Skin and skin appendages are vulnerable to injury, requiring rapidly reliable regeneration methods. In recent years, 3D bioprinting has shown potential for wound repair and regeneration. 3D bioprinting can be customized for skin shape with cells and other materials distributed precisely, achieving rapid and reliable production of bionic skin substitutes, therefore, meeting clinical and industrial requirements. Additionally, it has excellent performance with high resolution, flexibility, reproducibility, and high throughput, showing great potential for the fabrication of tissue-engineered skin. This review introduces the common techniques of 3D bioprinting and their application in skin tissue engineering, focusing on the latest research prog...
When it comes to tissue engineering, 3D printing is a crucial technique for creating intricate const...
Significant progress has been made over the past few decades in the development of in vitro-engineer...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Recently, bioprinting technology has gained attentions as a viable option to overcome current limita...
Skin provides protection against external agents and plays an essential role in maintaining the body...
Skin tissue engineering and regeneration aim at repairing defective skin injuries and progress in wo...
Healthy skin is an essential requirement to lead a healthy life. Due to burn, non-healing cuts, acci...
In the last decade, the advent of 3D printing for tissue engineering and regenerative medicine has e...
Based on the 3D printing technologies and the concepts developed in tissue engineering during the la...
Significance: Skin tissue damage is a major challenge and a burden on healthcare systems, from burns...
3D printing is a modern technique driving major advances in many areas like engineering, art, and me...
Abstract Extensive burns and full-thickness skin wounds are difficult to repair. Autologous split-th...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
Advances in three-dimensional (3D) printing have increased feasibility towards the synthesis of livi...
When it comes to tissue engineering, 3D printing is a crucial technique for creating intricate const...
Significant progress has been made over the past few decades in the development of in vitro-engineer...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...
Recently, bioprinting technology has gained attentions as a viable option to overcome current limita...
Skin provides protection against external agents and plays an essential role in maintaining the body...
Skin tissue engineering and regeneration aim at repairing defective skin injuries and progress in wo...
Healthy skin is an essential requirement to lead a healthy life. Due to burn, non-healing cuts, acci...
In the last decade, the advent of 3D printing for tissue engineering and regenerative medicine has e...
Based on the 3D printing technologies and the concepts developed in tissue engineering during the la...
Significance: Skin tissue damage is a major challenge and a burden on healthcare systems, from burns...
3D printing is a modern technique driving major advances in many areas like engineering, art, and me...
Abstract Extensive burns and full-thickness skin wounds are difficult to repair. Autologous split-th...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
Advances in three-dimensional (3D) printing have increased feasibility towards the synthesis of livi...
When it comes to tissue engineering, 3D printing is a crucial technique for creating intricate const...
Significant progress has been made over the past few decades in the development of in vitro-engineer...
Three-dimensional (3D) bioprinting technology has attracted a great deal of interest because it can ...