Reconstructing human organs is one of the ultimate goals of the medical industry. Organ printing utilizing three-dimensional cell printing technology to fabricate artificial living organ equivalents has shed light on the advancement of this field into a new era. Among three currently applied techniques (inkjet, laser-assisted, and extrusion-based), extrusion-based cell printing (ECP) has evoked the majority of interest due to its low cost, wide range of applicable materials, and ease of spatial and depositional controllability. Major challenges in organ reconstruction include difficulties in precisely fabricating complex structural features, creating perfusable and functional vasculatures, and mimicking biophysical and biochemical character...
Three-dimensional (3D) bioprinting strategies use computer-aided processes to enable automated simul...
Body organs such as kidneys, livers and hearts are incredibly complex tissues. Each is made up of ma...
The lack of in vitro tissue and organ models capable of mimicking human physiology severely hinders ...
Recently, regenerative medicine utilizing tissue manufacturing has been a creative topic of study, o...
Three-dimensional (3D) tissue/organ printing is a major aspect of recent innovation in the field of ...
The technical advances of three-dimensional (3D) printing in the field of tissue engineering have en...
AbstractThree-dimensional (3D) printing of human tissues and organ has been an exciting research top...
Three-dimensional (3D) bioprinting is a rapidly growing technology that has been widely used in tiss...
Next generation engineered tissue constructs with complex and ordered architectures aim to better mi...
Organ printing techniques offer the potential to produce living 3D tissue constructs to repair or re...
Organ printing is the layer-by-layer bottom-up fabrication of complex cellular organization of nati...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
The field of organ transplant faces several shortcomings despite the countless lives that were saved...
The typical scaffold-based tissue engineering approach, though promising and still considered as a p...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Three-dimensional (3D) bioprinting strategies use computer-aided processes to enable automated simul...
Body organs such as kidneys, livers and hearts are incredibly complex tissues. Each is made up of ma...
The lack of in vitro tissue and organ models capable of mimicking human physiology severely hinders ...
Recently, regenerative medicine utilizing tissue manufacturing has been a creative topic of study, o...
Three-dimensional (3D) tissue/organ printing is a major aspect of recent innovation in the field of ...
The technical advances of three-dimensional (3D) printing in the field of tissue engineering have en...
AbstractThree-dimensional (3D) printing of human tissues and organ has been an exciting research top...
Three-dimensional (3D) bioprinting is a rapidly growing technology that has been widely used in tiss...
Next generation engineered tissue constructs with complex and ordered architectures aim to better mi...
Organ printing techniques offer the potential to produce living 3D tissue constructs to repair or re...
Organ printing is the layer-by-layer bottom-up fabrication of complex cellular organization of nati...
Abstract: Organ implantation is a significant treatment for a number of end-stage organ disorders. B...
The field of organ transplant faces several shortcomings despite the countless lives that were saved...
The typical scaffold-based tissue engineering approach, though promising and still considered as a p...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Three-dimensional (3D) bioprinting strategies use computer-aided processes to enable automated simul...
Body organs such as kidneys, livers and hearts are incredibly complex tissues. Each is made up of ma...
The lack of in vitro tissue and organ models capable of mimicking human physiology severely hinders ...