AbstractThe development of biologically relevant three-dimensional (3D) tissue constructs is essential for the alternative methods of organ transplantation in regenerative medicine, as well as the development of improved drug discovery assays. Recent technological advances in hydrogel microfabrication, such as micromolding, 3D bioprinting, photolithography, and stereolithography, have led to the production of 3D tissue constructs that exhibit biological functions with precise 3D microstructures. Furthermore, microfluidics technology has enabled the development of the perfusion culture of 3D tissue constructs with vascular networks. In this review, we present these hydrogel microfabrication technologies for the in vitro reconstruction and cu...
In recent years, tissue engineering has achieved significant advancements towards the repair of dama...
Ever since its development, tissue engineering has played a very significant role in the medical are...
Abstract Vascularization of 3D models represents a major challenge of tissue engineering and a key p...
The development of biologically relevant three-dimensional (3D) tissue constructs is essential for t...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
Tissue engineers have made great strides in the past decade thanks to the advent of three-dimensiona...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
The ability to bioengineer three-dimensional (3D) tissues is a potentially powerful approach to trea...
In recent years, tissue engineering has achieved significant advancements towards the repair of dama...
Ever since its development, tissue engineering has played a very significant role in the medical are...
Abstract Vascularization of 3D models represents a major challenge of tissue engineering and a key p...
The development of biologically relevant three-dimensional (3D) tissue constructs is essential for t...
Hydrogels are three-dimensional polymer networks with hydrophilic properties. The modifiable propert...
The past a few decades have seen exponential growth in the field of regenerative medicine. What bega...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
Polymeric biomaterials are widely used in a wide range of biomedical applications due to their uniqu...
Tissue engineers have made great strides in the past decade thanks to the advent of three-dimensiona...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
Hydrogel-based artificial scaffolds play a vital role in shifting in vitro models from two-dimension...
The ability to bioengineer three-dimensional (3D) tissues is a potentially powerful approach to trea...
In recent years, tissue engineering has achieved significant advancements towards the repair of dama...
Ever since its development, tissue engineering has played a very significant role in the medical are...
Abstract Vascularization of 3D models represents a major challenge of tissue engineering and a key p...