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2024

Journal Article

Controlling ligand density and viscoelasticity in synthetic biomimetic polyisocyanide hydrogels for studying cell behaviours: the key to truly biomimetic hydrogels

Westra van Holthe, Nicholas J., Wang, Zhao, Lauko, Jan, Gilbert, Elliot P., Gangasandra, Vishaak and Rowan, Alan E. (2024). Controlling ligand density and viscoelasticity in synthetic biomimetic polyisocyanide hydrogels for studying cell behaviours: the key to truly biomimetic hydrogels. Materials Advances, 5 (23), 9458-9470. doi: 10.1039/d4ma00793j

Controlling ligand density and viscoelasticity in synthetic biomimetic polyisocyanide hydrogels for studying cell behaviours: the key to truly biomimetic hydrogels

2024

Journal Article

Polysuccinimide-based nanoparticle: a nanocarrier with drug release delay and zero burst release properties for effective theranostics of cancer

Moonshi, Shehzahdi S., Vazquez-Prada, Karla X., Adelnia, Hossein, Westra van Holthe, Nicholas J., Wu, Yuao, Tang, Joyce, Bulmer, Andrew C. and Ta, Hang Thu (2024). Polysuccinimide-based nanoparticle: a nanocarrier with drug release delay and zero burst release properties for effective theranostics of cancer. Applied Materials Today, 37 102150, 102150. doi: 10.1016/j.apmt.2024.102150

Polysuccinimide-based nanoparticle: a nanocarrier with drug release delay and zero burst release properties for effective theranostics of cancer

2023

Journal Article

Spiky silver–iron oxide nanohybrid for effective dual-imaging and synergistic thermo-chemotherapy

Moonshi, Shehzahdi S., Vazquez-Prada, Karla X., Tang, Joyce, Westra van Holthe, Nicholas J., Cowin, Gary, Wu, Yuao, Tran, Huong D. N., Mckinnon, Ryan, Bulmer, Andrew C. and Ta, Hang Thu (2023). Spiky silver–iron oxide nanohybrid for effective dual-imaging and synergistic thermo-chemotherapy. ACS Applied Materials and Interfaces, 15 (36), 42153-42169. doi: 10.1021/acsami.3c04696

Spiky silver–iron oxide nanohybrid for effective dual-imaging and synergistic thermo-chemotherapy

2023

Other Outputs

Photoacoustic molecular imaging in nanomedicine: development of a polymeric probe to assess tumour penetration and reassessment of the contrast enhancement mechanism

Westra van Holthe, Nicholas (2023). Photoacoustic molecular imaging in nanomedicine: development of a polymeric probe to assess tumour penetration and reassessment of the contrast enhancement mechanism. PhD Thesis, Australian Institute for Bioengineering and Nanotechnology, The University of Queensland. doi: 10.14264/48933ed

Photoacoustic molecular imaging in nanomedicine: development of a polymeric probe to assess tumour penetration and reassessment of the contrast enhancement mechanism

2023

Journal Article

Gold-iron oxide nanoparticle: A unique multimodal theranostic approach for thrombosis

Fithri, Najma Annuria, Wu, Yuao, Cowin, Gary, Akhter, Fahima, Tran, Huong D.N., Tse, Brian, van Holthe, Nicholas Westra, Moonshi, Shehzahdi S., Peter, Karlheinz, Wang, Xiaowei, Truong, Nghia P. and Ta, Hang Thu (2023). Gold-iron oxide nanoparticle: A unique multimodal theranostic approach for thrombosis. Applied Materials Today, 31 101750, 1-14. doi: 10.1016/j.apmt.2023.101750

Gold-iron oxide nanoparticle: A unique multimodal theranostic approach for thrombosis

2022

Journal Article

Understanding nanomedicine treatment in an aggressive spontaneous brain cancer model at the stage of early blood brain barrier disruption

Janowicz, Phillip W., Houston, Zachary H., Bunt, Jens, Fletcher, Nicholas L., Bell, Craig A., Cowin, Gary, Howard, Christopher B., Taslima, Dewan, Westra van Holthe, Nicholas, Prior, Amber, Soh, Vanessa, Ghosh, Saikat, Humphries, James, Huda, Pie, Mahler, Stephen M., Richards, Linda J. and Thurecht, Kristofer J. (2022). Understanding nanomedicine treatment in an aggressive spontaneous brain cancer model at the stage of early blood brain barrier disruption. Biomaterials, 283 121416, 121416. doi: 10.1016/j.biomaterials.2022.121416

Understanding nanomedicine treatment in an aggressive spontaneous brain cancer model at the stage of early blood brain barrier disruption