Photopolymerization Inks for 3D Printing of Elastic, Strong, and Biodegradable Oral Delivery Devices

Abstract: Three‐dimensional (3D) printing via vat photopolymerization is transforming the manufacturing paradigms of biomedical devices, offering tremendous advantages for the production of customized advanced drug delivery systems. However, the existing commercial inks often lack the ability to simultaneously provide elasticity, strength, and biodegradability. Herein, photopolymerizable inks based on poly (β‐aminoester) diacrylates and N‐vinyl pyrrolidone are used to address these limitations. These biodegradable polymers enable the digital light processing 3D printing of elastomers with adjustable elongation at break (103–762%), stress at failure (0.2–8.3 MPa), and hydrolysis rates ranging from 25 min to 80 days. The authors are able to synthesize a soft polymer that possess properties akin to natural latex, which can enhance its elastic modulus when subjected to high strains. It can withstand 762% stretch with a maximum strength of 8.3 MPa. In addition, this polymer demonstrates cytocompatibility and unique biodegradation properties under simulated gastrointestinal conditions (within hours at pH 6.8). By utilizing this elastomer, a prototype of an expandable oral drug delivery device that has the ability to degrade within the average transit time in the jejunum is manufactured. This study paves the way to leverage vat photopolymerization 3D printing in the creation of complex prototypes of biomedical devices where strength, elasticity and biodegradability are essential.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Photopolymerization Inks for 3D Printing of Elastic, Strong, and Biodegradable Oral Delivery Devices ; day:29 ; month:11 ; year:2023 ; extent:13
Advanced functional materials ; (29.11.2023) (gesamt 13)

Creator
Yuts, Yulia
Bohley, Marilena
Krivitsky, Adva
Bao, Yinyin
Luo, Zhi
Leroux, Jean‐Christophe

DOI
10.1002/adfm.202310111
URN
urn:nbn:de:101:1-2023113014233348613638
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:31 AM CEST

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Associated

  • Yuts, Yulia
  • Bohley, Marilena
  • Krivitsky, Adva
  • Bao, Yinyin
  • Luo, Zhi
  • Leroux, Jean‐Christophe

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