Title of article
A versatile bioink for three-dimensional printing of cellular scaffolds based on thermally and photo-triggered tandem gelation
Author/Authors
Kesti، نويسنده , , Matti and Müller، نويسنده , , Michael and Becher، نويسنده , , Jana and Schnabelrauch، نويسنده , , Matthias and D’Este، نويسنده , , Matteo and Eglin، نويسنده , , David and Zenobi-Wong، نويسنده , , Marcy، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2015
Pages
11
From page
162
To page
172
Abstract
Layer-by-layer bioprinting is a logical choice for the fabrication of stratified tissues like articular cartilage. Printing of viable organ replacements, however, is dependent on bioinks with appropriate rheological and cytocompatible properties. In cartilage engineering, photocrosslinkable glycosaminoglycan-based hydrogels are chondrogenic, but alone have generally poor printing properties. By blending the thermoresponsive polymer poly(N-isopropylacrylamide) grafted hyaluronan (HA-pNIPAAM) with methacrylated hyaluronan (HAMA), high-resolution scaffolds with good viability were printed. HA-pNIPAAM provided fast gelation and immediate post-printing structural fidelity, while HAMA ensured long-term mechanical stability upon photocrosslinking. The bioink was evaluated for rheological properties, swelling behavior, printability and biocompatibility of encapsulated bovine chondrocytes. Elution of HA-pNIPAAM from the scaffold was necessary to obtain good viability. HA-pNIPAAM can therefore be used to support extrusion of a range of biopolymers which undergo tandem gelation, thereby facilitating the printing of cell-laden, stratified cartilage constructs with zonally varying composition and stiffness.
Keywords
HA-pNIPAAM , Bioprinting , Thermoresponsive polymer , Cartilage engineering
Journal title
Acta Biomaterialia
Serial Year
2015
Journal title
Acta Biomaterialia
Record number
1758661
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