198Au-Coated Superparamagnetic Iron Oxide Nanoparticles for Dual Magnetic Hyperthermia and Radionuclide Therapy of Hepatocellular Carcinoma

Author:

Gharibkandi Nasrin Abbasi1,Żuk Michał2ORCID,Muftuler Fazilet Zumrut Biber3,Wawrowicz Kamil1ORCID,Żelechowska-Matysiak Kinga1ORCID,Bilewicz Aleksander1ORCID

Affiliation:

1. Centre of Radiochemistry and Nuclear Chemistry, Institute of Nuclear Chemistry and Technology, Dorodna 16 St., 03-195 Warsaw, Poland

2. Faculty of Chemistry, University of Warsaw, Pasteura 1 St., 02-093 Warsaw, Poland

3. Nuclear Applications Department, Institute of Nuclear Sciences, Ege University, 35040 Bornova, Izmir, Turkey

Abstract

This study was performed to synthesize a radiopharmaceutical designed for multimodal hepatocellular carcinoma (HCC) treatment involving radionuclide therapy and magnetic hyperthermia. To achieve this goal, the superparamagnetic iron oxide (magnetite) nanoparticles (SPIONs) were covered with a layer of radioactive gold (198Au) creating core–shell nanoparticles (SPION@Au). The synthesized SPION@Au nanoparticles exhibited superparamagnetic properties with a saturation magnetization of 50 emu/g, which is lower than reported for uncoated SPIONs (83 emu/g). Nevertheless, the SPION@Au core–shell nanoparticles showed a sufficiently high saturation magnetization value which allows them to reach a temperature of 43 °C at a magnetic field frequency of 386 kHz. The cytotoxic effect of nonradioactive and radioactive SPION@Au–polyethylene glycol (PEG) bioconjugates was carried out by treating HepG2 cells with various concentrations (1.25–100.00 µg/mL) of the compound and radioactivity in range of 1.25–20 MBq/mL. The moderate cytotoxic effect of nonradioactive SPION@Au-PEG bioconjugates on HepG2 was observed. The cytotoxic effect associated with the β− radiation emitted by 198Au was much greater and already reaches a cell survival fraction below 8% for 2.5 MBq/mL of radioactivity after 72 h. Thus, the killing of HepG2 cells in HCC therapy should be possible due to the combination of the heat-generating properties of the SPION-198Au–PEG conjugates and the radiotoxicity of the radiation emitted by 198Au.

Funder

European Social Fund

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference41 articles.

1. Advanced radionuclides in diagnosis and therapy for hepatocellular carcinoma;Chen;Chin. Chem. Lett.,2022

2. Nanotechnology Based Approach for Hepatocellular Carcinoma Targeting;Alhalmi;Curr. Drug Targets,2021

3. Current Strategies to Identify Patients That Will Benefit from TACE Treatment and Future Directions a Practical Step-by-Step Guide;Stoehr;J. Hepatocell. Carcinoma,2021

4. Current status of nanomaterial-based treatment for hepatocellular carcinoma;Baig;Biomed. Pharmacother.,2019

5. Conventional versus drug-eluting bead transarterial chemoembolization: A better option for treatment of unresectable hepatocellular carcinoma;Razi;J. Interv. Med.,2020

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