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Carbon-covered magnetic nanomaterials and their application for the thermolysis of cancer cells

机译:碳包覆的磁性纳米材料及其在癌细胞热解中的应用

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摘要

Three types of graphitic shelled-magnetic core (Fe, Fe/Co, and Co) nanoparticles (named as C-Fe, C-Fe/Co, and C-Co NPs) were synthesized by radio frequency-catalytic chemical vapor deposition (RF-cCVD). X-ray diffraction and X-ray photoelectron spectroscopy analysis revealed that the cores inside the carbon shells of these NPs were preserved in their metallic states. Fluorescence microscopy images indicated effective penetrations of the NPs through the cellular membranes of cultured cancer HeLa cells, both inside the cytoplasm and the nucleus. Low RF radiation of 350 kHz induced localized heating of the magnetic NPs, which triggered cell death. Apoptosis inducement was found to be dependent on the RF irradiation time and NP concentration. It was showed that the Fe-C NPs had a much higher ability of killing the cancer cells (over 99%) compared with the other types of NPs (C-Co or C-Fe/Co), even at a very low concentration of 0.83 μg/mL. The localized heating of NPs inside the cancer cells comes from the hysteresis heating and resistive heating through eddy currents generated under the RF radiation. The RF thermal ablation properties of the magnetic NPs were correlated with the analysis provided by a superconducting quantum interference device (SQUID).
机译:通过射频催化化学气相沉积(RF)合成了三种类型的石墨壳磁核(Fe,Fe / Co和Co)纳米颗粒(分别称为C-Fe,C-Fe / Co和C-Co NPs) -cCVD)。 X射线衍射和X射线光电子能谱分析表明,这些NP碳壳内部的核被保留为金属态。荧光显微镜图像表明,NPs有效地穿透了细胞质和细胞核内培养的癌细胞HeLa细胞的细胞膜。 350 kHz的低RF辐射会引起磁性NP的局部加热,从而触发细胞死亡。发现凋亡诱导取决于RF照射时间和NP浓度。结果表明,与其他类型的NP(C-Co或C-Fe / Co)相比,Fe-C NP杀灭癌细胞的能力(99%以上)要高得多,即使在很低的浓度下也是如此。 0.83微克/毫升癌细胞内部NP的局部加热来自磁滞加热和RF辐射下产生的涡流的电阻加热。磁性NP的RF热消融性能与超导量子干涉仪(SQUID)提供的分析相关。

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