4.7 Article

Additive manufacturing of scaffolds with sub-micron filaments via melt electrospinning writing

期刊

BIOFABRICATION
卷 7, 期 3, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1758-5090/7/3/035002

关键词

additive manufacturing; 3D printing; biodegradable polymers; microstructures; nanostructures

资金

  1. German Academic Exchange Service (DAAD) [54417792]
  2. European research council (ERC) [617989]

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The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process combined with direct writing technology of polymer melts. Termed melt electrospinning writing, filaments are deposited layer-by-layer to produce discrete three-dimensional scaffolds for in vitro research. Through optimization of the parameters (flow rate, spinneret diameter, voltage, collector distance) for poly-e-caprolactone, we could direct-write coherent scaffolds with ultrafine filaments, the smallest being 817 +/- 165 nm. These low diameter filaments were deposited to form box-structures with a periodicity of 100.6 +/- 5.1 mu m and a height of 80 mu m (50 stacked filaments; 100 overlap at intersections). We also observed oriented crystalline regions within such ultrafine filaments after annealing at 55 degrees C. The scaffolds were printed upon NCO-sP(EO-stat-PO)-coated glass slide surfaces and withstood frequent liquid exchanges with negligible scaffold detachment for at least 10 days in vitro.

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