Hydrogel-based bio-inks have recently attracted more attention for 3D printing applications in tissue engineering due to their remarkable intrinsic properties, such as a cell supporting environment. However, their usually weak mechanical properties lead to poor printability and low stability of the obtained structures. To obtain good shape fidelity, current approaches based on extrusion printing use high viscosity solutions, which can compromise cell viability. This paper presents a novel bio-printing methodology based on a dual-syringe system with a static mixing tool that allows in situ crosslinking of a two-component hydrogel-based ink in the presence of living cells. The reactive hydrogel system consists of carboxymethyl chitosan (CMCh)...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
The development of printable biomaterial inks is critical to the application of 3D printing in biome...
Hydrogel-based bio-inks have recently attracted more attention for 3D printing applications in tissu...
Tissue regeneration using in-vitro scaffold becomes a vital mean to mimic the in-vivo counterpart du...
The fabrication of intricate and long-term stable 3D polymeric scaffolds by a 3D printing technique ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Biocompatible hydrogel inks with shear-thinning, appropriate yield strength, and fast self-healing a...
Three-dimensional (3D) printing is well acknowledged to constitute an important technology in tissue...
Biological printing (bio-printing) is a process used by tissue engineers to efficiently produce livi...
© 2020 Wiley-VCH GmbH 3D printing is now popular in tissue engineering as it provides a facile route...
Biological printing (bioprinting) is a process used by tissue engineers to efficiently produce livin...
A multimaterial bio-ink method using polyethylene glycol crosslinking is presented for expanding the...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
The development of printable biomaterial inks is critical to the application of 3D printing in biome...
Hydrogel-based bio-inks have recently attracted more attention for 3D printing applications in tissu...
Tissue regeneration using in-vitro scaffold becomes a vital mean to mimic the in-vivo counterpart du...
The fabrication of intricate and long-term stable 3D polymeric scaffolds by a 3D printing technique ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Biocompatible hydrogel inks with shear-thinning, appropriate yield strength, and fast self-healing a...
Three-dimensional (3D) printing is well acknowledged to constitute an important technology in tissue...
Biological printing (bio-printing) is a process used by tissue engineers to efficiently produce livi...
© 2020 Wiley-VCH GmbH 3D printing is now popular in tissue engineering as it provides a facile route...
Biological printing (bioprinting) is a process used by tissue engineers to efficiently produce livin...
A multimaterial bio-ink method using polyethylene glycol crosslinking is presented for expanding the...
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
The development of printable biomaterial inks is critical to the application of 3D printing in biome...