4D printing of swellable/shrinkable hydrogels has been viewed as an appealing approach for fabricating dynamic structures for various biomedical applications. However, 4D printing of precise hydrogel structures is still highly challenging due to the relatively poor printability of hydrogels and high surface roughness of printed patterns, when micro extrusion-based 3D printers are used. In this study, a highly printable and shape morphing hydrogel was investigated for 4D printing by blending alginate (Alg) and methylcellulose (MC). The optimized Alg/MC hydrogel exhibited excellent rheological properties, extrudability and shape fidelity of printed structures. The printable Alg/MC hydrogel was 4D printed into a series of patterned 2D architec...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
The limitations and challenges possessed in static 3D materials necessitated a new era of 4D shape-m...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
4D printed objects are 3D printed structures whose shape, property, and functionality are able to se...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
The limitations and challenges possessed in static 3D materials necessitated a new era of 4D shape-m...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
4D printed objects are 3D printed structures whose shape, property, and functionality are able to se...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
Methylcellulose-based (MC) hydrogels are optimal substrates to obtain cell sheets for regenerative m...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
3D printing technology has been widely applied to rapid design and fabrication in recent years. Hydr...
Hydrogels combined with complex 3D shapes and robust mechanical properties are extremely desired sof...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...