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Low-dose irradiation alters the radio-sensitivity of human peripheral blood lymphocytes

机译:低剂量照射改变人周围血液淋巴细胞的无线电敏感性

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DNA is the most critical target of ionizing radiation when interact with cells. Several molecular studies have demonstrated modifications in expression levels of genes involved in the processes of signal transduction, cell cycle control, DNA repair and apoptosis following to exposure to ionizing radiation. The apoptosis intrinsic pathway is the main pathway that leads to apoptosis in response to DNA damage. The latter is responsible to regulate the release of mitochondrial proteins, including cytochrome-c (cytc). The aim of this study was to evaluate role of low-doses of gamma radiation on the apoptotic genes expression in human peripheral blood lymphocytes. Mononuclear cells were isolated from whole blood samples. They were exposed in culture to different doses from 2 to 10 cGy by gamma rays from a cobalt-60 source. Two apoptotic genes; BAX (pro-apoptotic) and Bcl-2 (anti-apoptotic) were examined by relative quantitative Real-Time PCR for expression level, 4 and 24 hours following to irradiation. The study revealed, low doses of gamma radiation induced down-regulation for BAX gene and up-regulation for Bcl-2 gene. The result of present study has showed that low doses of gamma radiation could increase Bcl-2/BAX ratio and radio-resistance. These findings suggest that the genotoxic effects of low doses of gamma radiation may be due to adaptive response and a reduction of apoptosis.
机译:当与细胞相互作用时,DNA是电离辐射的最关键目标。几个分子研究已经证明了在暴露于电离辐射的信号转导,细胞循环控制,DNA修复和凋亡过程中涉及的基因的表达水平的修饰。细胞凋亡的内在途径是导致凋亡响应DNA损伤的主要途径。后者负责调节线粒体蛋白的释放,包括细胞色素-C(Cytc)。本研究的目的是评估低剂量γ辐射对人外周血淋巴细胞中凋亡基因表达的作用。从全血样品中分离单核细胞。从钴-60源极γ射线将它们暴露于培养物中以2至10个CGY的不同剂量。两个凋亡基因;通过相对定量的实时PCR来检查Bax(促凋亡)和Bcl-2(抗凋亡),用于表达水平,4和24小时以后照射。该研究显示,低剂量的γ辐射诱导BAX基因的下调和Bcl-2基因的上调。本研究结果表明,低剂量的γ辐射可以增加Bcl-2 / Bax比和无线电抗性。这些发现表明,低剂量γ辐射的遗传毒性效应可能是由于适应性响应和细胞凋亡的降低。

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