Franchini Valeria, De Sanctis Stefania, Marinaccio Jessica, De Amicis Andrea, Coluzzi Elisa, Di Cristofaro Sara, Lista Florigio, Regalbuto Elisa, Doria Andrea, Giovenale Emilio, Gallerano Gian Piero, Bei Roberto, Benvenuto Monica, Masuelli Laura, Udroiu Ion, Sgura Antonella
Scientific Department, Army Medical Center, Rome, Italy.
Department of Science, University "Roma Tre", Rome, Italy.
Environ Mol Mutagen. 2018 Jul;59(6):476-487. doi: 10.1002/em.22192. Epub 2018 Mar 30.
The applications of Terahertz (THz) technologies have significantly developed in recent years, and the complete understanding of the biological effects of exposure to THz radiation is becoming increasingly important. In a previous study, we found that THz radiation induced genomic damage in fetal fibroblasts. Although these cells demonstrated to be a useful model, exposure of human foetuses to THz radiation is highly improbable. Conversely, THz irradiation of adult dermal tissues is cause of possible concern for some professional and nonprofessional categories. Therefore, we extended our study to the investigation of the effects of THz radiation on adult fibroblasts (HDF). In this work, the effects of THz exposure on HDF cells genome integrity, cell cycle, cytological ultrastructure and proteins expression were assessed. Results of centromere-negative micronuclei frequencies, phosphorylation of H2AX histone, and telomere length modulation indicated no induction of DNA damage. Concordantly, no changes in the expression of proteins associated with DNA damage sensing and repair were detected. Conversely, our results showed an increase of centromere-positive micronuclei frequencies and chromosomal nondisjunction events, indicating induction of aneuploidy. Therefore, our results indicate that THz radiation exposure may affect genome integrity through aneugenic effects, and not by DNA breakage. Our findings are compared to published studies, and possible biophysical mechanisms are discussed. Environ. Mol. Mutagen. 59:476-487, 2018. © 2018 Wiley Periodicals, Inc.
近年来,太赫兹(THz)技术的应用有了显著发展,全面了解暴露于太赫兹辐射下的生物学效应变得越来越重要。在之前的一项研究中,我们发现太赫兹辐射会诱导胎儿成纤维细胞发生基因组损伤。尽管这些细胞被证明是一个有用的模型,但让人类胎儿暴露于太赫兹辐射是极不可能的。相反,对某些专业和非专业人群来说,对成人皮肤组织进行太赫兹照射可能令人担忧。因此,我们将研究扩展到对太赫兹辐射对成人成纤维细胞(HDF)影响的调查。在这项工作中,评估了太赫兹暴露对HDF细胞基因组完整性、细胞周期、细胞学超微结构和蛋白质表达的影响。着丝粒阴性微核频率、H2AX组蛋白磷酸化和端粒长度调节的结果表明未诱导DNA损伤。同样,未检测到与DNA损伤传感和修复相关的蛋白质表达有变化。相反,我们的结果显示着丝粒阳性微核频率和染色体不分离事件增加,表明诱导了非整倍体。因此,我们的结果表明,太赫兹辐射暴露可能通过非整倍体效应而非DNA断裂来影响基因组完整性。我们将研究结果与已发表的研究进行了比较,并讨论了可能的生物物理机制。《环境与分子突变》59:476 - 487,2018年。© 2018威利期刊公司