Three-dimensional (3D) bioprinting promises to be essential in tissue engineering for solving the rising demand for organs and tissues. Some bioprinters are commercially available, but their impact on the field of Tissue engineering (TE) is still limited due to their cost or difficulty to tune. Herein, we present a low-cost easy-to-build printhead for microextrusion-based bioprinting (MEBB) that can be installed in many desktop 3D printers to transform them into 3D bioprinters. We can extrude bioinks with precise control of print temperature between 2-60 degrees C. We validated the versatility of the printhead, by assembling it in three low-cost open-source desktop 3D printers. Multiple units of the printhead can also be easily put together...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The application of 3D printing to biological research has provided the tissue engineering community ...
Inspired from additive manufacturing's success, the structuring of biocompatible materials through b...
Three-dimensional (3D) bioprinting promises to be essential in tissue engineering for solving the ri...
Three-dimensional (3D) printing using a variety of metals and polymers is a driving force in revolut...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
3D bioprinting has become a versatile and powerful method in tissue engineering and regenerative med...
3D bioprinting involves building a layer-by-layer design of an object using biomaterials or even liv...
3D-bioprinting is a promising technology applicable in areas such as regenerative medicine or in vit...
Abstract The application of 3D printing to biological research has provided the tissue engineering c...
Fabricating multiphase biomaterials using bioprinting is expensive, preventing academic institution...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
Gemstone Team TISSUEPatients who experience end-stage organ failure frequently require life-saving t...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
Microextrusion-based bioprinting within a support bath material is an emerging additive manufacturin...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The application of 3D printing to biological research has provided the tissue engineering community ...
Inspired from additive manufacturing's success, the structuring of biocompatible materials through b...
Three-dimensional (3D) bioprinting promises to be essential in tissue engineering for solving the ri...
Three-dimensional (3D) printing using a variety of metals and polymers is a driving force in revolut...
Most of the studies in three-dimensional (3D) bioprinting have been traditionally based on printing ...
3D bioprinting has become a versatile and powerful method in tissue engineering and regenerative med...
3D bioprinting involves building a layer-by-layer design of an object using biomaterials or even liv...
3D-bioprinting is a promising technology applicable in areas such as regenerative medicine or in vit...
Abstract The application of 3D printing to biological research has provided the tissue engineering c...
Fabricating multiphase biomaterials using bioprinting is expensive, preventing academic institution...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
Gemstone Team TISSUEPatients who experience end-stage organ failure frequently require life-saving t...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
Microextrusion-based bioprinting within a support bath material is an emerging additive manufacturin...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The application of 3D printing to biological research has provided the tissue engineering community ...
Inspired from additive manufacturing's success, the structuring of biocompatible materials through b...