Cancer therapy with iron oxide nanoparticles: Agents of thermal and immune therapies

Frederik Soetaert1, Preethi Korangath2, David Serantes3

  • 1Department of Electrical Energy, Metals, Mechanical Constructions and Systems, Ghent University, Belgium; Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins University School of Medicine, Baltimore, MD 21231, USA.

Insights

Iron oxide nanoparticles have a long clinical history and proven safety, offering valuable lessons for cancer nanomedicine. Emerging research reveals their potential to modulate the immune system for anti-tumor responses.

Area of Science:

  • Nanomedicine
  • Biotechnology
  • Materials Science

Background:

  • Cancer nanomedicine faces perception challenges despite product development.
  • Iron oxide nanoparticles (IONPs) possess a nine-decade clinical history demonstrating safety and versatility.
  • Existing analyses often overlook the extensive clinical use of IONPs.

Purpose of the Study:

  • To review clinical experience with IONPs in cancer nanomedicine.
  • To highlight lessons learned from IONP applications for nanotechnology-based cancer therapeutics.
  • To explore barriers and opportunities for IONPs in clinical cancer care.

Main Methods:

  • Review of clinical data for systemic liposomal drug delivery.
  • Analysis of parenteral iron deficiency anemia (IDA) therapy with IONPs.
  • Examination of magnetic fluid hyperthermia (MFH) clinical trials and acceptance barriers.

Main Results:

  • IONP success in IDA therapy leverages innate immune system interactions, unlike liposomal delivery.
  • MFH, an IONP-based thermal therapy, shows enhanced survival in trials but faces clinical adoption challenges.
  • New research indicates IONPs possess immune-modulating potential, inducing anti-tumor responses.

Conclusions:

  • Clinical IONP applications offer critical insights into nanomedicine development and translation.
  • Understanding nanoparticle-immune system interactions is key for therapeutic success.
  • Multidisciplinary approaches are essential for advancing nanomedicines in cancer care.

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