New Perspectives in the Treatment of Tumor Cells by Electromagnetic Radiation at Resonance Frequencies in Cellular Membrane Channels

E. Calabrò, S. Magazù
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引用次数: 5

Abstract

The use of electromagnetic fields has been considered as adjuvant therapy for the treatment of cancer given that some clinical trials have shown that the irradiation of cancer cells with electromagnetic fields can slow down the disease progression. We hypothesize that this effect could be amplified by irradiating tumor cells with electromagnetic fields having frequencies close to the natural resonant frequencies of membrane channels in tumor cells, in order to obtain a significant change of the ion flux across tumor cell membrane channels, inducing the largest harmful alteration in their cellular function. Neuronal-like cells were used as a cell model and exposed for 6 h to electromagnetic fields at different frequencies (0, 50 Hz, 900 MHz) at the same intensity of 2 mT. The exposure system was represented by two Helmholtz coils driven by a power amplifier in current mode and an arbitrary function generator. FTIR spectroscopy was used to evaluate the results of the exposure. The results of this study showed that the Amide I vibration band increased in intensity with the increase of the frequency, leading us to assume that the displacement of the cell channels α-helices depends on the frequency of the applied electromagnetic fields. This preliminary result leads us to plan future research aimed at searching for the natural frequencies of membrane channels in tumor cells using resonant electromagnetic fields in order to damage the cellular functions of tumor cells. Clinical trials are needed to confirm such a hypothesis derived from this physical study.
细胞膜通道共振频率电磁辐射治疗肿瘤细胞的新进展
由于一些临床试验表明,用电磁场照射癌细胞可以减缓疾病的进展,因此使用电磁场被认为是治疗癌症的辅助疗法。我们假设,用频率接近肿瘤细胞膜通道自然共振频率的电磁场照射肿瘤细胞,可以放大这种效应,从而使肿瘤细胞膜通道上的离子通量发生显著变化,对其细胞功能造成最大的有害改变。以神经元样细胞为细胞模型,在相同强度为2 mT的不同频率(0、50 Hz、900 MHz)电磁场中暴露6 h。暴露系统由电流模式功率放大器驱动的两个亥姆霍兹线圈和一个任意函数发生器表示。用FTIR光谱对曝光结果进行了评价。本研究结果表明,酰胺I振动带的强度随着频率的增加而增加,这使得我们假设细胞通道α-螺旋的位移取决于外加电磁场的频率。这一初步结果引导我们计划未来的研究,旨在利用共振电磁场寻找肿瘤细胞膜通道的固有频率,从而破坏肿瘤细胞的细胞功能。需要临床试验来证实从这项物理研究中得出的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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