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Updated: Jun 13, 2025

Biofunctionalization of Magnetic Nanomaterials
Published on: July 16, 2020
Therapeutic types and advantages of functionalized nanoparticles in inducing ferroptosis in cancer therapy
Ziying Wang1, Miaomiao Zhao2, Xiaotong Huang1
1School of Nursing, Shandong Second Medical University, Weifang, Shandong, China.
Background:
The clinical efficacy of cancer treatment protocols remains unsatisfactory; however, the emergence of ferroptosis-driven therapy strategies has renewed hope for tumor treatment, owing to their remarkable tumor suppression effects. Biologically based small-molecule inducers are used in conventional method to induce ferroptosis. Nevertheless, some molecular drugs have limited solubility, poor ability to target cells, and fast metabolism, which hinder their ability to induce ferroptosis over a prolonged period. Fortunately, further investigations of ferroptosis and the development of nanotechnology have demonstrated that nanoparticles (NPs) are more efficient in inducing ferroptosis than drugs alone, which opens up new perspectives for cancer therapy.
Objective:
In order to organize a profile of recent advance in NPs for inducing ferroptosis in cancer therapy, and NPs were comprehensively classified in a new light.Materials and methods: We comprehensively searched the databases such as PubMed and Embase. The time limit for searching was from the establishment of the database to 2023.11. All literatures were related to "ferroptosis", "nanoparticles", "nanodelivery systems", "tumors", "cancer".
Results:
We summarized and classified the available NPs from a new perspective. The NPs were classified into six categories based on their properties: (1) iron oxide NPs (2) iron - based conversion NPs (3) core-shell structure (4) organic framework (5) silica NPs (6) lipoprotein NPs. According to the therapeutic types of NPs, they can be divided into categories: (1) NPs induced ferroptosis-related immunotherapy (2) NPs loaded with drugs (3) targeted therapy of NPs (4) multidrug resistance therapy (5) gene therapy with NPs (6) energy conversion therapy.
Conclusions:
The insights gained from this review can provide ideas for the development of original NPs and nanodelivery systems, pave the way for related nanomaterials application in clinical cancer therapy, and advance the application and development of nanotechnology in the medical field.
Insights
Nanoparticles (NPs) offer a promising approach to cancer therapy by effectively inducing ferroptosis, overcoming limitations of conventional drugs. This review classifies NPs for enhanced tumor suppression and future nanomedicine development.
Area of Science:
- Nanomedicine
- Biotechnology
- Materials Science
Background:
- Conventional cancer treatments show limited clinical efficacy.
- Ferroptosis-inducing therapies offer novel tumor suppression strategies.
- Small-molecule drugs for ferroptosis have limitations like poor solubility and targeting.
Purpose of the Study:
- To review and classify nanoparticles (NPs) for ferroptosis induction in cancer therapy.
- To provide a new perspective on NP classification for cancer treatment.
- To highlight advancements in nanotechnology for cancer therapy.
Main Methods:
- Comprehensive literature search of PubMed and Embase databases up to November 2023.
- Inclusion of studies on ferroptosis, nanoparticles, nanodelivery systems, and cancer.
- Classification of NPs based on properties and therapeutic applications.
Main Results:
- NPs are more effective than drugs alone in inducing ferroptosis.
- NPs were classified into six categories based on properties (e.g., iron oxide, core-shell).
- Therapeutic classifications included immunotherapy, drug loading, targeted therapy, and gene therapy.
Conclusions:
- This review offers insights for developing novel NPs and nanodelivery systems.
- It paves the way for applying nanomaterials in clinical cancer therapy.
- It advances the use of nanotechnology in the medical field for cancer treatment.
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