Extrusion-based 3D bioprinting allows the 3D printing of bioinks, composed of cells and biomaterials, to mimic the complex 3D hierarchical structure of native tissues. Successful 3D bioprinting requires bioinks with specific properties, such as biocompatibility, printability, and biodegradability according to the desired application. In the present work, we aimed at developing a new versatile blend of gelatin methacryloyl-xanthan gum (GelMA-XG) suitable for extrusion-based 3D bioprinting with a straightforward process. To this end, we first optimized the process of gelatin methacryloyl (GelMA) synthesis by investigating the impact of different buffer solutions on the degree of functionalization, swelling degree, and degradation rate. The ad...
Numerous researchers have studied 3D hybrid bioprinting technology, as it appears to be a viable opt...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
A major challenge in three-dimensional (3D) bioprinting is the limited number of bioinks that fulfil...
The printability of a photocross-linkable methacrylated gelatin (GelMA) bioink with an extrusion-bas...
Photocrosslinkable bioinks have gained interest in 3D bioprinting due to their versatility and ease ...
In recent years, bioprinting has attracted much attention as a potential tool for generating complex...
In 2012, Singapore had 456 patients on the kidney transplantation waiting list and the shortage of o...
AbstractDeveloping biomaterial formulations with specific biochemical characteristics and physical p...
In the last decade, 3D-bioprinting has attracted attention due to its capability to produce complex ...
Bioink-formulations based on gelatin methacrylate combined with oxidized cellulose nanofibrils are e...
3D bioprinting involves the combination of 3D printing technologies with cells, growth factors and b...
3D bioprinting has been increasingly employed in skin tissue engineering for manufacturing living co...
Methacrylated gelatin (GelMA) has been widely used as a tissue-engineered scaffold material, but onl...
peer reviewedMethacryloyl gelatin (GelMA) is a versatile material for bioprinting because of its tun...
Essential features of well-designed materials intended for 3D bioprinting via microextrusion are the...
Numerous researchers have studied 3D hybrid bioprinting technology, as it appears to be a viable opt...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
A major challenge in three-dimensional (3D) bioprinting is the limited number of bioinks that fulfil...
The printability of a photocross-linkable methacrylated gelatin (GelMA) bioink with an extrusion-bas...
Photocrosslinkable bioinks have gained interest in 3D bioprinting due to their versatility and ease ...
In recent years, bioprinting has attracted much attention as a potential tool for generating complex...
In 2012, Singapore had 456 patients on the kidney transplantation waiting list and the shortage of o...
AbstractDeveloping biomaterial formulations with specific biochemical characteristics and physical p...
In the last decade, 3D-bioprinting has attracted attention due to its capability to produce complex ...
Bioink-formulations based on gelatin methacrylate combined with oxidized cellulose nanofibrils are e...
3D bioprinting involves the combination of 3D printing technologies with cells, growth factors and b...
3D bioprinting has been increasingly employed in skin tissue engineering for manufacturing living co...
Methacrylated gelatin (GelMA) has been widely used as a tissue-engineered scaffold material, but onl...
peer reviewedMethacryloyl gelatin (GelMA) is a versatile material for bioprinting because of its tun...
Essential features of well-designed materials intended for 3D bioprinting via microextrusion are the...
Numerous researchers have studied 3D hybrid bioprinting technology, as it appears to be a viable opt...
Gelatin Methacrylate (GelMA) hydrogels have the innate capability of cell compatibly, but performs p...
A major challenge in three-dimensional (3D) bioprinting is the limited number of bioinks that fulfil...