delivery of biologics...
In this paper, a novel hybrid biomaterial ink consisting of two water-soluble polymers is investigat...
Hydrogel materials are being investigated for application as scaffolds in tissue engineering owing t...
3D biomaterial manufacturing strategies show an extraordinary driving force for the development of i...
Three-dimensional (3D) printing represents a suitable technology for the development of biomimetic s...
A major challenge in three-dimensional (3D) printing of hydrogels is the fabrication of stable const...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
Chitosan-pectin hydrogels were prepared, and their rheological properties were assessed in order to ...
The augmented demand for medical devices devoted to tissue regeneration and possessing a controlled ...
Chitosan-pectin hydrogels were prepared, and their rheological properties were assessed in order to ...
International audienceBone substitute fabrication is of interest to meet the worldwide incidence of ...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Chitosan (CS) has gained particular attention in biomedical applications due to its biocompatibility...
Hydrogels are a class of hydrated and compliant polymer materials that display a variety of desirabl...
Recently, various innovative technologies have been developed for the enhanced delivery of biologics...
In this paper, a novel hybrid biomaterial ink consisting of two water-soluble polymers is investigat...
Hydrogel materials are being investigated for application as scaffolds in tissue engineering owing t...
3D biomaterial manufacturing strategies show an extraordinary driving force for the development of i...