Fagundes Daniele A, Leonel Liliam V, Fernandez-Outon Luis E, Ardisson José D, Santos Raquel G Dos
Centro de Desenvolvimento da Tecnologia Nuclear, Avenida Presidente Antônio Carlos, 6627, Belo Horizonte 31270-901, Minas Gerais, Brazil.
Departamento de Física, Universidade Federal de Minas Gerais, Avenida Presidente Antônio Carlos, 6627, Belo Horizonte 31270-901, Minas Gerais, Brazil.
Int J Mol Sci. 2025 Mar 17;26(6):2706. doi: 10.3390/ijms26062706.
Magnetic hyperthermia can complement traditional cancer treatments by exploiting the greater heat sensitivity of tumor cells. This approach allows for localized action, increasing its therapeutic effectiveness. In this study, MCF-7 breast cancer cell radiosensitization, induced by the magnetic hyperthermia of PEGylated nickel ferrite magnetic nanoparticles (PEG-NiF MNPs), was evaluated by exposing the cells in the presence of MNPs to an alternating magnetic field followed by Co gamma irradiation. Superparamagnetic PEG-NiF MNPs (25.6 ± 0.5 nm) synthesized via the hydrothermal method exhibited a hydrodynamic size below 150 nm, a saturation magnetization of 53 emu·g, biocompatibility of up to 100 µg·mL, selectivity for breast cancer cells, and an up-to-fivefold increase in therapeutic efficacy of radiation. When combined with magnetic hyperthermia, this increase reached up-to-sevenfold. These results indicate that PEG-NiF MNPs are suitable thermal radiosensitization agents for breast cancer cells.
磁热疗可通过利用肿瘤细胞更高的热敏感性来补充传统癌症治疗方法。这种方法能够实现局部作用,提高其治疗效果。在本研究中,通过将聚乙二醇化镍铁氧体磁性纳米颗粒(PEG-NiF MNPs)进行磁热疗,在交变磁场下使细胞暴露于MNPs后再进行钴γ射线照射,评估其对MCF-7乳腺癌细胞的放射增敏作用。通过水热法合成的超顺磁性PEG-NiF MNPs(25.6±0.5纳米)表现出流体动力学尺寸低于150纳米、饱和磁化强度为53emu·g、生物相容性高达100μg·mL、对乳腺癌细胞具有选择性,并且放射治疗效果提高了五倍。当与磁热疗联合使用时,这种提高可达七倍。这些结果表明PEG-NiF MNPs是适用于乳腺癌细胞的热放射增敏剂。