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乳腺癌和正常乳腺上皮细胞的细胞内力学微环境对FeO纳米颗粒磁热疗的影响

Impact of the intracellular mechanical microenvironment of breast cancer and normal mammary epithelial cells on magnetic hyperthermia of FeO nanoparticles.

作者信息

Wang Man, Chen Huajian, Sun Rui, Zeng Tianjiao, Lu Chengyu, Yoshitomi Toru, Mamiya Hiroaki, Takeguchi Masaki, Kawazoe Naoki, Yang Yingnan, Chen Guoping

机构信息

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.

Research Center for Macromolecules and Biomaterials, National Institute for Materials Science, Ibaraki 305-0044, Japan.

出版信息

Acta Biomater. 2025 Aug 20. doi: 10.1016/j.actbio.2025.08.031.

Abstract

Magnetic hyperthermia has been widely investigated as a promising cancer treatment modality. Efficient heat generation by magnetic nanoparticles under an alternating magnetic field (AMF) is critical for therapeutic efficacy. While extracellular conditions in the tumor microenvironment are considered key determinants of heat generation, the impact of the intracellular microenvironment has received less attention. This study aimed to elucidate how cytoskeletal architecture and intracellular mechanical properties-key components of the intracellular microenvironment-affect the heat generation and hyperthermia efficiency of magnetic FeO nanoparticles (FeO NPs) in human breast carcinomas and normal human mammary epithelial cells. Under AMF exposure, identical amounts of internalized FeO NPs produced different heating effects in the two cell types, resulting in differential magnetic hyperthermia efficiency. FeO NPs internalized by breast carcinomas produced greater temperature increase and induced apoptosis more effectively than those in normal mammary epithelial cells. Moreover, alternating current susceptibility analysis revealed that the softer intracellular cytoskeletal mechanics of breast carcinomas enhanced magnetothermal conversion compared with that of normal mammary epithelial cells. These findings highlight the critical role of intracellular cytoskeletal mechanics in regulating the magnetothermal behavior of FeO NPs during magnetic hyperthermia. STATEMENT OF SIGNIFICANCE: This study reveals the critical role of the intracellular mechanical microenvironment of breast cancer cells in magnetothermal conversion of magnetic nanoparticles. Breast cancer cells have less organized cytoskeletal structure and softer intracellular microenvironment that are inherently more conducive to the magnetothermal conversion and heating performance of FeO NPs than normal cells. FeO NPs internalized by breast cancer cells generate higher local temperatures and induce significantly greater apoptotic effects. These findings highlight the breast cancer cell intracellular microenvironment as a key determinant in the effectiveness of magnetic hyperthermia, offering new insights into the design and optimization of nanoparticle-based cancer therapies.

摘要

磁热疗作为一种很有前景的癌症治疗方式已得到广泛研究。在交变磁场(AMF)作用下,磁性纳米颗粒高效产热对治疗效果至关重要。虽然肿瘤微环境中的细胞外条件被认为是产热的关键决定因素,但细胞内微环境的影响却较少受到关注。本研究旨在阐明细胞骨架结构和细胞内力学特性(细胞内微环境的关键组成部分)如何影响磁性FeO纳米颗粒(FeO NPs)在人乳腺癌细胞和正常人乳腺上皮细胞中的产热及热疗效率。在AMF暴露下,相同数量内化的FeO NPs在两种细胞类型中产生了不同的热效应,导致磁热疗效率存在差异。与正常人乳腺上皮细胞相比,乳腺癌细胞内化的FeO NPs产生的温度升高更大,且诱导凋亡更有效。此外,交流磁化率分析表明,与正常人乳腺上皮细胞相比,乳腺癌细胞较软的细胞内细胞骨架力学增强了磁热转换。这些发现突出了细胞内细胞骨架力学在磁热疗过程中调节FeO NPs磁热行为的关键作用。重要性声明:本研究揭示了乳腺癌细胞内机械微环境在磁性纳米颗粒磁热转换中的关键作用。乳腺癌细胞具有组织性较差的细胞骨架结构和较软的细胞内微环境,与正常细胞相比,其本质上更有利于FeO NPs的磁热转换和加热性能。乳腺癌细胞内化的FeO NPs产生更高的局部温度,并诱导出明显更大的凋亡效应。这些发现突出了乳腺癌细胞内微环境是磁热疗有效性的关键决定因素,为基于纳米颗粒的癌症治疗的设计和优化提供了新的见解。

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