Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, biocompatibility, and structural similarity to extracellular matrices. To produce these hydrogels, different manufacturing techniques can be used, including microextrusion 3D printing. Current efforts for hydrogels in tissue engineering are centered on improving bioactivity and mechanical properties by the incorporation of a second biopolymer or bioceramics; and loading these materials with pharmaceutical drugs to promote a better healing process. In this work, the study of the synthesis process of alginate/gelatin hydrogels reinforced with TiO2 and beta-tricalcium phosphate (beta-TCP) and loaded with ibuprofen, its extrusion in a modified 3D...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
Additive biofabrication (3D bioprinting) makes it possible to create scaffolds with precise geometri...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
This study states the preparation of novel ink with potential use for bone and cartilage tissue rest...
Tissue-engineering (TE) is one of the most innovative approaches for tackling many diseases and body...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Three dimensional bioprinter technologies created an availability to use alive cells and molecules t...
The biological scaffolds of tissue engineering are required to have good biocompatibility, matched m...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
Additive biofabrication (3D bioprinting) makes it possible to create scaffolds with precise geometri...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
This study states the preparation of novel ink with potential use for bone and cartilage tissue rest...
Tissue-engineering (TE) is one of the most innovative approaches for tackling many diseases and body...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Three dimensional bioprinter technologies created an availability to use alive cells and molecules t...
The biological scaffolds of tissue engineering are required to have good biocompatibility, matched m...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
Additive biofabrication (3D bioprinting) makes it possible to create scaffolds with precise geometri...