The performance of artificial nerve guidance conduits (NGC) in peripheral nerve regeneration can be improved by providing structures with multiple small channels instead of a single wide lumen. 3D-printing is a strategy to access such multi-channeled structures in a defined and reproducible way. This study explores extrusion-based 3D-printing of two-component hydrogels from a single cartridge printhead into multi-channeled structures under aseptic conditions. The gels are based on a platform of synthetic, anhydride-containing oligomers for cross-linking of gelatinous peptides. Stable constructs with continuous small channels and a variety of footprints and sizes were successfully generated from formulations containing either an organic or i...
International audienceAn unprecedented generic system allowing the 3D printing of peptide-functional...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Tissue engineering scaffolds for nerve regeneration, or artificial nerve conduits, are particularly ...
Toward a new generation of improved nerve guidance conduits (NGCs), novel biomaterials are required ...
Nerve guidance conduits (NGCs) are an essential solution for peripheral nerve repair and regeneratio...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Nerve conduits provide an advanced tool for repairing the injured peripheral nerve that often causes...
The human nervous system lacks an inherent ability to regenerate its components upon damage or disea...
Toward the next generation of nerve guidance conduits (NGCs), novel biomaterials and functionalizati...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
In recent years, rapid prototyping (RP) technologies initially developed to create prototypes prior ...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
The development of printable hydrogels with functional responsive crosslinking is vital to new age 3...
In recent years, rapid prototyping (RP) technologies initially developed to create prototypes prior ...
Advancement in 3D bioprinting has enabled this technology to be used in various biomedical applicati...
International audienceAn unprecedented generic system allowing the 3D printing of peptide-functional...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Tissue engineering scaffolds for nerve regeneration, or artificial nerve conduits, are particularly ...
Toward a new generation of improved nerve guidance conduits (NGCs), novel biomaterials are required ...
Nerve guidance conduits (NGCs) are an essential solution for peripheral nerve repair and regeneratio...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Nerve conduits provide an advanced tool for repairing the injured peripheral nerve that often causes...
The human nervous system lacks an inherent ability to regenerate its components upon damage or disea...
Toward the next generation of nerve guidance conduits (NGCs), novel biomaterials and functionalizati...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
In recent years, rapid prototyping (RP) technologies initially developed to create prototypes prior ...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
The development of printable hydrogels with functional responsive crosslinking is vital to new age 3...
In recent years, rapid prototyping (RP) technologies initially developed to create prototypes prior ...
Advancement in 3D bioprinting has enabled this technology to be used in various biomedical applicati...
International audienceAn unprecedented generic system allowing the 3D printing of peptide-functional...
There is a current need for the development of robust smart materials for a variety of medical, cons...
Tissue engineering scaffolds for nerve regeneration, or artificial nerve conduits, are particularly ...