Bone tissue engineering (BTE) is an interdisciplinary field that aims to create three-dimensional living scaffolds to substitute or study bone tissue. In the last decades, bioprinting techniques have almost replaced conventional techniques (e.g. freeze drying and gas foaming) in the fabrication of BTE scaffolds, due to their intrinsic capability to finely control architecture, and embed cells and bioactive molecules. In this work, we analyzed bioprinting technologies used in BTE, reporting the most significant literature case studies, and focusing also on in-vitro bone models. Finally, we introduced new and innovative trends, including in-situ bioprinting and four-dimensional printing, towards which bioprinting research is moving
Regenerating large bone defects remains a significant clinical challenge, motivating increased inter...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Three-dimensional (3D) bioprinting of cell-laden biomaterials is used to fabricate constructs that c...
Three-dimensional bioprinting can prove to be a promising technology for bone tissue regeneration as...
Advances in bioprinting have enabled the fabrication of complex tissue constructs with high speed an...
3D printing (3DP) processes have evolved from simple prototyping for visual inspection purposes to f...
Bioprinting techniques have been flourishing in the field of biofabrication with pronounced and expo...
The skeletal system comprises multiple tissues which converge in the formation of complex biological...
The skeletal system comprises multiple tissues which converge in the formation of complex biological...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Regenerating large bone defects remains a significant clinical challenge, motivating increased inter...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Three-dimensional (3D) bioprinting of cell-laden biomaterials is used to fabricate constructs that c...
Three-dimensional bioprinting can prove to be a promising technology for bone tissue regeneration as...
Advances in bioprinting have enabled the fabrication of complex tissue constructs with high speed an...
3D printing (3DP) processes have evolved from simple prototyping for visual inspection purposes to f...
Bioprinting techniques have been flourishing in the field of biofabrication with pronounced and expo...
The skeletal system comprises multiple tissues which converge in the formation of complex biological...
The skeletal system comprises multiple tissues which converge in the formation of complex biological...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The field of tissue engineering has progressed tremendously over the past few decades in its ability...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Regenerating large bone defects remains a significant clinical challenge, motivating increased inter...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue engineering an...