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Tissue Eng Part C Methods ; 22(12): 1071-1076, 2016 12.
Article in English | MEDLINE | ID: mdl-27819188

ABSTRACT

Numerous studies have shown the capabilities of three-dimensional (3D) printing for use in the medical industry. At the time of this publication, basic home desktop 3D printer kits can cost as little as $300, whereas medical-specific 3D bioprinters can cost more than $300,000. The purpose of this study is to show how a commercially available desktop 3D printer could be modified to bioprint an engineered poly-l-lactic acid scaffold containing viable chondrocytes in a bioink. Our bioprinter was used to create a living 3D functional tissue-engineered cartilage scaffold. In this article, we detail the design, production, and calibration of this bioprinter. In addition, the bioprinted cells were tested for viability, proliferation, biochemistry, and gene expression; these tests showed that the cells survived the printing process, were able to continue dividing, and produce the extracellular matrix expected of chondrocytes.


Subject(s)
Bioprinting/methods , Cartilage, Articular/cytology , Chondrocytes/cytology , Printing, Three-Dimensional/instrumentation , Tissue Engineering/methods , Tissue Scaffolds/chemistry , Animals , Bioprinting/instrumentation , Extracellular Matrix , Polyesters/chemistry , Rats , Rats, Sprague-Dawley
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