Formation of graded biomaterials to render shape-morphing scaffolds for 4D biofabrication holds great promise in fabrication of complex structures and the recapitulation of critical dynamics for tissue/organ regeneration. Here we describe a facile generation of an adjustable and robust gradient using a single- or multi-material one-step fabrication strategy for 4D biofabrication. By simply photocrosslinking a mixed solution of a photocrosslinkable polymer macromer, photoinitiator (PI), UV absorber and live cells, a cell-laden gradient hydrogel with pre-programmable deformation can be generated. Gradient formation was demonstrated in various polymers including poly(ethylene glycol) (PEG), alginate, and gelatin derivatives using various UV ab...
A major limitation in tissue engineering is the ability to prepare constructs that can mimic the com...
Recent advances in 3D bioprinting have transformed the tissue engineering landscape by enabling the ...
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
In embryogenesis and morphogenesis, cell clusters or sheets organize into units of increasing comple...
3D bioprinting is usually implemented on flat surfaces, posing serious limitations in the fabricatio...
The most promising strategies in tissue engineering involve the integration of a triad of biomateria...
Direct-Ink Writing (DIW) is a facile form of additive manufacturing that elevates three-dimensional ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
ABSTRACTThe most promising strategies in tissue engineering involve the integration of a triad of bi...
Rapid prototyping techniques have been investigated for the production of biomedical devices that pe...
Conventional additive manufacturing and biofabrication techniques are unable to edit the chemicophys...
Ever since its development, tissue engineering has played a very significant role in the medical are...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
Fueled by research that cells respond strongly to physical queues as well as to molecular signals, w...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
A major limitation in tissue engineering is the ability to prepare constructs that can mimic the com...
Recent advances in 3D bioprinting have transformed the tissue engineering landscape by enabling the ...
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...
In embryogenesis and morphogenesis, cell clusters or sheets organize into units of increasing comple...
3D bioprinting is usually implemented on flat surfaces, posing serious limitations in the fabricatio...
The most promising strategies in tissue engineering involve the integration of a triad of biomateria...
Direct-Ink Writing (DIW) is a facile form of additive manufacturing that elevates three-dimensional ...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
ABSTRACTThe most promising strategies in tissue engineering involve the integration of a triad of bi...
Rapid prototyping techniques have been investigated for the production of biomedical devices that pe...
Conventional additive manufacturing and biofabrication techniques are unable to edit the chemicophys...
Ever since its development, tissue engineering has played a very significant role in the medical are...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
Fueled by research that cells respond strongly to physical queues as well as to molecular signals, w...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
A major limitation in tissue engineering is the ability to prepare constructs that can mimic the com...
Recent advances in 3D bioprinting have transformed the tissue engineering landscape by enabling the ...
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost al...