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Radiofrequency Field-Induced Radiosensitization Is Related to Reductions in Metabolic Activity

机译:射频场诱导的放射敏化与代谢活动的减少有关

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Although radiofrequency fields (RFFs) have been found to exhibit both radiosen-sitizing (enhancement of radiation) and radioprotective (mitigation of radiation) effects, mechanisms underlying these phenomena have not been clearly elucidated. Here, we use four human cell lines, namely, Me Wo and Be11 (melanomas), DU145 (prostate carcinoma), and L1 32 (normal lung fibroblasts), to assess the role of RFF modulation of cellular metabolic activity in altering radio sensitivity. We measure radiosensitivity and metabolic activity using colony-forming and 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assays, respectively. Cell lines that are more radiosensitized by RFF exposure show larger reductions in metabolic activity, relative to radiation treatment alone, regardless of whether RFF exposure occurs before or after X-ray irradiation. The finding that surviving cells maintain elevated metabolic activity when treated with a combination of RFFs and X-rays suggests that changes in metabolic activity may be triggered by RFFs to support processes such as DNA repair and alteration of long-term cell survival. Modulation of cellular metabolic activity by RFFs may have important ramifications for moderating ionizing radiation-induced effects. This must be carefully considered if RFFs are to be applied as adjuvants in radiotherapy.
机译:尽管射频场(RFF)已被发现同时表现出放射增敏(辐射增强)和辐射防护(辐射缓解)效应,但这些现象背后的机制尚未明确阐明。在这里,我们使用四种人类细胞系,即Me-Wo和Be11(黑色素瘤)、DU145(前列腺癌)和L1-32(正常肺成纤维细胞),来评估RFF调节细胞代谢活动在改变放射敏感性中的作用。我们分别使用集落形成法和3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化法测定辐射敏感性和代谢活性。无论RFF照射是在X射线照射之前还是之后发生,与单独的辐射治疗相比,RFF照射更具辐射敏感性的细胞系显示出代谢活性的更大降低。当使用RFF和X射线联合治疗时,存活细胞保持较高的代谢活性的发现表明,RFF可能会触发代谢活性的变化,以支持DNA修复和长期细胞存活的改变等过程。RFF对细胞代谢活性的调节可能对缓和电离辐射诱导的效应具有重要影响。如果要将RFF用作放射治疗的佐剂,必须仔细考虑这一点。

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