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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >SOD2-mediated effects induced by WR1065 and low-dose ionizing radiation on micronucleus formation in RKO human colon carcinoma cells
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SOD2-mediated effects induced by WR1065 and low-dose ionizing radiation on micronucleus formation in RKO human colon carcinoma cells

机译:WR1065和低剂量电离辐射诱导的SOD2介导的RKO人结肠癌细胞中微核形成

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RKO36 cells exposed to either WR1065 or 10 cGy X rays show elevated SOD2 gene expression and SOD2 enzymatic activity. Cells challenged at this time with 2 Gy exhibit enhanced radiation resistance. This phenomenon has been identified as a delayed radioprotective effect or an adaptive response when induced by thiols or low-dose radiation, respectively. In this study we investigated the relative effectiveness of both WR1065 and low-dose radiation in reducing the incidence of radiation-induced micronucleus formation in binucleated RKO36 human colon carcinoma cells. The role of SOD2 in this process was assessed by measuring changes in enzymatic activity as a function of the inducing agent used, the level of protection afforded, and the inhibitory effects of short interfering RNA (SOD2 siRNA). Both WR1065 and 10 cGy X rays effectively induced a greater than threefold elevation in SOD2 activity 24 h after exposure. Cells irradiated at this time with 2 Gy exhibited a significant resistance to micronucleus formation (P < 0.05; Student's two-tailed t test). This protective effect was significantly inhibited in cells transfected with SOD2 siRNA. SOD2 played an important role in the adaptive/delayed radioprotective response by inhibiting the initiation of a superoxide anion-induced ROS cascade leading to enhanced mitochondrial and nuclear damages.
机译:暴露于WR1065或10 cGy X射线的RKO36细胞显示出升高的SOD2基因表达和SOD2酶活性。此时用2 Gy攻击的细胞表现出增强的抗辐射性。当分别被硫醇或低剂量辐射诱导时,该现象已被确定为延迟的放射防护作用或适应性反应。在这项研究中,我们研究了WR1065和低剂量辐射在减少双核RKO36人结肠癌细胞中辐射诱导的微核形成的发生率方面的相对有效性。通过测量酶活性随所用诱导剂的变化,所提供的保护水平以及短干扰RNA(SOD2 siRNA)的抑制作用来评估SOD2在此过程中的作用。暴露后24小时,WR1065和10 cGy X射线均能有效诱导SOD2活性升高三倍以上。此时用2 Gy照射的细胞对微核形成表现出显着的抵抗力(P <0.05; Student的两尾t检验)。在用SOD2 siRNA转染的细胞中,这种保护作用被显着抑制。 SOD2通过抑制超氧阴离子诱导的ROS级联反应的引发而导致线粒体和核损伤的增强,从而在适应性/延迟性放射防护反应中发挥重要作用。

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