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静磁场调节人胶质母细胞瘤原代细胞中X射线诱导的DNA损伤。

Static magnetic fields modulate X-ray-induced DNA damage in human glioblastoma primary cells.

作者信息

Teodori Laura, Giovanetti Anna, Albertini Maria Cristina, Rocchi Marco, Perniconi Barbara, Valente Maria Giovanna, Coletti Dario

机构信息

Radiation Development and Application, UTAPRAD-DIM, ENEA, Via Enrico Fermi 45, Frascati, Rome 00044, Italy.

出版信息

J Radiat Res. 2014 Mar 1;55(2):218-27. doi: 10.1093/jrr/rrt107. Epub 2013 Dec 17.

Abstract

Although static magnetic fields (SMFs) are used extensively in the occupational and medical fields, few comprehensive studies have investigated their possible genotoxic effect and the findings are controversial. With the advent of magnetic resonance imaging-guided radiation therapy, the potential effects of SMFs on ionizing radiation (IR) have become increasingly important. In this study we focused on the genotoxic effect of 80 mT SMFs, both alone and in combination with (i.e. preceding or following) X-ray (XR) irradiation, on primary glioblastoma cells in culture. The cells were exposed to: (i) SMFs alone; (ii) XRs alone; (iii) XR, with SMFs applied during recovery; (iv) SMFs both before and after XR irradiation. XR-induced DNA damage was analyzed by Single Cell Gel Electrophoresis assay (comet assay) using statistical tools designed to assess the tail DNA (TD) and tail length (TL) as indicators of DNA fragmentation. Mitochondrial membrane potential, known to be affected by IR, was assessed using the JC-1 mitochondrial probe. Our results showed that exposure of cells to 5 Gy of XR irradiation alone led to extensive DNA damage, which was significantly reduced by post-irradiation exposure to SMFs. The XR-induced loss of mitochondrial membrane potential was to a large extent averted by exposure to SMFs. These data suggest that SMFs modulate DNA damage and/or damage repair, possibly through a mechanism that affects mitochondria.

摘要

尽管静磁场(SMFs)在职业和医学领域被广泛应用,但很少有全面的研究调查其可能的遗传毒性作用,且研究结果存在争议。随着磁共振成像引导放射治疗的出现,静磁场对电离辐射(IR)的潜在影响变得越来越重要。在本研究中,我们聚焦于80 mT静磁场单独以及与X射线(XR)照射联合(即在照射前或照射后)对培养的原发性胶质母细胞瘤细胞的遗传毒性作用。细胞被暴露于:(i)单独的静磁场;(ii)单独的X射线;(iii)X射线照射后恢复期施加静磁场;(iv)X射线照射前后均施加静磁场。使用旨在评估尾DNA(TD)和尾长(TL)作为DNA片段化指标的统计工具,通过单细胞凝胶电泳分析(彗星试验)来分析X射线诱导的DNA损伤。使用JC-1线粒体探针评估已知受电离辐射影响的线粒体膜电位。我们的结果表明,细胞单独暴露于5 Gy的X射线照射会导致广泛的DNA损伤,而照射后暴露于静磁场可显著减少这种损伤。暴露于静磁场在很大程度上避免了X射线诱导的线粒体膜电位丧失。这些数据表明,静磁场可能通过影响线粒体的机制来调节DNA损伤和/或损伤修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/346a/3951070/962698c0814e/rrt10701.jpg

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