Building human tissues via 3D cell printing technology has received particular attention due to its process flexibility and versatility. This technology enables the recapitulation of unique features of human tissues and the all-in-one manufacturing process through the design of smart and advanced biomaterials and proper polymerization techniques. For the optimal engineering of tissues, a higher-order assembly of physiological components, including cells, biomaterials, and biomolecules, should meet the critical requirements for tissue morphogenesis and vascularization. The convergence of 3D cell printing with a microfluidic approach has led to a significant leap in the vascularization of engineering tissues. In addition, recent cutting-edge ...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
The impact of additive manufacturing in our lives has been increasing constantly. One of the frontie...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
Current tissue engineering techniques have various drawbacks: they often incorporate uncontrolled an...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The development of artificial tissue/organs with the functional maturity of their native equivalents...
Current tissue engineering techniques have various drawbacks: they often incorporate uncontrolled an...
3D bioprinting has the potential to provide a unified framework for the manufacturing of tissue mode...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
The impact of additive manufacturing in our lives has been increasing constantly. One of the frontie...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
Numerous microfabrication approaches have been developed to recapitulate morphologically and functio...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
Current tissue engineering techniques have various drawbacks: they often incorporate uncontrolled an...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The development of artificial tissue/organs with the functional maturity of their native equivalents...
Current tissue engineering techniques have various drawbacks: they often incorporate uncontrolled an...
3D bioprinting has the potential to provide a unified framework for the manufacturing of tissue mode...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
The impact of additive manufacturing in our lives has been increasing constantly. One of the frontie...