Scinovex
article Open AccessTop 1% cited

Three-dimensional printing of complex biological structures by freeform reversible embedding of suspended hydrogels

Science Advances · 2015 · Vol. 1(9) · pp. e1500758–e1500758
Thomas J. HintonQuentin JalleratRachelle N. PalcheskoJoon Hyung ParkMartin S. GrodzickiHao-Jan ShueMohamed RamadanAndrew R. HudsonAdam W. Feinberg

Abstract

We demonstrate the additive manufacturing of complex three-dimensional (3D) biological structures using soft protein and polysaccharide hydrogels that are challenging or impossible to create using traditional fabrication approaches. These structures are built by embedding the printed hydrogel within a secondary hydrogel that serves as a temporary, thermoreversible, and biocompatible support. This process, termed freeform reversible embedding of suspended hydrogels, enables 3D printing of hydrated materials with an elastic modulus <500 kPa including alginate, collagen, and fibrin. Computer-aided design models of 3D optical, computed tomography, and magnetic resonance imaging data were 3D printed at a resolution of ~200 μm and at low cost by leveraging open-source hardware and software tools. Proof-of-concept structures based on femurs, branched coronary arteries, trabeculated embryonic hearts, and human brains were mechanically robust and recreated complex 3D internal and external anatomical architectures.

3D Printing in Biomedical ResearchAdditive Manufacturing and 3D Printing TechnologiesAnatomy and Medical TechnologySelf-healing hydrogels3D printingEmbeddingBiocompatible material3d printedMaterials scienceProcess (computing)NanotechnologyBiomedical engineeringComputer science

Funding

  • Directorate for Engineering
  • NIH Office of the Director
Citations
1,753
FWCI
52.62
field-weighted impact
References
40
Percentile
100%
vs. same field & year
Citations per year
References
3D bioprinting of tissues and organs
Nature Biotechnology · 2014 · 6,681 citations
Gelatin as a delivery vehicle for the controlled release of bioactive molecules
Journal of Controlled Release · 2005 · 1,081 citations
NIH Image to ImageJ: 25 years of image analysis
Nature Methods · 2012 · 63,624 citations
Bioprinting Toward Organ Fabrication: Challenges and Future Trends
IEEE Transactions on Biomedical Engineering · 2013 · 653 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Three-dimensional printing of complex biological structures by freeform reversible embedding of suspended hydrogels · Scinovex