Related Experiment Video
Updated: Mar 5, 2026

Magnetic-, Acoustic-, and Optical-Triple-Responsive Microbubbles for Magnetic Hyperthermia and Pothotothermal Combination Cancer Therapy
Published on: May 22, 2020
First proof of bismuth oxide nanoparticles as efficient radiosensitisers on highly radioresistant cancer cells
Callum Stewart1, Konstantin Konstantinov2, Sally McKinnon3
1School of Chemistry, University of Wollongong, Northfields Ave, NSW 2522, Australia; Institute of Superconducting and Electronic Materials (ISEM), University of Wollongong, Squires Way, North Wollongong, NSW 2500, Australia; Illawarra Health and Medical Research Institute (IHMRI), University of Wollongong, Northfields Ave, NSW 2522, Australia.
Abstract:
This study provides the first proof of the novel application of bismuth oxide as a radiosensitiser. It was shown that on the highly radioresistant 9L gliosarcoma cell line, bismuth oxide nanoparticles sensitise to both kilovoltage (kVp) or megavoltage (MV) X-rays radiation. 9L cells were exposed to a concentration of 50μg.mL-1 of nanoparticle before irradiation at 125kVp and 10MV. Sensitisation enhancement ratios of 1.48 and 1.25 for 125kVp and 10MV were obtained in vitro, respectively. The radiation enhancement of the nanoparticles is postulated to be a combination of the high Z nature of the bismuth (Z=83), and the surface chemistry. Monte Carlo simulations were performed to elucidate the physical interactions between the incident radiation and the nanoparticle. The results of this work show that Bi2O3 nanoparticles increase the radiosensitivity of 9L gliosarcoma tumour cells for both kVp and MV energies. Monte Carlo simulations demonstrate the advantage of a platelet morphology.
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against...
Treatment Resistant Cancers

