3D Printing in Pharmaceutical and Medical Applications – Recent Achievements and Challenges
3D-печать в фармацевтических и медицинских приложениях — достижения и проблемы
2018-07-11
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3D printingadditive manufacturingextrusion-based 3D printingpersonalized dosage formsregulatory issues
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Abstract (AI)
Growing demand for customized pharmaceutics and medical devices makes the impact of additive manufacturing increased rapidly in recent years. The 3D printing has become one of the most revolutionary and powerful tool serving as a technology of precise manufacturing of individually developed dosage forms, tissue engineering and disease modeling. The current achievements include multifunctional drug delivery systems with accelerated release characteristic, adjustable and personalized dosage forms, implants and phantoms corresponding to specific patient anatomy as well as cellbased materials for regenerative medicine. This review summarizes the newest achievements and challenges of additive manufacturing in the field of pharmaceutical and biomedical research that have been published since 2015. Currently developed techniques of 3D printing are briefly described while comprehensive analysis of extrusion-based methods as the most intensively investigated is provided. The issue of printlets attributes, i.e. shape and size is described with regard to personalized dosage forms and medical devices manufacturing. The undeniable benefits of 3D printing are highlighted, however a critical view resulting from the limitations and challenges of the additive manufacturing is also included. The regulatory issue is pointed as well.
Key Findings
1
3D printing enables precise manufacturing of individualized dosage forms, tissue engineering constructs, and disease models.
2
Additive manufacturing (3D printing) is increasingly impactful for customized pharmaceuticals and medical devices due to rising demand for personalization.
3
Despite undeniable benefits, additive manufacturing faces limitations and challenges, including regulatory issues that must be addressed.
4
Printlet attributes (shape and size) are important factors for personalized dosage forms and medical device manufacturing.
5
Recent achievements include multifunctional drug delivery systems with accelerated release, adjustable personalized dosage forms, patient-specific implants and phantoms, and cell-based regenerative materials.
6
The review provides a comprehensive analysis of extrusion-based 3D printing methods, identified as the most intensively investigated techniques since 2015.
Research Object
Additive manufacturing (3D printing) applied to pharmaceutical and medical products (customized dosage forms, implants, phantoms, and cell-based regenerative materials)
Research Subject
Recent achievements, challenges, and characteristics of 3D-printed pharmaceutical and biomedical products, including extrusion-based techniques, printlet attributes (shape and size), multifunctional drug delivery, personalized dosing, implants/phantoms matching patient anatomy, cell-based materials, and regulatory issues
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2018-07-11
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