3D Printing: Applications in Tissue Engineering, Medical Devices, and Drug Delivery
3D-печать: применение в тканевой инженерии, медицинских приборах и доставке лекарств
2022-03-17
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3D bioprinting3D printingcomputer-aided drug (CAD) modelfused deposition modellingstereolithography
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Abstract (AI)
The gemstone of 3-dimensional (3D) printing shines up from the pyramid of additive manufacturing. Three-dimensional bioprinting technology has been predicted to be a game-changing breakthrough in the pharmaceutical industry since the last decade. It is fast evolving and finds its seats in a variety of domains, including aviation, defense, automobiles, replacement components, architecture, movies, musical instruments, forensic, dentistry, audiology, prosthetics, surgery, food, and fashion industry. In recent years, this miraculous manufacturing technology has become increasingly relevant for pharmaceutical purposes. Computer-aided drug (CAD) model will be developed by computer software and fed into bioprinters. Based on material inputs, the printers will recognize and produce the model scaffold. Techniques including stereolithography, selective laser sintering, selective laser melting, material extrusion, material jetting, inkjet-based, fused deposition modelling, binder deposition, and bioprinting expedite the printing process. Distinct advantages are rapid prototyping, flexible design, print on demand, light and strong parts, fast and cost-effective, and environment friendly. The present review gives a brief description of the conceptional 3-dimensional printing, followed by various techniques involved. A short note was explained about the fabricating materials in the pharmaceutical sector. The beam of light is thrown on the various applications in the pharma and medical arena.
Key Findings
1
3D bioprinting is rapidly evolving and is predicted to be a game-changing breakthrough in the pharmaceutical industry.
2
3D printing techniques used in pharmaceutical and medical contexts include stereolithography, selective laser sintering/melting, material extrusion, material jetting, inkjet-based methods, fused deposition modelling, binder deposition, and bioprinting.
3
Advantages of 3D printing for pharma and medical applications include rapid prototyping, flexible design, print-on-demand capability, lightweight and strong parts, cost-effectiveness, and environmental friendliness.
4
Computer-aided design (CAD) models are used to drive bioprinters, which produce scaffold structures based on material inputs.
5
The review summarizes fabrication materials and diverse applications of 3D printing across tissue engineering, medical devices, and drug delivery in the pharmaceutical and medical arenas.
Research Object
Three-dimensional (3D) printing / bioprinting technology applied in pharmaceutical and medical contexts
Research Subject
Applications and techniques of 3D printing in tissue engineering, medical devices, and drug delivery, including printing methods, materials, and advantages for pharmaceutical and medical uses
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2022-03-17
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