Bioprinting has become an important tool for fabricating regenerative implants and in vitro cell culture platforms. However, until today, extrusion-based bioprinting processes are limited to resolutions of hundreds of micrometers, which hamper the reproduction of intrinsic functions and morphologies of living tissues. This study describes novel hydrogel-based bioinks for cell electrowriting (CEW) of well-organized cell-laden fiber structures with diameters ranging from 5 to 40 μm. Two novel photoresponsive hydrogel bioinks, that is, based on gelatin and silk fibroin, which display distinctly different gelation chemistries, are introduced. The rapid photomediated cross-linking mechanisms, electrical conductivity, and viscosity of these two e...
Three-dimensional (3D) bioprinting offers a great alternative to traditional techniques in tissue re...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...
Bioprinting has become an important tool for fabricating regenerative implants and in vitro cell cul...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
Bioprinting is a process based on additive manufacturing from materials containing living cells. The...
3D bioprinting holds great promise in the field of regenerative medicine as it can create complex st...
A major challenge in three-dimensional (3D) bioprinting is the limited number of bioinks that fulfil...
Two-photon polymerization (2PP) is a lithography-based 3D printing method allowing the fabrication o...
In living tissues, cells express their functions following complex signals from their surrounding mi...
Three-dimensional (3D) bioprinting offers a great alternative to traditional techniques in tissue re...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...
Bioprinting has become an important tool for fabricating regenerative implants and in vitro cell cul...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
Bioprinting is a process based on additive manufacturing from materials containing living cells. The...
3D bioprinting holds great promise in the field of regenerative medicine as it can create complex st...
A major challenge in three-dimensional (3D) bioprinting is the limited number of bioinks that fulfil...
Two-photon polymerization (2PP) is a lithography-based 3D printing method allowing the fabrication o...
In living tissues, cells express their functions following complex signals from their surrounding mi...
Three-dimensional (3D) bioprinting offers a great alternative to traditional techniques in tissue re...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...