Bio-inks for 3D bioprinting: recent advances and future prospects I Donderwinkel, JCM Van Hest, NR Cameron Polymer Chemistry 8 (31), 4451-4471, 2017 | 391 | 2017 |
In situ miRNA delivery from a hydrogel promotes osteogenesis of encapsulated mesenchymal stromal cells J Carthew, I Donderwinkel, S Shrestha, VX Truong, JS Forsythe, JE Frith Acta biomaterialia 101, 249-261, 2020 | 56 | 2020 |
Tendon tissue engineering: Current progress towards an optimized tenogenic differentiation protocol for human stem cells I Donderwinkel, RS Tuan, NR Cameron, JE Frith Acta Biomaterialia 145, 25-42, 2022 | 33 | 2022 |
Substrate mechanical properties bias MSC paracrine activity and therapeutic potential A Vilar, M Hodgson-Garms, GD Kusuma, I Donderwinkel, J Carthew, ... Acta Biomaterialia 168, 144-158, 2023 | 16 | 2023 |
Bioorthogonal hydrogels by thiol–halide click crosslinking with fast gelation time and tunable stability in aqueous media VX Truong, I Donderwinkel, JE Frith Journal of Polymer Science, Part A: Polymer Chemistry 57 (18), 1872-1876, 2019 | 15 | 2019 |
Bio-inks for 3D bioprinting: Recent advances and future prospects. Polym. 2017; 8 (31): 4451–71 I Donderwinkel, JCM Van Hest, NR Cameron | 5 | |
A systematic investigation of the effects of TGF-β3 and mechanical stimulation on tenogenic differentiation of mesenchymal stromal cells in a poly (ethylene glycol)/gelatin … I Donderwinkel, RS Tuan, NR Cameron, JE Frith Journal of Orthopaedic Translation 43, 1-13, 2023 | 3 | 2023 |
Physical stimulation in tissue-engineering J Carthew, S Shrestha, I Donderwinkel, JE Frith Tissue Engineering in Oral and Maxillofacial Surgery, 35-52, 2019 | 3 | 2019 |
TISSUE ENGINEERED HYDROGEL BLOCKS AS A MODEL TO STUDY BONE-TENDON INTERFACE DEVELOPMENT I Donderwinkel, RS Tuan, NR Cameron, JE Frith TISSUE ENGINEERING PART A 28, S192-S192, 2022 | | 2022 |
Tissue-engineered hydrogel scaffolds to study bone-tendon interface development I Donderwinkel Monash University, 0 | | |