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In situ visualization of DSBs to assess the extranuclear/extracellular effects induced by low-dose alpha-particle irradiation

机译:DSB的原位可视化以评估低剂量α粒子辐照诱导的核外/细胞外效应

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Extranuclear/extracellular effects may have a significant effect on low-dose radiation risk assessment as well as on the shape of the dose-response relationship. Numerous studies using different end points such as sister chromatid exchanges, micronuclei and mutation have shown that this phenomenon exists in many cell types. However, these end points mostly reflect the late events after radiation damage, and little is known about the early response in this phenomenon. DNA double-strand breaks (DSBs) induced by ionizing radiation or carcinogenic chemicals can be visualized in situ using gamma-H2AX immunofluorescence staining, and there is evidence that the number of gamma-H2AX foci can be closely correlated with DSBs induced. Here we used gamma-H2AX as a biomarker to assess the extranuclear/extracellular effects induced by low-dose alpha particles in situ. The results show that a greater fraction of positive cells with DSBs (48.6%) was observed than the number of cells whose nuclei were actually traversed by the 1-cGy dose of (x particles (9.2%). The fraction of DSB-positive cells was greatly reduced after treatment with either lindane or DMSO. These results suggest that in situ visualization of DSBs can be used to assess radiation-induced extranuclear/extracellular effects soon after irradiation. Moreover, the in situ DSB assay may provide a means to evaluate the spatial effect on unirradiated cells that are located in the neighboring region of cells irradiated by alpha particles. (c) 2005 by Radiation Research Society.
机译:核外/细胞外效应可能对低剂量辐射风险评估以及剂量反应关系的形状产生重大影响。使用不同终点(例如姐妹染色单体交换,微核和突变)的大量研究表明,这种现象存在于许多细胞类型中。但是,这些终点大多反映了辐射损伤后的晚期事件,而对该现象的早期反应知之甚少。可以使用γ-H2AX免疫荧光染色原位观察由电离辐射或致癌化学物质诱导的DNA双链断裂(DSB),并且有证据表明,γ-H2AX病灶的数量可以与诱导的DSB紧密相关。在这里,我们使用γ-H2AX作为生物标记物,以评估低剂量α颗粒原位诱导的核外/细胞外作用。结果显示,观察到带有DSB的阳性细胞比例(48.6%)比通过1-cGy剂量的x颗粒实际横穿核的细胞数量(x颗粒(9.2%))更大。结果表明,使用林丹或DMSO可以大大降低DSBs的原位显像,可用于在辐射后立即评估DSB的辐射诱导的核外/细胞外作用,此外,DSB原位分析可提供评估方法。空间对未辐射细胞的空间影响,这些未辐射细胞位于被alpha粒子辐射的细胞的相邻区域中(c)2005年,辐射研究学会。

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