Additive manufacturing technologies with emphasis on stereolithography 3D printing in pharmaceutical and medical applications: A review
Технологии аддитивного производства с акцентом на стереолитографическую 3D-печать в фармацевтических и медицинских приложениях: обзор
2023-01-03
SCID: 54.1/j5v7bu2m
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Additive Manufacturing (AM)Stereolithography (SLA)pharmaceutical dosage formstissue scaffoldsvat-photopolymerization
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Abstract (AI)
Three-dimensional (3D) printing or Additive Manufacturing (AM) technology is an innovative tool with great potential and diverse applications in various fields. As 3D printing has been burgeoning in recent times, a tremendous transformation can be envisaged in medical care, especially the manufacturing procedures leading to personalized medicine. Stereolithography (SLA), a vat-photopolymerization technique, that uses a laser beam, is known for its ability to fabricate complex 3D structures ranging from micron-size needles to life-size organs, because of its high resolution, precision, accuracy, and speed. This review presents a glimpse of varied 3D printing techniques, mainly expounding SLA in terms of the materials used, the orientation of printing, and the working mechanisms. The previous works that focused on developing pharmaceutical dosage forms, drug-eluting devices, and tissue scaffolds are presented in this paper, followed by the challenges associated with SLA from an industrial and regulatory perspective. Due to its excellent advantages, this technology could transform the conventional "one dose fits all" concept to bring digitalized patient-centric medication into reality.
Key Findings
1
Additive Manufacturing (3D printing) has high potential to transform medical care and enable personalized medicine.
2
Previous SLA work includes development of pharmaceutical dosage forms, drug-eluting devices, and tissue scaffolds.
3
SLA faces industrial and regulatory challenges that must be addressed before widespread adoption for patient-centric, digitalized medication.
4
Stereolithography (SLA) vat-photopolymerization offers high resolution, precision, accuracy, and speed, enabling fabrication from micron-size needles to life-size organs.
5
The review summarizes SLA-specific factors: materials, printing orientation, and working mechanisms relevant to pharmaceutical and medical applications.
Research Object
Stereolithography (SLA) additive manufacturing technology applied to pharmaceutical and medical product fabrication
Research Subject
Capabilities, materials, printing orientation and mechanisms of SLA for producing pharmaceutical dosage forms, drug-eluting devices, and tissue scaffolds, including associated industrial and regulatory challenges and implications for personalized medicine
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2023-01-03
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