Abstract Background The worldwide demand for the organ replacement or tissue regeneration is increasing steadily. The advancements in tissue engineering and regenerative medicine have made it possible to regenerate such damaged organs or tissues into functional organ or tissue with the help of 3D bioprinting. The main component of the 3D bioprinting is the bioink, which is crucial for the development of functional organs or tissue structures. The bioinks used in 3D printing technology require so many properties which are vital and need to be considered during the selection. Combination of different methods and enhancements in properties are required to develop more successful bioinks for the 3D printing of organs or tissue structures. Main ...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...
Three-dimensional (3D)-printed in vitro tissue models have been used in various biomedical fields ow...
Remarkable advancement in 3D printing technology in recent years has already transformed many aspect...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Organ transplantation would be the first option for those whose tissues/organs have been extremely i...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Use of materials to activate non-functional or damaged organs and tissues goes back to early ages. T...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
It has been widely perceived that three-dimensional bioprinted synthetic tissues and organ can be a ...
Three-dimensional printing has significant potential as a fabrication method in creating scaffolds f...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...
Three-dimensional (3D)-printed in vitro tissue models have been used in various biomedical fields ow...
Remarkable advancement in 3D printing technology in recent years has already transformed many aspect...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Bioprinting is an emerging technology with various applications in making functional tissue construc...
Organ transplantation would be the first option for those whose tissues/organs have been extremely i...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Use of materials to activate non-functional or damaged organs and tissues goes back to early ages. T...
The fabrication of 3D constructs using 3D bioprinting techniques aims ...
3D printing, an additive manufacturing based technology for precise 3D construction, is currently wi...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
It has been widely perceived that three-dimensional bioprinted synthetic tissues and organ can be a ...
Three-dimensional printing has significant potential as a fabrication method in creating scaffolds f...
Bioprinting offers tremendous potential in the fabrication of functional tissue constructs for repla...
Three-dimensional (3D)-printed in vitro tissue models have been used in various biomedical fields ow...
Remarkable advancement in 3D printing technology in recent years has already transformed many aspect...