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Occupational radiation exposure and genetic polymorphisms in DNA repair genes

机译:DNA修复基因职业辐射暴露与遗传多态性

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Radiation sensitivity appears to be influenced by genetic polymorphisms in some DNA repair genes and individuals with low DNA repair capacity can be at increased risk of developing cancer. The aim of the present study was to determine the impact of gene polymorphisms on DNA damages in the form of micronuclei (MN) in circulating lymphocytes of interventional cardiologists (ICs), occupationally exposed to ionizing radiation. MNfrequency was significantly higher in the ICs than in the controls (27.7 +/- 17.2% vs. 8.0 +/- 2.6%, p 0 .0005). MN values were higher in the ICs with exposure of = 10 years and = 3 mSv in comparison to the related referents. The analysis of different interactions showed significantly higher MN frequencies in ICs exposed to = 10 mSv carrying the variant-type XRCC3 241Met genotype compared to those of wild-type XRCC3 (Thr/Thr) genotype. In the ICs carrying both wild-type alleles for XRCC3 and MSH3 polymorphisms showed a significantly lower MN frequency compared to the exposed individuals with one or two variant alleles for XRCC3 and MSH3 polymorphisms. In conclusion, ICs showed significantly higherMNfrequencies than in the control, and this effect was higher in individuals carrying the variant-type XRCC3 241Met genotype. These results not only show the need for improvement of safety and training programs for ICs but also may be helpful in developing amenable screening tests for identifying radiosensitive workers and applying suitable radiation protection job-specific strategies for effective dose reduction.
机译:辐射敏感性似乎受到一些DNA修复基因中的遗传多态性的影响,并且具有低DNA修复能力的个体可以增加发展癌症的风险。本研究的目的是确定基因多态性对介入心脏病学家(IC)循环淋巴细胞(IC)的微核(Mn)形式的DNA损伤的影响,职业暴露于电离辐射。 IC中的Mnfrecy显着高于对照(27.7 +/- 17.2%与8.0 +/- 2.6%,P& 0 .0005)。 Mn值在IC中具有较高,具有曝光& = 10年和& = 3 msv与相关指令相比。不同相互作用的分析显示暴露于&gt的IC中的显着较高的Mn频率; = 10 mSV携带变体型XRCC3 241met基因型,与野生型XRCC3(THR / THR)基因型相比。在携带XRCC3的野生型等位基因中,MSH3多态性的IC显示出与具有XRCC3和MSH3多态性的一个或两个变体等位基因的暴露的个体相比显着降低的MN频率。总之,IC显着显示出比对照的显着高效,并且这种效果在携带变体型XRCC3 241met基因型的个体中较高。这些结果不仅表明需要改善IC的安全和培训计划,而且可能有助于开发可放射敏感工人并应用合适的辐射保护工作特异性策略进行有效剂量减少的可放射性筛选试验。

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