There is an increasing medical need for the development of new materials that could replace damaged organs, improve healing of critical wounds or provide the environment required for the formation of a new healthy tissue. The three-dimensional (3D) printing approach has emerged to overcome several of the major deficiencies of tissue engineering. The use of Cannabis sativa as a therapy for some diseases has spread throughout the world thanks to its benefits for patients. In this work, we developed a bioink made with gelatin and alginate that was able to be printed using an extrusion 3D bioprinter. The scaffolds obtained were lyophilized, characterized and the swelling was assessed. In addition, the scaffolds were loaded with Cannabis sativa ...
Acute wounds are a common health problem, with millions of people affected and decreased granulation...
The current engineered skin substitutes for diabetic foot ulcer treatment lack effective host integr...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
There is an increasing medical need for the development of new materials that could replace damaged ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Tissue engineering is the design and fabrication of artificial tissue constructs for medical treatme...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
Three dimensional bioprinter technologies created an availability to use alive cells and molecules t...
This study explores the use of gelatin as a biomaterial for 3D printing of neural scaffolds, with a ...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Advancement in 3D bioprinting has enabled this technology to be used in various biomedical applicati...
Organ transplantation would be the first option for those whose tissues/organs have been extremely i...
Gelatin has excellent biological properties, but its poor physical properties are a major obstacle t...
Fabrication of three-dimensional (3D) scaffolds using natural biomaterials introduces valuable oppor...
Acute wounds are a common health problem, with millions of people affected and decreased granulation...
The current engineered skin substitutes for diabetic foot ulcer treatment lack effective host integr...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...
There is an increasing medical need for the development of new materials that could replace damaged ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Tissue engineering is the design and fabrication of artificial tissue constructs for medical treatme...
Volumetric muscle loss (VML), which involves the loss of a substantial portion of muscle tissue, is ...
Three dimensional bioprinter technologies created an availability to use alive cells and molecules t...
This study explores the use of gelatin as a biomaterial for 3D printing of neural scaffolds, with a ...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Advancement in 3D bioprinting has enabled this technology to be used in various biomedical applicati...
Organ transplantation would be the first option for those whose tissues/organs have been extremely i...
Gelatin has excellent biological properties, but its poor physical properties are a major obstacle t...
Fabrication of three-dimensional (3D) scaffolds using natural biomaterials introduces valuable oppor...
Acute wounds are a common health problem, with millions of people affected and decreased granulation...
The current engineered skin substitutes for diabetic foot ulcer treatment lack effective host integr...
Due to the fast pace advancements in 3D printing technologies, it is now possible to bring to life t...