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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Identification of Radiation-Dose-Dependent Expressive Genes in Individuals Exposed to External Ionizing Radiation
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Identification of Radiation-Dose-Dependent Expressive Genes in Individuals Exposed to External Ionizing Radiation

机译:鉴定外部电离辐射暴露于外部电离辐射的个体中的辐射剂量依赖性致病基因

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摘要

For victims of radiological accidents, rapid dose estimation and damage prediction are essential. Administering the gold-standard biodosimetry chromosome aberration assay requires highly skilled individuals and several days of labor; consequently,rapid turnaround is an important concern. Identification of new dose estimation markers and damage-predicting in vivo molecules to replace the chromosome aberration assay is crucial to improving the delivery time of medical treatment. Here, we investigated the applicability of mRNA levels using a mouse model. Female C57BL/6J mice were X-ray irradiated at various doses, and a DNA micro-array was then performed to identify differentially expressed mRNAs in whole blood. The microarray analysis identified 14 radioresponsive mRNAs with more than fourfold differences by pattern matching in the expression at 24 h postirradiation. In particular, mRNA expression of Slfn4,Itgb5,Smim3, Tmem40,Litaf, Gplbb and Cxxlc was significantly increased in a radiation-dose-dependent manner,as validated by reverse transcription quantitative polymerase chain reaction. We also performed an analysis using the cBioPortal for Cancer Genomics and found that the overall survival of ovarian adenocarcinoma patients with alterations in Smim3 and that of thymoma patients with alterations in Cxxlc had a worse prognosis than patients without these alterations. These findings suggest that the expression of several genes in whole blood was a sensitive and specific biomarker of radiation exposure and can be used as a rapid and reliable prospective molecular biomarker in radiological emergencies.
机译:对于放射事故的受害者,快速剂量估算和损伤预测是必不可少的。施用金标准的生物渗染色体染色体畸变测定需要高技能的个体和几天的劳动力;因此,快速转机是一个重要的关注点。鉴定新剂量估计标志物和损伤预测在体内分子替代染色体畸变测定对于改善医疗的递送时间至关重要。在这里,我们研究了使用小鼠模型的mRNA水平的适用性。雌性C57BL / 6J小鼠以各种剂量照射X射线,然后进行DNA微阵列以在全血中鉴定差异表达的MRNA。微阵列分析通过表达在24小时后,鉴定了14个无射频MRNA,其表达在24小时后的表达式匹配。特别地,通过逆转录定量聚合酶链反应验证,SLFN4,ITGB5,SMIM3,TMEM40,LITAF,GPLBB和CXXLC的MRNA表达显着增加,如逆转录量聚合酶链反应验证。我们还对癌症基因组学进行了CBIOPortal进行了分析,发现卵巢腺癌患者的SMIM3改变的总体存活率以及CXXLC改变的胸腺瘤患者的预后比没有这些改变的患者更差。这些发现表明,全血中若干基因的表达是辐射暴露的敏感和特异性生物标志物,可用作放射突出事件中快速可靠的前瞻性分子生物标志物。

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