首页> 美国卫生研究院文献>Neoplasia (New York N.Y.) >Classification of Sensitivity or Resistance of Cervical Cancers to Ionizing Radiation According to Expression Profiles of 62 Genes Selected by cDNA Microarray Analysis
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Classification of Sensitivity or Resistance of Cervical Cancers to Ionizing Radiation According to Expression Profiles of 62 Genes Selected by cDNA Microarray Analysis

机译:根据cDNA微阵列分析选择的62个基因的表达谱对宫颈癌对电离辐射的敏感性或抗性分类

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摘要

To identify a set of genes related to radiosensitivity of cervical squamous cell carcinomas and to establish a predictive method, we compared expression profiles of 9 radiosensitive and 10 radioresistant tumors obtained by biopsy before treatment, on a cDNA microarray consisting of 23,040 human genes. We identified 121 genes whose expression was significantly greater in radiosensitive cells than in radioresistant cells, and 50 genes that showed higher levels of expression in radioresistant cells than in radiosensitive cells. Some of these genes had already known to be associated with the radiation response, such as aldehyde dehydrogenase 1 (ALDH1) and X-ray repair cross-complementing 5 (XRCC5) (P<.05, Mann-Whitney test). The validity of the total of 171 genes as radiosensitivity related genes were certified by permutation test (P<.05). Furthermore, we selected 62 genes on the basis of a clustering analysis, and confirmed the validity of these genes with cross-validation test. The cross-validation test also indicates the possibility of making prediction of radiosensitivity for discriminating radiation-sensitive from radiation resistant biopsy samples by predicting score (PS) values calculated from expression values of 62 genes in 19 samples, because the prediction successfully and unequivocally discriminated the radiosensitive phenotype from the radioresistant phenotype in our test panel of 19 cervical carcinomas. The extensive list of genes identified in these experiments provides a large body of potentially valuable information for studying the mechanism(s) of radiosensitivity, and selected 62 genes opens the possibility of providing appropriate and effective radiotherapy to cancer patients.
机译:为了鉴定与宫颈鳞状细胞癌的放射敏感性有关的一组基因并建立预测方法,我们在由23,040个人类基因组成的cDNA微阵列上比较了通过活检获得的9个放射敏感性和10个放射敏感性肿瘤的表达谱。我们鉴定了121个基因,它们在放射敏感性细胞中的表达明显高于在放射敏感性细胞中的表达,还有50个基因在放射抵抗细胞中的表达水平高于在放射敏感性细胞中的表达。这些基因中的一些已经与辐射反应有关,例如醛脱氢酶1(ALDH1)和X射线修复交叉互补5(XRCC5)(P <0.05,Mann-Whitney测试)。通过排列检验验证了总共171个基因作为放射敏感性相关基因的有效性(P <.05)。此外,我们在聚类分析的基础上选择了62个基因,并通过交叉验证测试确认了这些基因的有效性。交叉验证测试还表明,通过预测从19个样品中62个基因的表达值计算出的得分(PS)值,可以做出区分放射敏感性和放射敏感性活检样品的放射敏感性预测的可能性,因为该预测成功且明确地区分了我们的19个子宫颈癌测试小组中的放射敏感性表型来自放射敏感性表型。在这些实验中鉴定出的广泛基因清单为研究放射敏感性的机制提供了大量潜在有价值的信息,并且选择的62个基因为向癌症患者提供适当有效的放射疗法提供了可能性。

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