Three-dimensional printing has significant potential as a fabrication method in creating scaffolds for tissue engineering. The applications of 3D printing in the field of regenerative medicine and tissue engineering are limited by the variety of biomaterials that can be used in this technology. Many researchers have developed novel biomaterials and compositions to enable their use in 3D printing methods. The advantages of fabricating scaffolds using 3D printing are numerous, including the ability to create complex geometries, porosities, co-culture of multiple cells, and incorporate growth factors. In this review, recently-developed biomaterials for different tissues are discussed. Biomaterials used in 3D printing are categorized into ceram...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Three-dimensional (3D) printing provides an avenue for efficient, automatic, and repeatable fabricat...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The success of an implant depends on the type of biomaterial used for its fabrication. An ideal impl...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Custom-designed biomedical polymer materials can be fabricated rapidly and precisely by 3-dimensiona...
Abstract Background The worldwide demand for the organ replacement or tissue regeneration is increas...
When it comes to tissue engineering, 3D printing is a crucial technique for creating intricate const...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
Three-dimensional (3D) printing has demonstrated its great potential in producing functional scaffol...
3D printing technology has recently gained substantial interest for potential applications in tissue...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
Donor shortages for organ transplantations are a major clinical challenge worldwide. Potential risks...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Three-dimensional (3D) printing provides an avenue for efficient, automatic, and repeatable fabricat...
Building human tissues via 3D cell printing technology has received particular attention due to its ...
The success of an implant depends on the type of biomaterial used for its fabrication. An ideal impl...
The fast-developing field of 3D bio-printing has been extensively used to improve the usability and ...
Recent advances in bioprinting technology have been used to precisely dispense cell-laden biomateria...
Custom-designed biomedical polymer materials can be fabricated rapidly and precisely by 3-dimensiona...
Abstract Background The worldwide demand for the organ replacement or tissue regeneration is increas...
When it comes to tissue engineering, 3D printing is a crucial technique for creating intricate const...
3D Printing promises to produce complex biomedical devices according to computer design using patien...
Three-dimensional (3D) printing has demonstrated its great potential in producing functional scaffol...
3D printing technology has recently gained substantial interest for potential applications in tissue...
The application of 3D printing technologies fields for biological tissues, organs, and cells in the ...
3D bioprinting is an additive biomanufacturing technology having potential to fast-forward the trans...
Donor shortages for organ transplantations are a major clinical challenge worldwide. Potential risks...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Three-dimensional (3D) printing provides an avenue for efficient, automatic, and repeatable fabricat...
Building human tissues via 3D cell printing technology has received particular attention due to its ...