Tailored melt electrowritten scaffolds for the generation of sheet-like tissue constructs from multicellular spheroids

, Hoefner, Christiane, Hrynevich, Andrei, Blum, Carina, Wiesner, Miriam, Wittmann, Katharina, , Bauer-Kreisel, Petra, Groll, Jurgen, Dalton, Paul, & Blunk, Torsten (2019) Tailored melt electrowritten scaffolds for the generation of sheet-like tissue constructs from multicellular spheroids. Advanced Healthcare Materials, 8(7), Article number: 1801326 1-7.

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Description

Melt electrowriting (MEW) is an additive manufacturing technology that is recently used to fabricate voluminous scaffolds for biomedical applications. In this study, MEW is adapted for the seeding of multicellular spheroids, which permits the easy handling as a single sheet-like tissue-scaffold construct. Spheroids are made from adipose-derived stromal cells (ASCs). Poly(ε-caprolactone) is processed via MEW into scaffolds with box-structured pores, readily tailorable to spheroid size, using 13-15 µm diameter fibers. Two 7-8 µm diameter "catching fibers" near the bottom of the scaffold are threaded through each pore (360 and 380 µm) to prevent loss of spheroids during seeding. Cell viability remains high during the two week culture period, while the differentiation of ASCs into the adipogenic lineage is induced. Subsequent sectioning and staining of the spheroid-scaffold construct can be readily performed and accumulated lipid droplets are observed, while up regulation of molecular markers associated with successful differentiation is demonstrated. Tailoring MEW scaffolds with pores allows the simultaneous seeding of high numbers of spheroids at a time into a construct that can be handled in culture and may be readily transferred to other sites for use as implants or tissue models.

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59 citations in Web of Science®
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ID Code: 127712
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Dargaville, Timorcid.org/0000-0003-4665-9508
Measurements or Duration: 7 pages
Keywords: 3D printing, additive manufacturing, adipose tissue engineering
DOI: 10.1002/adhm.201801326
ISSN: 2192-2640
Pure ID: 33459997
Divisions: Past > Institutes > Institute of Health and Biomedical Innovation
Past > QUT Faculties & Divisions > Science & Engineering Faculty
Funding Information: This work was supported by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)\u2014Project number 326998133\u2014 TRR 225 (sub-projects A04 and C02). The State Major Instrumentation Programme, which financed the SEM used in this study (INST 105022/58-1 FUGG), is gratefully acknowledged. Furthermore, the work was financially supported by the European Research Council Design2Heal (ERC; Grant No. 617989). The authors appreciate the EACEA program BIOFAB (Grant # 2013/3137 001-001) that supported R.M. Sabine M\u00FCller-Morath is gratefully acknowledged for assisting in gene expression analysis.
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Deposited On: 21 Mar 2019 11:40
Last Modified: 16 May 2026 04:17