BioprintingCurated metadata

Development of a microfluidic-assisted open-source 3D bioprinting system (MOS3S) for the engineering of hierarchical tissues

Record generated from the current DIY biofabrication corpus.

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Publication data

Crossref and OpenAlex

Publication record

Matched by title · retrieved 2026-07-21

Abstract

crosslinking and scaffolds fabrication. The coupling of 3D printed syringe pumps with the motion control system is used for driving the tunable extrusion of inks for the fabrication of centimeter scale hierarchical lattice constructs for tissue engineering purposes. MOS3S performance have been validated to fabricate high-resolution structures with coaxial microfluidic technology, opening to new frontiers for seminal studies in pre-clinical disease modelling and tissue regeneration.

Bibliographic details

Published
2024-04-02
Journal/source
HardwareX
Publisher
Elsevier BV
DOI
10.1016/j.ohx.2024.e00527
Type
journal-article
Language
en
Volume / issue
18
Pages
e00527
ISSN
2468-0672

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
15
References
30
Retracted
No

Authors and affiliations

  1. Sajad MohammadiItalian Institute of Technology · Center for Nano Science and Technology · Sapienza University of Rome
  2. Salvatore D’AlessandroItalian Institute of Technology · Center for Nano Science and Technology · Sapienza University of Rome
  3. Fabiano BiniSapienza University of Rome
  4. Franco MarinozziSapienza University of Rome
  5. Gianluca CidonioItalian Institute of Technology · Center for Nano Science and Technology

Topics and keywords

3D Printing in Biomedical ResearchAdditive Manufacturing and 3D Printing TechnologiesInnovative Microfluidic and Catalytic Techniques InnovationMicrofluidicsNanotechnology3D bioprintingTissue engineering3D printingBiofabricationScaffoldFabricationComputer scienceMaterials scienceBiomedical engineeringEngineering