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首页> 外文期刊>Scientific reports. >Tumour-treating fields (TTFields): Investigations on the mechanism of action by electromagnetic exposure of cells in telophase/cytokinesis
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Tumour-treating fields (TTFields): Investigations on the mechanism of action by electromagnetic exposure of cells in telophase/cytokinesis

机译:肿瘤治疗场(TTFields):在末期/胞质分裂中通过细胞电磁暴露的作用机理的研究

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Tumour-treating fields (TTFields) use alternating electric fields which interfere with dividing cells, thereby reducing tumour growth. Previous reports suggest that electrical forces on cell structure proteins interfered with the chromosome separation during mitosis and induced apoptosis. In the present report we evaluate electromagnetic exposure of cells in telophase/cytokinesis in order to further analyse the mechanism of action on cells. We performed numerical electromagnetic simulations to analyse the field distribution in a cell during different mitotic phases. Based thereon, we developed an electric lumped element model of the mitotic cell. Both the electromagnetic simulation and the lumped element model predict a local increase of the specific absorption rate (SAR) as a measure of the electromagnetically induced power absorption density at the mitotic furrow which may help to explain the anti-proliferative effect. In accordance with other reports, cell culture experiments confirmed that TTFields reduce the proliferation of different glioma cell lines in a field strength- and frequency-dependent manner. Furthermore, we found an additional dependence on the commutation time of the electrical fields. The report gives new insights into TTFields' anti-proliferative effect on tumours, which could help to improve future TTFields application systems.
机译:肿瘤治疗场(TTFields)使用交变电场来干扰分裂细胞,从而减少肿瘤的生长。先前的报道表明,细胞结构蛋白上的电力干扰有丝分裂期间的染色体分离并诱导凋亡。在本报告中,我们评估末期/胞质分裂中细胞的电磁暴露,以进一步分析作用于细胞的机制。我们进行了数值电磁仿真,以分析不同有丝分裂阶段细胞中的场分布。基于此,我们开发了有丝分裂细胞的电集总元件模型。电磁仿真和集总元素模型都预测比吸收率(SAR)的局部增加,作为有丝分裂沟处电磁感应功率吸收密度的量度,这可能有助于解释抗增殖作用。根据其他报道,细胞培养实验证实,TTFields以场强和频率依赖性方式减少不同神经胶质瘤细胞系的增殖。此外,我们发现了对电场换向时间的其他依赖性。该报告对TTFields对肿瘤的抗增殖作用提供了新的见解,这可能有助于改善未来的TTFields应用系统。

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