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Impact of delayed processing of bovine peripheral blood on differential gene expression

机译:牛外周血延迟加工对差异基因表达的影响

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RT-qPCR can be used to accurately determine expression levels of genes following RNA extraction from tissue samples. If blood is the source of total RNA, it is often desirable to process the samples immediately following collection because delays in processing for RNA extraction may influence mRNA expression estimates obtained from RT-qPCR analyses. However, this may not be feasible if the site of blood collection is distant from the processing laboratory. In the present study, the effects of delays in the processing of blood samples on mRNA expression data was investigated using a panel of 23 functionally diverse genes from five different gene ontology (GO) categories in peripheral blood sampled from ten age-matched healthy cattle. Venous blood was collected in Tempus (TM) Blood RNA tubes, which contain reagents that lyse blood cells immediately and stabilise the RNA signature (T-0). Blood was also collected in conventional lithium heparin collection tubes, and stored at ambient temperature for T-4, T-6 and T-8 h, prior to total RNA extraction. The mRNA expression profiles of these 23 genes were determined by RT-qPCR and compared across the time course. Thirteen genes showed significant up- or down-fold changes in mRNA expression over the 8 h time course. Among the GO categories, genes in the Immune response category showed the most differential expression. These results also demonstrated that the changes in mRNA expression for the IFNG gene, which encodes the cytokine IFN-gamma, did not correspond to IFN-gamma protein levels estimated using ELISA. (C) 2011 Elsevier B.V. All rights reserved.
机译:从组织样品中提取RNA后,RT-qPCR可用于准确确定基因的表达水平。如果血液是总RNA的来源,通常需要在收集后立即处理样品,因为RNA提取处理的延迟可能会影响从RT-qPCR分析获得的mRNA表达估计。但是,如果采血部位远离加工实验室,则可能不可行。在本研究中,使用一组来自十个年龄匹配的健康牛的外周血中五个不同基因本体论(GO)类别的23种功能多样的基因,研究了血液样品处理延迟对mRNA表达数据的影响。在Tempus(TM)Blood RNA管中收集静脉血,该管中含有可立即溶解血细胞并稳定RNA标记(T-0)的试剂。还需要在常规的肝素锂肝采集管中采集血液,并在提取总RNA之前在环境温度下保存T-4,T-6和T-8h。通过RT-qPCR确定这23个基因的mRNA表达谱,并在整个时间过程中进行比较。在8小时的过程中,十三种基因显示出mRNA表达的显着上或下变化。在GO类别中,免疫应答类别中的基因表现出最高的差异表达。这些结果还证明,编码细胞因子IFN-γ的IFNG基因的mRNA表达变化与使用ELISA估计的IFN-γ蛋白水平不对应。 (C)2011 Elsevier B.V.保留所有权利。

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