Magnetic Hyperthermia Therapy for High-Grade Glioma: A State-of-the-Art Review

Author:

Rodriguez Benjamin12ORCID,Rivera Daniel1,Zhang Jack Y.1,Brown Cole1ORCID,Young Tirone12,Williams Tyree23,Huq Sakibul4,Mattioli Milena5,Bouras Alexandros5,Hadjpanayis Constantinos G.456

Affiliation:

1. Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA

2. Sinai BioDesign, Department of Neurosurgery, Mount Sinai, New York, NY 10029, USA

3. Rensselaer Polytechnic Institute, Troy, NY 12180, USA

4. Department of Neurological Surgery, UPMC, Pittsburgh, PA 15213, USA

5. Brain Tumor Nanotechnology Laboratory, UPMC Hillman Cancer Center, Pittsburgh, PA 15213, USA

6. Center for Image-Guided Neurosurgery, Department of Neurological Surgery, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213, USA

Abstract

Magnetic hyperthermia therapy (MHT) is a re-emerging treatment modality for brain tumors where magnetic nanoparticles (MNPs) are locally delivered to the brain and then activated with an external alternating magnetic field (AMF) to generate localized heat at a site of interest. Due to the recent advancements in technology and theory surrounding the intervention, clinical and pre-clinical trials have demonstrated that MHT may enhance the effectiveness of chemotherapy and radiation therapy (RT) for the treatment of brain tumors. The future clinical success of MHT relies heavily on designing MNPs optimized for both heating and imaging, developing reliable methods for the local delivery of MNPs, and designing AMF systems with integrated magnetic particle imaging (MPI) for use in humans. However, despite the progression of technological development, the clinical progress of MHT has been underwhelming. This review aims to summarize the current state-of-the-art of MHT and offers insight into the current barriers and potential solutions for moving MHT forward.

Publisher

MDPI AG

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