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Non-Temperature Induced Effects of Magnetized Iron Oxide Nanoparticles in Alternating Magnetic Field in Cancer Cells

机译:磁化的氧化铁纳米颗粒在癌细胞交变磁场中的非温度诱导作用。

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摘要

This paper reports the damaging effects of magnetic iron-oxide nanoparticles (MNP) on magnetically labeled cancer cells when subjected to oscillating gradients in a strong external magnetic field. Human breast cancer MDA-MB-231 cells were labeled with MNP, placed in the high magnetic field, and subjected to oscillating gradients generated by an imaging gradient system of a 9.4T preclinical MRI system. Changes in cell morphology and a decrease in cell viability were detected in cells treated with oscillating gradients. The cytotoxicity was determined qualitatively and quantitatively by microscopic imaging and cell viability assays. An approximately 26.6% reduction in cell viability was detected in magnetically labeled cells subjected to the combined effect of a static magnetic field and oscillating gradients. No reduction in cell viability was observed in unlabeled cells subjected to gradients, or in MNP-labeled cells in the static magnetic field. As no increase in local temperature was observed, the cell damage was not a result of hyperthermia. Currently, we consider the coherent motion of internalized and aggregated nanoparticles that produce mechanical moments as a potential mechanism of cell destruction. The formation and dynamics of the intracellular aggregates of nanoparticles were visualized by optical and transmission electron microscopy (TEM). The images revealed a rapid formation of elongated MNP aggregates in the cells, which were aligned with the external magnetic field. This strategy provides a new way to eradicate a specific population of MNP-labeled cells, potentially with magnetic resonance imaging guidance using standard MRI equipment, with minimal side effects for the host.
机译:本文报道了在强外部磁场中经历振荡梯度时,磁性氧化铁纳米颗粒(MNP)对磁性标记癌细胞的破坏作用。用MNP标记人类乳腺癌MDA-MB-231细胞,将其置于强磁场中,并经受由9.4T临床前MRI系统的成像梯度系统生成的振荡梯度。在用振荡梯度处理的细胞中检测到细胞形态的变化和细胞活力的降低。通过显微镜成像和细胞生存力分析定性和定量地确定细胞毒性。在受到静态磁场和振荡梯度共同作用的磁性标记细胞中,检测到细胞活力降低了约26.6%。在经受梯度的未标记细胞或在静磁场中的MNP标记细胞中,未观察到细胞活力降低。由于未观察到局部温度升高,因此细胞损伤不是热疗的结果。当前,我们将产生机械力矩的内在和聚集的纳米粒子的相干运动视为细胞破坏的潜在机制。通过光学和透射电子显微镜(TEM)观察纳米颗粒的细胞内聚集体的形成和动力学。图像显示了细胞中快速形成的细长MNP聚集体,该聚集体与外部磁场对齐。该策略提供了一种新的方法,可以根除使用MNP标记的特定细胞群,潜在地使用标准MRI设备进行磁共振成像指导,对宿主的副作用最小。

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