Author(s):
Viana, T. ; Biscaia, S. ; Dabrowska, E. ; Franco, M. ; Carreira, P. ; Morouço, P. ; Alves, N.
Date: 2019
Persistent ID: http://hdl.handle.net/10400.8/8149
Origin: IC-online
Project/scholarship:
info:eu-repo/grantAgreement/FCT/6817 - DCRRNI ID/UID/Multi/04044/2013/PT;
Subject(s): Tissue engineering; Biomanufacturing; Bioprinting; Micro-extrusion; Heterogenous Scaffolds
Description
This research work aims to validate a new system that enables the fabrication of multimaterial 3D structures using poly(e-caprolactone) and sodium alginate for potential use in Tissue Engineering applications. To produce multi-material scaffolds for Tissue Engineering, accurate techniques are needed to obtain three-dimensional constructs with clinically appropriate size and structural integrity. This paper presents a novel biomanufacturing system which can fabricate 3D scaffolds with precise shape and porosity, through the control of all fabrication modules by an integrated computational platform. The incorporation of a clean flow unit and a camera makes it possible to produce scaffolds in a clean environment and provides a monitoring tool to analyse constructs during the production, respectively.