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Gene Expression Profiles in Radiation Workers Occupationally Exposed to Ionizing Radiation

机译:职业暴露于电离辐射的辐射工作者中的基因表达谱

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摘要

Ionizing radiation OR) imposes risks to human health and the environment. IR at low doses and low (lose rates has the potency to initiate carcinogenesis. Genotoxic environmental agents such as IR trigger a cascade of signal transduction pathways for cellular protection. In this study, using cDNA microarray technique, we monitored the gene expression profiles in lymphocytes derived from radiation-ex posed individuals (radiation workers). Physical dosimetry records on these patients indicated that the absorbed dose ranged from 0.696 to 39.088 mSv. Gene expression analysis revealed statistically significant transcriptional changes in a total of 78 genes (21 up-regulated and 57 clown-regulated) involved in several biological processes such as ubiquitin cycle (UHRF2 and PIAS1), DNA repair (LIG3, XPA, ERCC5, RAD52, DCLRE1C), cell cycle regulation/proliferation (RHOA, CABLES2, TGFB2, IL16), and stress response (GSTP1, PPP2R5A, DUSP22). Some of the genes that showed altered expression profiles in this study call be used as biomarkers for monitoring the chronic low level exposure in humans. Additionally, alterations in gene expression patterns observed in chronically exposed radiation workers reinforces the need for defining the effective radiation dose that causes immediate genetic damage as well as the long-term effects on genomic instability, including cancer.
机译:电离辐射OR)对人类健康和环境构成威胁。低剂量和低剂量(丢失率高)的IR可能会引发癌变。IR等遗传毒性环境试剂触发了一系列的信号转导通路,以进行细胞保护。在这项研究中,我们使用cDNA微阵列技术监测了淋巴细胞中的基因表达谱这些患者的物理剂量学记录表明,吸收剂量范围为0.696至39.088 mSv。基因表达分析显示,共有78个基因(其中21个上调和57个受小丑调控),涉及多个生物学过程,例如遍在蛋白循环(UHRF2和PIAS1),DNA修复(LIG3,XPA,ERCC5,RAD52,DCLRE1C),细胞周期调控/增殖(RHOA,CABLES2,TGFB2,IL16)和应激反应(GSTP1,PPP2R5A,DUSP22)。在这项研究中,一些表现出改变的表达谱的基因被称为生物标志物,用于监测慢性低血糖暴露于人类。此外,在长期暴露于辐射的工作人员中观察到的基因表达模式的改变,增强了定义有效辐射剂量的需要,该剂量将引起立即的遗传损伤以及对包括癌症在内的基因组不稳定的长期影响。

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