AbstractTransgenerational genomic instability in the first generation offspring of mice exposed to lowintensity infrared laser (632'/> Transgenerational genomic instability in the first generation offspring of mice exposed to low-intensity red and near-infrared irradiation in vivo
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Transgenerational genomic instability in the first generation offspring of mice exposed to low-intensity red and near-infrared irradiation in vivo

机译:在体内暴露于低强度红色和近红外辐射的小鼠的第一代后代在第一代后代的转基因基因组不稳定性

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摘要

AbstractTransgenerational genomic instability in the first generation offspring of mice exposed to lowintensity infrared laser (632.8 nm) and light-emitting-diode infrared irradiation (850 nm) was investigated in vivo. It was found that the level of spontaneous damage in bone marrow according to the micronucleus test, the level of reactive oxygen species in whole blood, and the mass index of lymphoid organs in all of the descendants of irradiated mice did not increase. After additional X-ray exposure of the progeny at a dose rate of 1.5 Gy, a decrease in the level of damage and the absence of an adaptive response were revealed upon testing according to “radiosensitivity” and the radiation-induced adaptive-response scheme (0.1 + 1.5 Gy), respectively, compared to the descendants of nonirradiated mice. The rate of tumor growth in the offspring of irradiated mice did not differ from that in the descendants of nonirradiated mice, although inhibition of the tumor growth rate was observed in their irradiated parents. The survival rate after irradiation at a dose rate of 6.5 Gy did not differ from both the parents and the control.]]>
机译:<![CDATA [ <标题>抽象 ara>转基因基因组不稳定性在暴露于低温红外激光器(632.8nm)和光的第一代后代 - 体内研究 - 二极管红外辐射(850nm)。结果发现,根据微核试验,骨髓中的自发损伤程度,全血中的反应性氧物种水平,以及淋巴器官的质量指数在辐照小鼠的所有后代都没有增加。在以1.5Gy的剂量速率下额外的X射线暴露后,根据“放射敏感性”和辐射诱导的自适应 - 响应方案,在测试时揭示了损伤水平和缺乏适应性响应的降低(与非辐射小鼠的后代相比,分别为0.1 + 1.5倍。辐照小鼠的后代肿瘤生长的速率与非辐射小鼠的后代的肿瘤生长没有差异,尽管在其辐照父母中观察到肿瘤生长速率的抑制。以6.5Gy的剂量率照射后的存活率与父母和对照无关没有差异。 ]]>

著录项

  • 来源
    《Biophysics》 |2017年第5期|共6页
  • 作者单位

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Theoretical and Experimental Biophysics Russian Academy of Sciences;

    Institute of Photon Technologies Crystallography and Photonics Federal Scientific Research Center Russian Academy of Sciences;

    Institute of Photon Technologies Crystallography and Photonics Federal Scientific Research Center Russian Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

    infrared light; red light; X-rays; mice; transgenerational genomic instability;

    机译:红外光;红灯;X射线;小鼠;转基因基因组不稳定性;

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