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Radiofrequency Fields Preferentially Enhance In Vitro Cellular Radiosensitivity to Large Fractional Doses in a p53-Dependent Manner

机译:射频域优先以P53依赖性方式增强到大小的分数剂量的体外辐射敏感性

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摘要

Hypofractionated radiotherapy, which employs large fractions of ionizing radiation, is an effective treatment modality for most superficial cancers, but may result in severe side effects from normal tissue toxicity. It is, therefore, desirable to identify radiation modifying agents that potentiate the tumor inactivating effects of ionizing radiation and thereby lead to a reduction in radiation dose and prevent normal tissue toxicity. This study assessed the effect of radiofrequency fields (RFF), modulated at 100 and 1000 Hz, on the radiosensitivity of four human cell lines: MeWo (melanoma; p53 mutant), Be11 (melanoma; p53 wild-type), DU145 (prostate cancer; p53 mutant), and L132 (normal lung fibroblasts; p53 wild-type), using the colony assay. The magnetic flux densities that were induced in cell cultures ranged from 6.74 to 22.43 muT. The data demonstrate that RFF are more efficient in modulating large fractional doses of X-rays in a frequency- and cell-type-dependent manner. Their effects on radiosensitivity also appear to be linked to p53 status, with cells with mutant p53 being less sensitized than those that are p53 wild-type. These findings suggest that RFF could find application in hypofractionated radiotherapy as adjuvants, and can have a positive impact on the treatment of superficial tumors, and specifically tumors that are p53 wild-type.
机译:低分割放射治疗使用了大量电离辐射,是大多数浅表癌症的有效治疗方式,但可能会导致正常组织毒性的严重副作用。因此,有必要确定辐射修饰剂,以增强电离辐射的肿瘤灭活效应,从而降低辐射剂量并防止正常组织毒性。本研究采用集落分析法评估了100和1000 Hz调制的射频场(RFF)对四种人类细胞系的放射敏感性的影响:MeWo(黑色素瘤;p53突变型)、Be11(黑色素瘤;p53野生型)、DU145(前列腺癌;p53突变型)和L132(正常肺成纤维细胞;p53野生型)。在细胞培养中诱导的磁通密度范围为6.74至22.43 muT。数据表明,RFF在以频率和细胞类型依赖的方式调制大剂量X射线方面更有效。它们对放射敏感性的影响似乎也与p53状态有关,突变型p53细胞的敏感性低于野生型p53细胞。这些发现表明,RFF可以作为辅助剂应用于低分割放射治疗,并对浅表性肿瘤,尤其是p53野生型肿瘤的治疗产生积极影响。

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