BioprintingCurated metadata

mSLAb–An open-source masked stereolithography (mSLA) bioprinter

Record generated from the current DIY biofabrication corpus.

medium skilllimited docsCrossrefOpenAlex
Publication data

Crossref and OpenAlex

Publication record

Matched by title · retrieved 2026-07-21

Abstract

3D bioprinting is a tissue engineering approach using additive manufacturing to fabricate tissue equivalents for regenerative medicine or medical drug testing. For this purpose, biomaterials that provide the essential microenvironment to support the viability of cells integrated directly or seeded after printing are processed into three-dimensional (3D) structures. Compared to extrusion-based 3D printing, which is most commonly used in bioprinting, stereolithography (SLA) offers a higher printing resolution and faster processing speeds with a wide range of cell-friendly materials such as gelatin- or collagen-based hydrogels and SLA is, therefore, well suited to generate 3D tissue constructs. While there have been numerous publications of conversions and upgrades for extrusion-based printers, this is not the case for state-of-the-art SLA technology in bioprinting. The high cost of proprietary printers severely limits teaching and research in SLA bioprinting. With mSLAb, we present a low-cost and open-source high-resolution 3D bioprinter based on masked SLA (mSLA). mSLAb is based on an entry-level (€350) desktop mSLA printer (Phrozen Sonic Mini 4 K), equipped with temperature control and humidification of the printing chamber to enable the processing of cell-friendly hydrogels. Additionally, the build platform was redesigned for easy sample handling and microscopic analysis of the printed constructs. All modifications were done with off-the-shelf hardware and in-house designed 3D printed components, printed with the same printer that was being modified. We validated the system by printing macroscopic porous scaffolds as well as hollow channels from gelatin-based hydrogels as representative structures needed in tissue engineering.

Bibliographic details

Published
2024-06-12
Journal/source
HardwareX
Publisher
Elsevier BV
DOI
10.1016/j.ohx.2024.e00543
Type
journal-article
Language
en
Volume / issue
19
Pages
e00543
ISSN
2468-0672

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
9
References
36
Retracted
No

Authors and affiliations

  1. Benedikt KaufmannCorresponding authorMunich University of Applied Sciences · Center for NanoScience · Technical University of Munich · Ludwig-Maximilians-Universität München
  2. Matthias RudolphMunich University of Applied Sciences · Center for NanoScience · Ludwig-Maximilians-Universität München
  3. Markus PechtlMunich University of Applied Sciences
  4. Geronimo WildenburgMunich University of Applied Sciences
  5. Oliver HaydenTechnical University of Munich
  6. Hauke Clausen‐SchaumannMunich University of Applied Sciences · Center for NanoScience · Ludwig-Maximilians-Universität München
  7. Stefanie SudhopCorresponding authorMunich University of Applied Sciences · Center for NanoScience · Ludwig-Maximilians-Universität München

Topics and keywords

3D Printing in Biomedical ResearchAdditive Manufacturing and 3D Printing TechnologiesInnovative Microfluidic and Catalytic Techniques InnovationStereolithographyOpen sourceComputer scienceBiomedical engineeringMaterials scienceEngineeringOperating systemComposite materialSoftware

Funding

  • German Research Foundation · 512819356
  • Bavarian State Ministry for Science and Art
  • Bavarian Academic Forum