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Novel microarray-based method for estimating exposure to ionizing radiation

机译:基于微阵列的新颖方法估算电离辐射的暴露

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摘要

Accurate estimation of the dose of ionizing radiation to which individuals have been exposed is critical for therapeutic treatment. We investigated whether gene expression profiles could be used to evaluate the dose received, thereby serving as a biological dosimeter. We used cDNA microarrays to monitor changes in gene expression profiles induced by ionizing radiation in mouse total blood. The subsets of genes best characterizing each dose were identified by resampling the original data set and calculating the intersection of the dose signatures. This analytical strategy minimizes the impact of potential genetic/epigenetic variation between mice and overcomes the bias in gene selection inherent to microarray technology. The significance of the identified signatures was evaluated by monitoring the type I error rate by in silico negative control simulation. Based on the distribution of the mean ratios of the selected probes, we were able to identify transcription profiles giving 83% to 100% correct estimation of the dose received by test mice, demonstrating that the selected probes could be used to determine the dose of radiation to which the animals had been exposed. This method could potentially be generalized to determine the level of exposure to other toxins and could be used to develop new related clinical applications. (c) 2006 by Radiation Research Society.
机译:对个体所受到的电离辐射剂量的准确估计对于治疗至关重要。我们调查了基因表达谱是否可用于评估所接受的剂量,从而用作生物剂量计。我们使用cDNA微阵列来监测电离辐射在小鼠全血中诱导的基因表达谱的变化。通过重新采样原始数据集并计算剂量签名的交集,可以确定最能表征每种剂量的基因子集。这种分析策略最大程度地减少了小鼠之间潜在的遗传/表观遗传变异的影响,并克服了微阵列技术固有的基因选择偏见。通过计算机阴性对照模拟监测I型错误率,评估了已识别特征的重要性。根据所选探针的平均比率的分布,我们能够鉴定转录谱,从而正确估计受测小鼠接受的剂量为83%至100%,这表明所选探针可用于确定辐射剂量动物曾经接触过的地方。该方法可能有可能被普遍使用,以确定暴露于其他毒素的水平,并可用于开发新的相关临床应用。 (c)辐射研究学会,2006年。

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