3D Printing as a Promising Tool in Personalized Medicine

3D-печать как перспективный инструмент персонализированной медицины
Lalit Kumar, Vanessa Marcia Vaz
2021-01-01

3D printing3D printing technologies (inkjet printing; binder jetting; fused filament fabrication; selective laser sintering; stereolithography; pressure-assisted microsyringe)personalized medicinepharmaceutical dosage formspolypill (multiple drug combination)
Personalized medicine has the potential to revolutionize the healthcare sector, its goal being to tailor medication to a particular individual by taking into consideration the physiology, drug response, and genetic profile of that individual. There are many technologies emerging to cause this paradigm shift from the conventional "one size fits all" to personalized medicine, the major one being three-dimensional (3D) printing. 3D printing involves the establishment of a three-dimensional object, in a layer upon layer manner using various computer software. 3D printing can be used to construct a wide variety of pharmaceutical dosage forms varying in shape, release profile, and drug combination. The major technological platforms of 3D printing researched on in the pharmaceutical sector include inkjet printing, binder jetting, fused filament fabrication, selective laser sintering, stereolithography, and pressure-assisted microsyringe. A possible future application of this technology could be in a clinical setting, where prescriptions could be dispensed based on individual needs. This manuscript points out the various 3D printing technologies and their applications in research for fabricating pharmaceutical products, along with their pros and cons. It also presents its potential in personalized medicine by individualizing the dose, release profiles, and incorporating multiple drugs in a polypill. An insight on how it tends to various populations is also provided. An approach of how it can be used in a clinical setting is also highlighted. Also, various challenges faced are pointed out, which must be overcome for the success of this technology in personalized medicine.
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3D printing can fabricate diverse pharmaceutical dosage forms with customized shape, release profiles, and drug combinations.
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3D printing enables individualizing dose and release profiles and creating polypills that incorporate multiple drugs for personalized therapy.
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3D printing is a major enabling technology for shifting from 'one size fits all' to personalized medicine by tailoring medications to individuals.
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A potential future application is clinical on-demand dispensing of prescriptions tailored to individual patient needs.
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Key 3D printing platforms applied in pharmaceuticals include inkjet printing, binder jetting, fused filament fabrication, selective laser sintering, stereolithography, and pressure-assisted microsyringe.
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The manuscript identifies various advantages, population-specific uses, and challenges that must be overcome for successful clinical adoption of 3D printing in personalized medicine.

Three-dimensional (3D) printing technologies for fabricating pharmaceutical dosage forms

Use of 3D printing to enable personalized medicine by individualizing dose, drug-release profiles, and combining multiple drugs (polypills), including evaluation of platforms, applications, advantages, limitations, clinical deployment potential, and challenges

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2021-01-01
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Lalit Kumar
Vanessa Marcia Vaz
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