In this experimental report, the biocompatibility of elastomeric scaffold structures made via stereolithography employing table-top 3D printer Ember (Autodesk) and commercial resin FormLabs Flexible (FormLabs) was studied. The samples were manufactured using the standard printing and development protocol, which is known to inherit cytotoxicity due to remaining non-polymerized monomers, despite the polymerized material being fully biocompatible. Additional steps were taken to remedy this problem: the fabricated structures were soaked in isopropanol and methanol under different conditions (temperature and duration) to leach out the non-polymerized monomers. In addition, disc-shaped 3D-printed structures were UV exposed to assure maximum polym...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The biofabrication of three-dimensional scaffolds using 3D printers and cell-containing bioinks is v...
3D printing is a rapid and accessible fabrication technology that engenders creative custom design s...
A recent revolution in additive manufacturing technologies and access to 3D Computer Assisted Design...
Custom-designed biomedical polymer materials can be fabricated rapidly and precisely by 3-dimensiona...
8noLight-based 3D printing techniques could be a valuable instrument in the development of customize...
Additive manufacturing of polymers is gaining momentum in health care industries by providing rapid ...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
Three-dimensional (3D) printing is becoming a booming technology to fabricate scaffolds, orthoses, a...
The integration of additive manufacturing (AM) technology within biological systems holds significan...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Hybrid organometallic polymers are a class of functional materials which can be used to produce stru...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The biofabrication of three-dimensional scaffolds using 3D printers and cell-containing bioinks is v...
3D printing is a rapid and accessible fabrication technology that engenders creative custom design s...
A recent revolution in additive manufacturing technologies and access to 3D Computer Assisted Design...
Custom-designed biomedical polymer materials can be fabricated rapidly and precisely by 3-dimensiona...
8noLight-based 3D printing techniques could be a valuable instrument in the development of customize...
Additive manufacturing of polymers is gaining momentum in health care industries by providing rapid ...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
Three-dimensional (3D) printing is becoming a booming technology to fabricate scaffolds, orthoses, a...
The integration of additive manufacturing (AM) technology within biological systems holds significan...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
3D Stereolithography (SLA) printing is a high-throughput, precise and reproducible manufacturing pla...
Hybrid organometallic polymers are a class of functional materials which can be used to produce stru...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
3D printing is a rapidly evolving field for biological (bioprinting) and non-biological applications...
The biofabrication of three-dimensional scaffolds using 3D printers and cell-containing bioinks is v...