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利用质粒 DNA 评估电离辐射的 DNA 损伤效力。

Assessing the DNA Damaging Effectiveness of Ionizing Radiation Using Plasmid DNA.

机构信息

Department of Physics, San Diego State University, San Diego, CA 92182, USA.

Odette Cancer Centre, Department of Radiation Oncology, University of Toronto, Toronto, ON M4N 3M5, Canada.

出版信息

Int J Mol Sci. 2022 Oct 18;23(20):12459. doi: 10.3390/ijms232012459.

Abstract

Plasmid DNA is useful for investigating the DNA damaging effects of ionizing radiation. In this study, we have explored the feasibility of plasmid DNA-based detectors to assess the DNA damaging effectiveness of two radiotherapy X-ray beam qualities after undergoing return shipment of ~8000 km between two institutions. The detectors consisted of 18 μL of pBR322 DNA enclosed with an aluminum seal in nine cylindrical cavities drilled into polycarbonate blocks. We shipped them to Toronto, Canada for irradiation with either 100 kVp or 6 MV X-ray beams to doses of 10, 20, and 30 Gy in triplicate before being shipped back to San Diego, USA. The Toronto return shipment also included non-irradiated controls and we kept a separate set of controls in San Diego. In San Diego, we quantified DNA single strand breaks (SSBs), double strand breaks (DSBs), and applied Nth and Fpg enzymes to quantify oxidized base damage. The rate of DSBs/Gy/plasmid was 2.8±0.7 greater for the 100 kVp than the 6 MV irradiation. The 100 kVp irradiation also resulted in 5±2 times more DSBs/SSB than the 6 MV beam, demonstrating that the detector is sensitive enough to quantify relative DNA damage effectiveness, even after shipment over thousands of kilometers.

摘要

质粒 DNA 可用于研究电离辐射对 DNA 的损伤效应。在这项研究中,我们探讨了基于质粒 DNA 的探测器评估两种放疗 X 射线束品质在两个机构之间经过约 8000 公里往返运输后对 DNA 损伤效果的可行性。探测器由 18 μL pBR322 封闭在九个圆柱形腔体内组成,这些腔体被钻在聚碳酸酯块中,并用铝密封。我们将它们运往加拿大的多伦多,用 100 kVp 或 6 MV X 射线照射,剂量分别为 10、20 和 30 Gy,一式三份,然后再运回美国圣地亚哥。多伦多的返程运输还包括未辐照的对照,我们在圣地亚哥保留了另一组对照。在圣地亚哥,我们量化了 DNA 单链断裂(SSB)、双链断裂(DSB),并应用 Nth 和 Fpg 酶来量化氧化碱基损伤。100 kVp 辐照的 DSBs/Gy/质粒比 6 MV 辐照高 2.8±0.7。100 kVp 辐照还导致 DSBs/SSB 比 6 MV 射线多 5±2 倍,表明该探测器足够灵敏,可以定量相对 DNA 损伤效果,即使在经过数千公里的运输后也是如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63dc/9604049/7b4e3c9bd41f/ijms-23-12459-g001.jpg

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