Three-dimensional (3D) pigmented human skin constructs have been fabricated using a 3D bioprinting approach. The 3D pigmented human skin constructs are obtained from using three different types of skin cells (keratinocytes, melanocytes and fibroblasts from three different skin donors) and they exhibit similar constitutive pigmentation (pale pigmentation) as the skin donors. A two-step drop-on-demand bioprinting strategy facilitates the deposition of cell droplets to emulate the epidermal melanin units (pre-defined patterning of keratinocytes and melanocytes at the desired positions) and manipulation of the microenvironment to fabricate 3D biomimetic hierarchical porous structures found in native skin tissue. The 3D bioprinted pigmented skin...
Three-dimensional (3D) bioprinting is considered as a novel approach in biofabricating cell-laden co...
Models of skin diseases, such as psoriasis and scleroderma, must accurately recapitulate the complex...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Three-dimensional (3D) pigmented human skin constructs have been fabricated using a 3D bioprinting a...
Recently, bioprinting technology has gained attentions as a viable option to overcome current limita...
Skin grafts are used in a variety of medical procedures including burn treatment, skin cancer remova...
Skin provides protection against external agents and plays an essential role in maintaining the body...
The high discrepancies between adverse effects of chemicals in animal and human have led to the dev...
In the last decade, the advent of 3D printing for tissue engineering and regenerative medicine has e...
Although skin cell-printing has exhibited promises for fabrication of functional skin equivalents, e...
Based on the 3D printing technologies and the concepts developed in tissue engineering during the la...
Healthy skin is an essential requirement to lead a healthy life. Due to burn, non-healing cuts, acci...
Fabrication of human skin equivalents is one of the challenging issues in many areas, including biol...
In recent years, there has been intensive research to develop skin substitutes to replace the curre...
Significant progress has been made over the past few decades in the development of in vitro-engineer...
Three-dimensional (3D) bioprinting is considered as a novel approach in biofabricating cell-laden co...
Models of skin diseases, such as psoriasis and scleroderma, must accurately recapitulate the complex...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...
Three-dimensional (3D) pigmented human skin constructs have been fabricated using a 3D bioprinting a...
Recently, bioprinting technology has gained attentions as a viable option to overcome current limita...
Skin grafts are used in a variety of medical procedures including burn treatment, skin cancer remova...
Skin provides protection against external agents and plays an essential role in maintaining the body...
The high discrepancies between adverse effects of chemicals in animal and human have led to the dev...
In the last decade, the advent of 3D printing for tissue engineering and regenerative medicine has e...
Although skin cell-printing has exhibited promises for fabrication of functional skin equivalents, e...
Based on the 3D printing technologies and the concepts developed in tissue engineering during the la...
Healthy skin is an essential requirement to lead a healthy life. Due to burn, non-healing cuts, acci...
Fabrication of human skin equivalents is one of the challenging issues in many areas, including biol...
In recent years, there has been intensive research to develop skin substitutes to replace the curre...
Significant progress has been made over the past few decades in the development of in vitro-engineer...
Three-dimensional (3D) bioprinting is considered as a novel approach in biofabricating cell-laden co...
Models of skin diseases, such as psoriasis and scleroderma, must accurately recapitulate the complex...
The most remarkable attractiveness of tissue engineering technology relies on its capability of rege...