Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physiological responses of real organs, in order to test drugs by precisely manipulating the cells and their microenvironments. To achieve this, the artificial organs should to be microfabricated with an extracellular matrix (ECM) and various types of cells, and should recapitulate morphogenesis, cell differentiation, and functions according to the native organ. A promising strategy is 3D printing, which precisely controls the spatial distribution and layer-by-layer assembly of cells, ECMs, and other biomaterials. Owing to this unique advantage, integration of 3D printing into organ-on-a-chip engineering can facilitate the creation of micro-organs...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
Organ-on-a-chip (OOC) platforms recapitulate human in vivo-like conditions more realistically compar...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physi...
Bioprinting technology is the most advanced technology for producing biomimetic cellular constructs....
Multimaterial bioprinting technologies offer promising avenues to create mini-organ models with enha...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
Organs-on-chips (OoCs) are microfluidic devices that contain bioengineered tissues or parts of natur...
We guide the use of organ-on-chip technology in tissue engineering applications. Organ-on-chip techn...
The development of artificial tissue/organs with the functional maturity of their native equivalents...
Body organs such as kidneys, livers and hearts are incredibly complex tissues. Each is made up of ma...
The technical advances of three-dimensional (3D) printing in the field of tissue engineering have en...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Three-dimensional (3D) tissue/organ printing is a major aspect of recent innovation in the field of ...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
Organ-on-a-chip (OOC) platforms recapitulate human in vivo-like conditions more realistically compar...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...
Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physi...
Bioprinting technology is the most advanced technology for producing biomimetic cellular constructs....
Multimaterial bioprinting technologies offer promising avenues to create mini-organ models with enha...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
Organs-on-chips (OoCs) are microfluidic devices that contain bioengineered tissues or parts of natur...
We guide the use of organ-on-chip technology in tissue engineering applications. Organ-on-chip techn...
The development of artificial tissue/organs with the functional maturity of their native equivalents...
Body organs such as kidneys, livers and hearts are incredibly complex tissues. Each is made up of ma...
The technical advances of three-dimensional (3D) printing in the field of tissue engineering have en...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
Three-dimensional (3D) tissue/organ printing is a major aspect of recent innovation in the field of ...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
Organ-on-a-chip (OOC) platforms recapitulate human in vivo-like conditions more realistically compar...
Regenerative medicine and tissue engineering have seen unprecedented growth in the past decade, driv...