Advancements in additive manufacturing have made it possible to fabricate biologically relevant architectures from a wide variety of materials. Hydrogels have garnered increased attention for the fabrication of muscle tissue engineering constructs due to their resemblance to living tissue and ability to function as cell carriers. However, there is a lack of systematic approaches to screen bioinks based on their inherent properties, such as rheology, printability and cell viability. Furthermore, this study takes the critical first-step for connecting in-process sensor data with construct quality by studying the influence of printing parameters. Alginate-chitosan hydrogels were synthesized and subjected to a systematic rheological analysis. I...
A new method for printing cellularised scaffolds from thermosensitive hydrogels was here proposed. P...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
3D bioprinting technology is considered as a giant advancement towards biomedical applications, nam...
Advancements in additive manufacturing have made it possible to fabricate biologically relevant arc...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
In this study we demonstrated an application of 3D Bioprinting using different commercially availabl...
Skeletal muscle regeneration is one of the major areas of interest in sport medicine as well as trau...
Three-dimensional (3D) bioprinting is a promising technique used to fabricate scaffolds from hydroge...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
Hydrogels are useful materials as scaffolds for tissue engineering applications. Using hydrogels wit...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
In tissue engineering, tissue scaffolds are used as temporary supports to promote regeneration of dy...
A new method for printing cellularised scaffolds from thermosensitive hydrogels was here proposed. P...
A new method for printing cellularised scaffolds from thermosensitive hydrogels was here proposed. P...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
3D bioprinting technology is considered as a giant advancement towards biomedical applications, nam...
Advancements in additive manufacturing have made it possible to fabricate biologically relevant arc...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
In this study we demonstrated an application of 3D Bioprinting using different commercially availabl...
Skeletal muscle regeneration is one of the major areas of interest in sport medicine as well as trau...
Three-dimensional (3D) bioprinting is a promising technique used to fabricate scaffolds from hydroge...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
Hydrogels are useful materials as scaffolds for tissue engineering applications. Using hydrogels wit...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
Robotic dispensing-based 3D bioprinting represents one of the most powerful technologies to develop ...
In tissue engineering, tissue scaffolds are used as temporary supports to promote regeneration of dy...
A new method for printing cellularised scaffolds from thermosensitive hydrogels was here proposed. P...
A new method for printing cellularised scaffolds from thermosensitive hydrogels was here proposed. P...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
3D bioprinting technology is considered as a giant advancement towards biomedical applications, nam...