Department of Safety and Radiation Protection, Forschungszentrum Jülich, Jülich, Germany.
Brenk Systemplanung GmbH, Aachen, Germany.
Int J Radiat Biol. 2023;99(1):64-69. doi: 10.1080/09553002.2020.1851059. Epub 2020 Dec 3.
Ionizing radiation causes various types of DNA damage e.g. single strand breaks (SSB) and double strand breaks (DSB), whereby the SSB/DSB ratio is shifted toward the DSB with increasing LET. For the DNA-incorporated Auger electron emitter Iodine-125 a SSB/DSB ratio of 5.4:1 is calculated based on computer simulations. In the presented work the SSB/DSB ratio of DNA-incorporated Iodine-125 was experimentally determined and compared to external homogenous γ-irradiation.
Iodine-125-iododeoxyuridine (I-125-UdR) was incorporated into the DNA of SCL-II cells and cells were subsequently frozen for decay accumulation. Accordingly, external γ-irradiation (Cs-137) experiments were performed in frozen cells. After exposure the neutral or alkaline Comet Assay was performed to quantify DSB or DSB and SSB, respectively. Automated quantification of the comets was performed using the Olive Tail Moment (Metafer CometScan; MetaSystems). Calculation of absorbed dose for Auger electrons on cellular level is extremely biased due to the exclusive DNA localization of I-125-UdR. To avoid dose calculation the γ-H2AX assay was used in order to allow the comparison of the Comet Assay data between both investigated radiation qualities.
For low-LET γ-radiation, a SSB/DSB ratio of 10:1 was determined. In contrast, a lower SSB/DSB ratio of 6:1 was induced by DNA-incorporated Iodine-125 which compares very well to the calculated values of Pomplun and co-authors.
DNA-incorporated Iodine-125 induces a high-LET type DNA damage pattern in respect to SSB/DSB ratio.
电离辐射会导致各种类型的 DNA 损伤,例如单链断裂 (SSB) 和双链断裂 (DSB),随着 LET 的增加,SSB/DSB 比值向 DSB 转移。对于结合 DNA 的俄歇电子发射体碘-125,基于计算机模拟计算出 SSB/DSB 比值为 5.4:1。在本研究中,实验测定了结合 DNA 的碘-125 的 SSB/DSB 比值,并与外部同质γ辐射进行了比较。
碘-125-碘代脱氧尿苷 (I-125-UdR) 被掺入 SCL-II 细胞的 DNA 中,然后将细胞冷冻以进行衰变积累。相应地,在冷冻细胞中进行了外部 γ 辐射 (Cs-137) 实验。暴露后,分别进行中性或碱性彗星分析,以定量双链断裂或双链断裂和单链断裂。使用 Olive Tail Moment(Metafer CometScan;MetaSystems)自动对彗星进行量化。由于 I-125-UdR 仅定位在 DNA 上,因此在细胞水平上计算俄歇电子的吸收剂量会产生极大偏差。为避免剂量计算,使用 γ-H2AX 测定法来比较两种研究辐射质量的彗星分析数据。
对于低 LET γ 辐射,确定 SSB/DSB 比值为 10:1。相比之下,结合 DNA 的碘-125 诱导的 SSB/DSB 比值较低,为 6:1,这与 Pomplun 及其同事的计算值非常吻合。
结合 DNA 的碘-125 诱导了 SSB/DSB 比值高 LET 类型的 DNA 损伤模式。