Wang Man, Sun Rui, Chen Huajian, Yoshitomi Toru, Mamiya Hiroaki, Takeguchi Masaki, Kawazoe Naoki, Yang Yingnan, Chen Guoping
Research Center for Macromolecules and Biomaterials, National Institute for Materials Science, Ibaraki 305-0044, Japan.
Graduate School of Science and Technology, University of Tsukuba, Ibaraki 305-8577, Japan.
Mater Horiz. 2025 Jun 16;12(12):4363-4378. doi: 10.1039/d5mh00317b.
Magnetic hyperthermia using heat locally generated by magnetic nanoparticles (MNPs) under an alternating magnetic field (AMF) to ablate cancer cells has attracted enormous attention. The high accumulation of MNPs and slow heat dissipation generated in tumors are considered the dominant factors involved in magnetic hyperthermia. However, the influence of intracellular microenvironment on magnetic hyperthermia has been ignored. This study unveiled for the first time the critical role of intracellular microenvironment on magnetic hyperthermia. The intracellular microenvironments of cancer cells and normal cells showed different influence on the magnetothermal properties and magnetic hyperthermia effects of MNPs. The MNPs in cancer cells could generate higher temperatures and induce higher rates of apoptosis than those in normal cells. Compared with that of normal cells, the intracellular microenvironment of cancer cells was more conducive to Brownian relaxation and the dynamic magnetic response of internalized MNPs. The cancerous intracellular microenvironment had a discriminative effect on the magnetic hyperthermal effect of MNPs due to the low viscoelasticity of cancer cells, which was verified by the softening or stiffening of cells and simulation models created using viscous liquids or elastic hydrogels. These findings suggest that the intracellular microenvironment should be considered another critical factor of the magnetic hyperthermal effect of MNPs.
利用交变磁场(AMF)下磁性纳米颗粒(MNPs)局部产生的热量进行磁热疗以消融癌细胞,已引起了广泛关注。MNPs在肿瘤中的高积累以及产生的缓慢散热被认为是磁热疗的主要影响因素。然而,细胞内微环境对磁热疗的影响一直被忽视。本研究首次揭示了细胞内微环境在磁热疗中的关键作用。癌细胞和正常细胞的细胞内微环境对MNPs的磁热性能和磁热疗效果表现出不同的影响。与正常细胞中的MNPs相比,癌细胞中的MNPs能产生更高的温度并诱导更高的凋亡率。与正常细胞相比,癌细胞的细胞内微环境更有利于内化MNPs的布朗弛豫和动态磁响应。癌细胞内微环境由于癌细胞的低粘弹性对MNPs的磁热效应具有鉴别作用,这通过使用粘性液体或弹性水凝胶创建的细胞软化或硬化以及模拟模型得到了验证。这些发现表明,细胞内微环境应被视为MNPs磁热效应的另一个关键因素。