4.8 Article

Water-based polyurethane 3D printed scaffolds with controlled release function for customized cartilage tissue engineering

Journal

BIOMATERIALS
Volume 83, Issue -, Pages 156-168

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2016.01.019

Keywords

3D printing; Scaffold; MSC; Cartilage regeneration; Customized tissue engineering

Funding

  1. Ministry of Science and Technology, Taiwan, R.O.C. [MOST104-2218-E-002-010, MOST103-2321-B-002-100]
  2. University Cutting-Edge Steering Research Project [NTU-CESRP-103R104941]

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Conventional 3D printing may not readily incorporate bioactive ingredients for controlled release because the process often involves the use of heat, organic solvent, or crosslinkers that reduce the bioactivity of the ingredients. Water -based 3D printing materials with controlled bioactivity for customized cartilage tissue engineering is developed in this study. The printing ink contains the water dispersion of synthetic biodegradable polyurethane (PU) elastic nanoparticles, hyaluronan, and bioactive ingredients TGF133 or a small molecule drug Y27632 to replace TGF133. Compliant scaffolds are printed from the ink at low temperature. These scaffolds promote the self -aggregation of mesenchymal stem cells (MSCs) and, with timely release of the bioactive ingredients, induce the chondrogenic differentiation of MSCs and produce matrix for cartilage repair. Moreover, the growth factor -free controlled release design may prevent cartilage hypertrophy. Rabbit knee implantation supports the potential of the novel 3D printing scaffolds in cartilage regeneration. We consider that the 3D printing composite scaffolds with controlled release bioactivity may have potential in customized tissue engineering. (C) 2016 Elsevier Ltd. All rights reserved.

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