International audienceA fragile and non-thixotropic biocompatible low molecular weight gel is printed in 3D structures by a solvent exchange process. The 3D printing process is based on the continuous extrusion of a solution of a small amphiphile molecule, N-heptyl-D-galactonamide, in dimethylsulfoxide, that forms a gel in contact with water. The diffusion of water in the dimethylsulfoxide / N-heptyl-D-galactonamide solution triggers the self-assembly of the molecule into supramolecular fibers and the setting of the ink. The conditions for getting a well-defined pattern and the dimensions of the constructs have been determined. The resulting constructs can be easily dissolved, orienting its application as a sacrificial ink or a temporary su...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Nanogels are hydrogels formed by connecting nanoscopic micelles dispersed in an aqueous medium, whic...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...
International audienceA fragile and non-thixotropic biocompatible low molecular weight gel is printe...
Recently, hydrogels have been utilized as important biomaterials for 3D printing of three dimensiona...
We present a star copolypeptide-based hydrogel ink capable of structural microfabrication using 3D e...
Cellulose is the most abundant natural polymer on earth, which has obtained increasing interest in t...
The development of printable hydrogels with functional responsive crosslinking is vital to new age 3...
Hydrogels prepared from low molecular weight gelators (LMWGs) are formed as a result of hierarchical...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Hydrogels are a promising material for a variety of applications after appropriate functional and st...
International audienceHypothesis Recently, a low molecular weight hydrogel based on a carbohydrate a...
Recent progresses in Tissue Engineering are directed towards the development of technologies able to...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
We present a star copolypeptide-based hydrogel ink capable of structural microfabrication using 3D e...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Nanogels are hydrogels formed by connecting nanoscopic micelles dispersed in an aqueous medium, whic...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...
International audienceA fragile and non-thixotropic biocompatible low molecular weight gel is printe...
Recently, hydrogels have been utilized as important biomaterials for 3D printing of three dimensiona...
We present a star copolypeptide-based hydrogel ink capable of structural microfabrication using 3D e...
Cellulose is the most abundant natural polymer on earth, which has obtained increasing interest in t...
The development of printable hydrogels with functional responsive crosslinking is vital to new age 3...
Hydrogels prepared from low molecular weight gelators (LMWGs) are formed as a result of hierarchical...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Hydrogels are a promising material for a variety of applications after appropriate functional and st...
International audienceHypothesis Recently, a low molecular weight hydrogel based on a carbohydrate a...
Recent progresses in Tissue Engineering are directed towards the development of technologies able to...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
We present a star copolypeptide-based hydrogel ink capable of structural microfabrication using 3D e...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Nanogels are hydrogels formed by connecting nanoscopic micelles dispersed in an aqueous medium, whic...
A 3D printable and highly stretchable tough hydrogel is developed by combining poly(ethylene glycol)...