Functionalized SPION immobilized on graphene-oxide: Anticancer and antiviral study

Shaghayegh Kohzadi1, Najmeh Najmoddin1, Hadi Baharifar1

  • 1Department of Biomedical Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Diamond and Related Materials
|June 9, 2022
PubMed

Insights

This study developed graphene oxide decorated with superparamagnetic iron oxide nanoparticles (GO/SPION) for cancer and coronavirus treatment. GO/SPION@PEG showed efficacy against cancer, while GO/SPION@CS demonstrated significant SARS-CoV-2 inhibition.

Area of Science:

  • Materials Science
  • Nanotechnology
  • Biomedical Engineering

Background:

  • Advanced materials are crucial for controlling diseases like cancer and coronavirus.
  • Graphene oxide (GO) and superparamagnetic iron oxide nanoparticles (SPION) offer unique properties for biomedical applications.

Purpose of the Study:

  • To synthesize and characterize GO decorated with SPION, PEG-SPION, and CS-SPION (GO/SPION, GO/SPION@PEG, GO/SPION@CS).
  • To evaluate the potential of these nanocomposites in cancer treatment and viral inhibition.

Main Methods:

  • Nanocomposite synthesis and characterization using FESEM, XRD, and FTIR.
  • Magnetic properties assessed via vibrating sample magnetometry.
  • In vitro cytotoxicity assays and magnetic field-induced cancer cell ablation.
  • Surrogate virus neutralization tests for SARS-CoV-2 inhibition.

Main Results:

  • GO/SPION, GO/SPION@PEG, and GO/SPION@CS exhibited specific absorption rate (SAR) values of 305, 283, and 199 W/g, respectively.
  • GO/SPION@PEG achieved over 50% cancer cell death at 300 ppm.
  • GO/SPION@CS demonstrated 86% inhibition of SARS-CoV-2 binding.

Conclusions:

  • GO/SPION and GO/SPION@PEG show promise for hyperthermia-based cancer therapy due to high SAR and ILP values.
  • GO/SPION@CS exhibits significant potential for developing antiviral agents against coronaviruses.
  • These nanocomposites offer a dual therapeutic approach for cancer and viral infections.

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