BioprintingExtrusionFRESHCurated metadata

An open source extrusion bioprinter based on the E3D motion system and tool changer to enable FRESH and multimaterial bioprinting

Open-source multimaterial/FRESH-enabling design; very aligned with ‘Replistruder-like’ tooling.

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Publication data

Crossref and OpenAlex

Publication record

Matched by title · retrieved 2026-07-21

Abstract

Bioprinting is increasingly used to create complex tissue constructs for an array of research applications, and there are also increasing efforts to print tissues for transplantation. Bioprinting may also prove valuable in the context of drug screening for personalized medicine for treatment of diseases such as cancer. However, the rapidly expanding bioprinting research field is currently limited by access to bioprinters. To increase the availability of bioprinting technologies we present here an open source extrusion bioprinter based on the E3D motion system and tool changer to enable high-resolution multimaterial bioprinting. As proof of concept, the bioprinter is used to create collagen constructs using freeform reversible embedding of suspended hydrogels (FRESH) methodology, as well as multimaterial constructs composed of distinct sections of laminin and collagen. Data is presented demonstrating that the bioprinted constructs support growth of cells either seeded onto printed constructs or included in the bioink prior to bioprinting. This open source bioprinter is easily adapted for different bioprinting applications, and additional tools can be incorporated to increase the capabilities of the system.

Bibliographic details

Published
2021-11-03
Journal/source
Scientific Reports
Publisher
Springer Science and Business Media LLC
DOI
10.1038/s41598-021-00931-1
Type
journal-article
Language
en
Volume / issue
11 / 1
Pages
Not supplied
ISSN
2045-2322

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
32
References
36
Retracted
No

Authors and affiliations

  1. Adam EngbergUppsala University
  2. Christina StelzlUppsala University
  3. Olle ErikssonUppsala University
  4. P.W. O’CallaghanUppsala University
  5. Johan KreugerCorresponding authorUppsala University

Topics and keywords

3D Printing in Biomedical ResearchInnovative Microfluidic and Catalytic Techniques InnovationAdditive Manufacturing and 3D Printing Technologies3D bioprintingBiofabricationContext (archaeology)Computer scienceSelf-healing hydrogelsTissue engineeringNanotechnologyBiomedical engineeringMaterials scienceEngineering

Funding

  • Uppsala University
  • VINNOVA · 2019-00029
  • Cancerfonden · 20 1285 PjF 01 H
  • Uppsala University