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Author Spotlight: Innovative Cancer Therapies with Iron Oxide Nanoparticles for Glioblastoma Treatment
Published on: September 27, 2024
Challenges and advances for glioma therapy based on inorganic nanoparticles
Die Hu1, Miao Xia1, Linxuan Wu1
1Key Laboratory of Cell Biology, Ministry of Public Health and Key Laboratory of Medical Cell Biology, Ministry of Education, China Medical University, Shenyang, 110122, China.
Abstract:
Glioma is one of the most serious central nervous system diseases, with high mortality and poor prognosis. Despite the continuous development of existing treatment methods, the median survival time of glioma patients is still only 15 months. The main treatment difficulties are the invasive growth of glioma and the obstruction of the blood-brain barrier (BBB) to drugs. With rapid advancements in nanotechnology, inorganic nanoparticles (INPs) have shown favourable application prospects in the diagnosis and treatment of glioma. Due to their extraordinary intrinsic features, INPs can be easily fabricated, while doping with other elements and surface modification by biological ligands can be used to enhance BBB penetration, targeted delivery and biocompatibility. Guided glioma theranostics with INPs can improve and enhance the efficacy of traditional methods such as chemotherapy, radiotherapy and gene therapy. New strategies, such as immunotherapy, photothermal and photodynamic therapy, magnetic hyperthermia therapy, and multifunctional inorganic nanoplatforms, have also been facilitated by INPs. This review emphasizes the current state of research and clinical applications of INPs, including glioma targeting and BBB penetration enhancement methods, in vivo and in vitro biocompatibility, and diagnostic and treatment strategies. As such, it provides insights for the development of novel glioma treatment strategies.
Insights
Inorganic nanoparticles (INPs) offer new hope for treating aggressive brain tumors like glioma. These nanoparticles enhance drug delivery across the blood-brain barrier (BBB) and improve treatment efficacy.
Area of Science:
- Nanotechnology
- Biomedical Engineering
- Oncology
Background:
- Glioma is a severe central nervous system disease with low survival rates.
- Current treatments face challenges due to invasive tumor growth and the blood-brain barrier (BBB).
- Inorganic nanoparticles (INPs) present promising solutions for glioma diagnosis and therapy.
Purpose of the Study:
- To review the current research and clinical applications of INPs in glioma theranostics.
- To highlight strategies for enhancing BBB penetration and targeted delivery of INPs.
- To discuss the role of INPs in improving existing and novel glioma treatment modalities.
Main Methods:
- Fabrication and modification of INPs for enhanced properties.
- Strategies for improving INP penetration of the blood-brain barrier (BBB).
- Review of INP applications in chemotherapy, radiotherapy, gene therapy, immunotherapy, and hyperthermia.
Main Results:
- INPs can be engineered for improved BBB penetration, targeted delivery, and biocompatibility.
- INPs facilitate advanced theranostic strategies, including immunotherapy and hyperthermia.
- INPs enhance the efficacy of conventional glioma treatments.
Conclusions:
- INPs show significant potential for advancing glioma diagnosis and treatment.
- Further research into INP-based strategies can lead to novel therapeutic approaches.
- INPs offer a versatile platform for overcoming current limitations in glioma therapy.

