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Generation and Threshold Level of 8-OHdG as Oxidative DNA Damage Elicited by Low Dose Ionizing Radiation

机译:低剂量电离辐射引起的氧化性DNA损伤导致8-OHdG的产生和阈值水平

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摘要

References(16) Cited-By(1) Human epidemiological studies have revealed significant increases in the cancer incidence rates by exposure to 100 mSv or higher doses of ionizing radiation. However, the relationship between lower doses of ionizing radiation and cancer incidence is still unclear. In general, oxidative DNA damage is closely related to cancer generation. We studied the oxidative DNA damage elicited by low dose ionizing irradiation. The γ-ray irradiation of a deoxyguanosine solution caused a linear increase in the 8-hydroxydeoxyguanosine (8-OHdG) levels, in the range of 20-300 mGy. Thus, 8-OHdG seems to be a good marker of the oxidative DNA damage caused by ionizing radiation. In contrast, in the case of the whole body X-ray irradiation of mice, the 8-OHdG levels in liver DNA and urine increased from about 500 and 200 mGy, respectively. These results indicate that living organisms have a defense mechanism against the oxidative damage caused by ionizing radiation. Considering the 8-OHdG levels as an ionizing radiation effect marker for living organisms, a threshold level of irradiation seems to exist for oxidative damage and tumorigenesis. Furthermore, diet imbalances increased radiation damage. Lifestyle may affect the radiation hazard.
机译:参考文献(16)被引用(1)人类流行病学研究表明,暴露于100 mSv或更高剂量的电离辐射下,癌症的发病率显着增加。然而,较低剂量的电离辐射与癌症发病率之间的关系仍不清楚。通常,氧化性DNA损伤与癌症的发生密切相关。我们研究了低剂量电离辐射引起的氧化性DNA损伤。脱氧鸟苷溶液的γ射线照射导致8-羟基脱氧鸟苷(8-OHdG)水平线性增加,范围为20-300 mGy。因此,8-OHdG似乎是电离辐射引起的氧化DNA损伤的良好标志。相反,在对小鼠进行全身X射线照射的情况下,肝脏DNA和尿液中的8-OHdG水平分别从约500和200 mGy增加。这些结果表明,活生物体具有防御机制,可抵抗电离辐射引起的氧化损伤。考虑到8-OHdG水平是活生物体的电离辐射效应标记,似乎存在氧化损伤和肿瘤发生的阈值辐射水平。此外,饮食失衡会增加辐射损伤。生活方式可能会影响辐射危害。

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