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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Hypoxia/Reoxygenation-Induced Mutations in Mammalian Cells Detected by the Flow Cytometry Mutation Assay and Characterized by Mutant Spectrum
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Hypoxia/Reoxygenation-Induced Mutations in Mammalian Cells Detected by the Flow Cytometry Mutation Assay and Characterized by Mutant Spectrum

机译:流式细胞术突变检测并通过突变谱表征的哺乳动物细胞中缺氧/复氧诱导的突变

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Under hypoxic conditions, cells are more resistant to cell killing by ionizing radiation by a factor of 2.5 to 3, potentially compromising the efficacy of radiotherapy. It has been shown recently that hypoxic conditions alone are sufficient to generate mutations in vitro and in vivo, likely due to the creation of reactive oxygen species (ROS) and a decrease in mismatch and homologous recombination DNA repair activity. These factors are known precursors to the onset of genetic instability and poor prognosis. We have previously characterized the flow cytometry mutation assay and its sensitivity to detect significant mutant fractions induced by genotoxic agents that are not detected by other mammalian assays. Here we measure the mutant fraction induced by hypoxia. CHO A(L) cells cultured at <0.1% O-2 for 24 h generated a significant mutant fraction of 120 X 10(-5) and had growth kinetics and survival characteristics similar to those obtained with other mutagens. We investigated the role of ROS by treating cells with the radical scavenger DMSO, which significantly reduced hypoxia toxicity and mutagenesis. Single cells were sorted from the mutant population, and the resulting clonal populations were stained for five antigens encoded by genes found along chromosome 11 to generate mutant spectra. The mutations were primarily large deletions, similar to those in background mutants, but the frequency was higher. We have demonstrated that hypoxic conditions alone are sufficient to generate mutations in mammalian cells in culture and that the spectrum of mutations is similar to background mutations.
机译:在缺氧条件下,细胞通过将辐射电离2.5到3倍,对细胞杀灭具有更强的抵抗力,有可能损害放射疗法的功效。最近显示,低氧条件足以在体外和体内产生突变,这可能是由于活性氧(ROS)的产生以及错配和同源重组DNA修复活性的降低所致。这些因素是已知的遗传不稳定和预后不良的先兆。我们以前已经表征了流式细胞术突变测定及其灵敏度,以检测由其他哺乳动物测定未检测到的遗传毒性剂诱导的重要突变级分。在这里,我们测量由缺氧诱导的突变部分。在<0.1%O-2下培养24小时的CHO A(L)细胞产生了120 X 10(-5)的显着突变级分,并且具有与其他诱变剂相似的生长动力学和存活特性。我们通过用自由基清除剂DMSO处理细胞来研究ROS的作用,该清除剂显着降低了缺氧毒性和诱变作用。从突变群体中筛选出单细胞,并对所得克隆群体的5种抗原进行染色,这些抗原由沿11号染色体发现的基因编码,以产生突变谱。突变主要是大的缺失,与背景突变中的相似,但频率更高。我们已经证明,仅低氧条件足以在培养的哺乳动物细胞中产生突变,并且突变的谱与背景突变相似。

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