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Indirect three-dimensional printing of synthetic polymer scaffold based on thermal molding process SCIE SCOPUS

Title
Indirect three-dimensional printing of synthetic polymer scaffold based on thermal molding process
Authors
Park, JHJung, JWKang, HWCho, DW
Date Issued
2014-06
Publisher
IOP Publishing
Abstract
One of the major issues in tissue engineering has been the development of three-dimensional (3D) scaffolds, which serve as a structural template for cell growth and extracellular matrix formation. In scaffold-based tissue engineering, 3D printing (3DP) technology has been successfully applied for the fabrication of complex 3D scaffolds by using both direct and indirect techniques. In principle, direct 3DP techniques rely on the straightforward utilization of the final scaffold materials during the actual scaffold fabrication process. In contrast, indirect 3DP techniques use a negative mold based on a scaffold design, to which the desired biomaterial is cast and then sacrificed to obtain the final scaffold. Such indirect 3DP techniques generally impose a solvent-based process for scaffold fabrication, resulting in a considerable increase in the fabrication time and poor mechanical properties. In addition, the internal architecture of the resulting scaffold is affected by the properties of the biomaterial solution. In this study, we propose an advanced indirect 3DP technique using projection-based micro-stereolithography and an injection molding system (IMS) in order to address these challenges. The scaffold was fabricated by a thermal molding process using IMS to overcome the limitation of the solvent-based molding process in indirect 3DP techniques. The results indicate that the thermal molding process using an IMS has achieved a substantial reduction in scaffold fabrication time and has also provided the scaffold with higher mechanical modulus and strength. In addition, cell adhesion and proliferation studies have indicated no significant difference in cell activity between the scaffolds prepared by solvent-based and thermal molding processes.
Keywords
scaffold fabrication; three-dimensional printing (3DP); projection-based micro-stereolithography (pMSTL); injection molding system (IMS); thermal molding process; FREE-FORM FABRICATION; TISSUE; STEREOLITHOGRAPHY; SYSTEMS; DESIGN; MODEL
URI
https://oasis.postech.ac.kr/handle/2014.oak/13741
DOI
10.1088/1758-5082/6/2/025003
ISSN
1758-5082
Article Type
Article
Citation
BIOFABRICATION, vol. 6, no. 2, page. 25003, 2014-06
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조동우CHO, DONG WOO
Dept of Mechanical Enginrg
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