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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Effects of Amifostine Pre-treatment on MIRNA, LNCRNA, and MRNA Profiles in the Hypothalamus of Mice Exposed to(60)Co Gamma Radiation
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Effects of Amifostine Pre-treatment on MIRNA, LNCRNA, and MRNA Profiles in the Hypothalamus of Mice Exposed to(60)Co Gamma Radiation

机译:影响Amifostine microrna的预处理,LNCRNA和下丘脑的MRNA的概要文件小鼠暴露于(60)有限公司伽马辐射

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摘要

There is increasing evidence that the expression of non-coding RNA and mRNA (messenger RNA) is significantly altered following high-dose ionizing radiation (IR), and their expression may play a critical role in cellular responses to IR. However, the role of non-coding RNA and mRNA in radiation protection, especially in the nervous system, remains unknown. In this study, microarray profiles were used to determine microRNA (miRNA), long non-coding RNA (lncRNA), and mRNA expression in the hypothalamus of mice that were pretreated with amifostine and subsequently exposed to high-dose IR. Gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analyses were performed. We found that fewer miRNAs, lncRNAs, and mRNAs were induced by amifostine pre-treatment in exposed mice, which exhibited antagonistic effects compared to IR, indicating that amifostine attenuated the IR-induced effects on RNA profiles. GO and KEGG pathway analyses showed changes in a variety of signaling pathways involved in inflammatory responses during radioprotection following amifostine pre-treatment in exposed mice. Taken together, our study revealed that amifostine treatment altered or attenuated miRNA, lncRNA, and mRNA expression in the hypothalamus of exposed mice. These data provide a resource to further elucidate the mechanisms underlying amifostine-mediated radioprotection in the hypothalamus.
机译:有越来越多的证据表明,表达式非编码RNA信使RNA(信使RNA)显著改变后高剂量电离辐射(IR),他们的表情发挥重要作用在IR细胞反应。然而,非编码RNA信使RNA的作用辐射防护,尤其是在紧张系统,仍然未知。微阵列资料被用来确定在老鼠的下丘脑和mRNA表达用amifostine和预处理随后暴露于高剂量IR。基因本体论(去)和《京都议定书》的百科全书基因组(KEGG)路径分析。我们发现少microrna、lncRNAs mrna被诱导amifostine预处理暴露的老鼠,它表现出敌对的影响红外相比,表明amifostine减毒IR-induced影响RNA概要文件。多种信号通路的变化期间参与炎症反应辐射防护后amifostine预处理在暴露小鼠。我们的研究显示,amifostine治疗改变或减毒microrna lncRNA,信使rna暴露小鼠下丘脑的表达式。这些数据进一步提供资源阐明潜在的机制amifostine-mediated辐射防护的下丘脑。

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