Published August 2019 | Version v1
Journal article

Nanoparticle based induction heating at low magnitudes of magnetic field strengths for breast cancer therapy

  • 1. Mechatronics Engineering Program, Faculty of Engineering and Natural Sciences, Sabanci University (Turkey)
  • 2. Molecular Biology, Genetics and Bioengineering Program, Faculty of Engineering and Natural Sciences (Turkey)
  • 3. Department of Chemistry, Faculty of Arts and Sciences, Koc University, Sariyer, Istanbul (Turkey)
  • 4. Center of Excellence for Functional Surfaces and Interfaces for Nano Diagnostics (EFSUN), Sabanci University, Orhanli, 34956 Tuzla, Istanbul (Turkey)
  • 5. SUNUM Nanotechnology Research and Application Center (Turkey)

Description

Magnetic hyperthermia has received much attention during the last decade due to its implementation in cancer treatment. Recently, functionalized superparamagnetic iron oxide nanoparticles (SPION) emerged as a strong alternative adjuvant treatment approach, which complements conventional methods such as chemotherapy. In this study, we demonstrate the anticancer effect of Poly(acrylic acid)-coated, anti-HER2-tagged SPIONs on breast cancer cells using a low magnetic field strength of 0.8 kAm−1, which is significantly lower compared to the literature, with a frequency of 400 kHz. Specificity was achieved via anti-HER2 antibody attachment to nanoparticles. HER2-positive SKBR3 and MDA-MB-453 cell lines internalized the nanoparticles successfully. These nanoparticles, which were not toxic to these cell lines, led to a prominent decrease in cell proliferation and survival in MDA-MB-453 cells when subjected to hyperthermia. Therefore, the hyperthermia-targeted SPION approach could be developed as a potential cancer treatment approach against breast cancer and possible other cancer types.

Additional details

Identifiers

DOI
10.1016/j.jmmm.2019.03.117;
PII
S0304885318324831;

Publishing Information

Journal Title
Journal of Magnetism and Magnetic Materials
Journal Volume
483
Journal Page Range
p. 169-177
ISSN
0304-8853
CODEN
JMMMDC

Optional Information

Copyright
Copyright (c) 2019 Elsevier B.V. All rights reserved.