BioprintingSupplemental record

A Custom Ultra-Low-Cost 3D Bioprinter Supports Cell Growth and Differentiation

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Abstract

Advances in 3D bioprinting have allowed the use of stem cells along with biomaterials and growth factors toward novel tissue engineering approaches. However, the cost of these systems along with their consumables is currently extremely high, limiting their applicability. To address this, we converted a 3D printer into an open source 3D bioprinter and produced a customized bioink based on accessible alginate/gelatin precursors, leading to a cost-effective solution. The bioprinter's resolution, including line width, spreading ratio and extrusion uniformity measurements, along with the rheological properties of the bioinks were analyzed, revealing high bioprinting accuracy within the printability window. Following the bioprinting process, cell survival and proliferation were validated on HeLa Kyoto and HEK293T cell lines. In addition, we isolated and 3D bioprinted postnatal neural stem cell progenitors derived from the mouse subventricular zone as well as mesenchymal stem cells derived from mouse bone marrow. Our results suggest that our low-cost 3D bioprinter can support cell proliferation and differentiation of two different types of primary stem cell populations, indicating that it can be used as a reliable tool for developing efficient research models for stem cell research and tissue engineering.

Bibliographic details

Published
2020-11-04
Journal/source
Frontiers in Bioengineering and Biotechnology
Publisher
Frontiers Media SA
DOI
10.3389/fbioe.2020.580889
Type
journal-article
Language
en
Volume / issue
8
Pages
Not supplied
ISSN
2296-4185

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
66
References
60
Retracted
No

Authors and affiliations

  1. Konstantinos IoannidisCorresponding authorUniversity of Patras
  2. Rodolfos I. DanalatosUniversity of Patras
  3. Spyridon Champeris TsanirasUniversity of Patras
  4. Konstantina KaplaniUniversity of Patras
  5. Georgia LokkaUniversity of Patras
  6. Anastasia KanellouUniversity of Patras
  7. Dionysios J. PapachristouUniversity of Patras
  8. Georgios BokiasUniversity of Patras
  9. Zoi LygerouUniversity of Patras
  10. Stavros TaravirasCorresponding authorUniversity of Patras

Topics and keywords

3D Printing in Biomedical ResearchAdditive Manufacturing and 3D Printing TechnologiesNeuroscience and Neural Engineering3D bioprintingTissue engineeringStem cellMesenchymal stem cellBiomedical engineeringMaterials scienceConsumablesGelatinCell biologyChemistryBiologyEngineering