Leveraging 4D biofabrication for engineering biomimetic living constructs is rapidly emerging as a valuable strategy for recapitulating native tissue dynamics, via on-demand stimuli, or in a naturally evolving mode. Carefully selecting smart materials with suitable responsiveness and cell-supporting functionalities is crucial to take full operational advantage of this next-generation technology. Recent endeavors combining naturally available polymers or hybrid smart materials improve the potential to manufacture volumetrically defined, cell-rich constructs that may display stimuli–responsive properties, shape memory/shape morphing features, and/or dynamic motion in time. In this review, natural origin biomaterials and the stimuli that can b...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
Leveraging 4D biofabrication for engineering biomimetic living constructs is rapidly emerging as a v...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
4D bioprinting is the next-generation additive manufacturing-based fabrication platform employed to ...
Progress in materials science has developed the boundaries of additive manufacturing (AM) technology...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
Leveraging 4D biofabrication for engineering biomimetic living constructs is rapidly emerging as a v...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
Nature's material systems during evolution have developed the ability to respond and adapt to enviro...
4D bioprinting is the next-generation additive manufacturing-based fabrication platform employed to ...
Progress in materials science has developed the boundaries of additive manufacturing (AM) technology...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The applications of tissue engineered constructs have witnessed great advances in the last few years...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
The objective of this study was to four-dimensional (4D) print novel biomimetic gradient tissue scaf...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...
3D Bioprinting (3DBP) technologies open many possibilities for the generation of highly complex cell...