4.8 Article

Volumetric 3D printing for rapid production of medicines

期刊

ADDITIVE MANUFACTURING
卷 52, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.addma.2022.102673

关键词

Volumetric printing; Vat photopolymerization; 3D holographic printing; Personalized medicines; Printing pharmaceuticals and drug delivery systems; 3D printed drug products

资金

  1. MCIN, Spain [PID 2020-113881RB-I00/AEI/10.13039/501100011033]
  2. Xunta de Galicia [ED431C 2020/17]
  3. FEDER
  4. Xunta de Galicia (Conselleria de Cultura, Educacion e Universidade) [ED481A 2020/21]

向作者/读者索取更多资源

3D printing has potential in personalized medicine era, volumetric printing allows rapid drug printing with advantages in speed and overcoming limitations, drug release rates can be controlled by adjusting resin composition ratios.
3D printing (3DP), or additive manufacturing, has been actively investigated as one of the enabling technologies for the impending era of personalized medicines. However, existing 3DP technologies do not afford the speeds required for on-demand production of medicines in fast-paced clinical settings. Volumetric printing is a novel 3DP technology that offers rapid printing speed and overcomes the geometric and surface quality limitations of layer-based vat photopolymerization techniques. Unlike previous vat photopolymerization 3DP technologies, volumetric printing cures the entire desired 3D geometry simultaneously by exploiting the threshold behavior in the photopolymerization process that arise due to oxygen-induced polymerization inhibition. In this work, for the first time, a volumetric printer was used to fabricate drug-loaded 3D printed tablets (PrintletsTM) within seconds. Six resin formulations were evaluated using this printer, each composed of poly(ethylene glycol) diacrylate (PEGDA) as the crosslinking monomer, lithium phenyl-2,4,6-trimethylbenzoylphosphinate (LAP) as the photo-initiator, and paracetamol as the model drug. Water or PEG300 were included as diluents in varying concen-trations to facilitate drug release. Paracetamol-loaded Printlets were successfully fabricated within 17 s. Drug release rates could be tuned by altering the monomer-to-diluent ratio of the photosensitive resin, with a lower ratio releasing drug faster. The present work confirms the suitability of volumetric 3DP for printing drug products in a matter of seconds. Upon further optimization, this novel technology can enable rapid, on-demand fabrication of medicines and medical devices.

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