Journal article
Optimizing the composition of gelatin methacryloyl and hyaluronic acid methacryloyl hydrogels to maximize mechanical and transport properties using response surface methodology
A Talaei, CD O'Connell, S Sayyar, M Maher, Z Yue, PF Choong, GG Wallace
Journal of Biomedical Materials Research Part B Applied Biomaterials | Published : 2023
DOI: 10.1002/jbm.b.35169
Abstract
Hydrogel materials are promising candidates in cartilage tissue engineering as they provide a 3D porous environment for cell proliferation and the development of new cartilage tissue. Both the mechanical and transport properties of hydrogel scaffolds influence the ability of encapsulated cells to produce neocartilage. In photocrosslinkable hydrogels, both of these material properties can be tuned by changing the crosslinking density. However, the interdependent nature of the structural, physical and biological properties of photocrosslinkable hydrogels means that optimizing composition is typically a complicated process, involving sequential and/or iterative steps of physiochemical and biolo..
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Awarded by Australian National Fabrication Facility
Funding Acknowledgements
Australian Research Council (ARC), Grant/Award Number: CE140100012; Australian National Fabrication Facility