• Selective delivery of remarkably high levels of gadolinium to tumour cells using an arsonium salt 

      Windsor, Madeline S. A.; Busse, Madleen; Morrison, Daniel E.; Baker, Robert W.; Hill, Leila R.; Rendina, Louis M.
      Published 2021
      The use of a triphenylarsonium vector for tumour cell-targeting leads to a dramatic increase in Gd3+ uptake in human glioblastoma multiforme cells by up to an order of magnitude over the isosteric triarylphosphonium analogue, ...
      Open Access
      Article
    • Cutting edge rare earth radiometals: prospects for cancer theranostics 

      Sadler, Alexander W. E.; Hogan, Leena; Fraser, Benjamin; Rendina, Louis M.
      Published 2022
      With recent advances in novel approaches to cancer therapy and imaging, the application of theranostic techniques in personalised medicine has emerged as a very promising avenue of research inquiry in recent years. Interest ...
      Open Access
      Article
    • Superior Tumor Cell Uptake by Mono- and Tri-Nuclear Rhodamine-Gadolinium(III) Agents 

      Robertson, Amy G.; Hall, Andrew J.; Marfavi, Anita; Rendina, Louis M.
      Published 2024
      The synthesis and characterization of a novel trinuclear rhodamine-Gd(III) complex, along with two analogous mononuclear rhodamine-Gd(III) complexes, are reported. All complexes displayed good selectivity in a human glioma ...
      Open Access
      Article
    • Synthesis and tumour cell uptake studies of gadolinium(III)–phosphonium complexes 

      Hall, Andrew J.; Robertson, Amy G.; Hill, Leila R.; Rendina, Louis M.
      Published 2021
      The synthesis of a new series of Gd(III)-arylphosphonium complexes is described and the solution stability of selected compounds is reported. Their lipophilicity and uptake in human glial (SVG p12) and human glioblastoma ...
      Open Access
      Article
    • Tensile benefits of nanofibers in commercial paint films 

      Turpin, Geosmin; Nguyen, Duc; Subramanian, Priya; Davey, Tim; Cheong, Siew Fong; Warr, Gregory G.; Neto, Chiara; Hawkett, Brian
      Published 2024
      Polymerization-induced self-assembly (PISA) in dispersed phase polymerization enables the synthesis of fibers and other self-assembled nanostructures at the quantities and cost required for use in commodity paints. Here ...
      Open Access
      Article