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Cell survival analysis of radiosensitization effects by gold nanoparticles for proton beam therapy


Citation

Ab Rashid, Raizulnasuha and Talik Sisin, Noor Nabilah and Abdul Razak, Khairunisak and Geso, Moshi and Akasaka, Hiroaki and Sasaki, Ryohei and Tominaga, Takahiro and Miura, Hayato and Nishi, Masashi and Almutery, Aml Aied and Rahman, Wan Nordiana (2025) Cell survival analysis of radiosensitization effects by gold nanoparticles for proton beam therapy. Journal of Radiation Research and Applied Sciences, 18 (1). art. no. 101203. pp. 1-8. ISSN 1687-8507

Abstract

Combining therapy and radiosensitizer depicted a promising future for cancer patients. This study evaluating on the radiosensitization effects of gold nanoparticles (AuNPs) for proton beam therapy using different radiobiological cell survival models. Human colon carcinoma cell lines (HCT 116) were used with 1.9 nm AuNPs and irradiated by different doses of a 150 MeV proton beam within the Spread-out Bragg Peak (SOBP) region. Clonogenic assay were used to obtain cell survival data which then be fitted to Linear Quadratic (LQ), Multi-target (MT), Repairable Conditionally Repairable (RCR), Pade’ Linear Quadratic (PLQ), Kavanagh-Newman (KN), and Two Components (2C). The cellular uptake, localization, cytotoxicity and ROS measurement study were also conducted. The results show internalization of AuNPs manifested with the increase granulation of cells presented by side scattering (SSC) result of 7.3% compared to control. AuNPs were seen localized in the cytoplasm, yet no traces in nucleus area. Evaluation on the radiosensitization effects depicted sensitization enhancement ratio (SER) of 3.78 with LQ model, while other models also indicate similar increment of SER but less goodness of fit with the experimental data. The percentage of reactive oxygen species (ROS) induced by AuNPs are found to be around 234% which is double compared to control. In conclusion, the cell survival analysis with different radiobiological models shows radiosensitization effects by AuNPs when irradiated with proton beam. The evidence is also supported by the ROS data and the analysis of the model’s parameter that could also be used to predict and quantify radiosensitization effects.


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Additional Metadata

Item Type: Article
Divisions: Centre For Diagnostic Nuclear Imaging
DOI Number: https://doi.org/10.1016/j.jrras.2024.101203
Publisher: Elsevier BV
Keywords: Gold nanoparticles; Proton beam therapy; Radiosensitization; Radiobiological model
Depositing User: Ms. Nuraida Ibrahim
Date Deposited: 11 Jun 2025 08:03
Last Modified: 11 Jun 2025 08:03
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1016/j.jrras.2024.101203
URI: http://psasir.upm.edu.my/id/eprint/117772
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