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血浆中循环 miRNAs 的定量:分析前和分析参数对其分离和稳定性的影响。

Quantification of circulating miRNAs in plasma: effect of preanalytical and analytical parameters on their isolation and stability.

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, University of Athens, Athens, Greece.

出版信息

J Mol Diagn. 2013 Nov;15(6):827-34. doi: 10.1016/j.jmoldx.2013.07.005. Epub 2013 Aug 27.

DOI:10.1016/j.jmoldx.2013.07.005
PMID:23988620
Abstract

Circulating miRNAs are intensively evaluated as promising blood-based biomarkers. This growing interest in developing assays for circulating miRNAs necessitates careful consideration of the effects of preanalytical and analytical parameters on the isolation, stability, and quantification of circulating miRNAs. By using quantitative stem-loop RT-PCR, we compared the relative efficiencies of four miRNA isolation systems and different storage conditions. The effect of the data normalization procedure on the quantification of circulating miRNA levels in plasma from 30 healthy individuals and 30 patients with non-small cell lung carcinoma was estimated by measuring endogenous hsa-miR-21 and hsa-miR-16 and exogenous cel-miR-39 that was spiked in all samples at the same concentration. Silica column-based RNA extraction methods are more effective and reliable with respect to TRIzol LS. Endogenous circulating miRNA levels are unstable when plasma is stored at 4°C, and samples should be kept at -70°C, where the extracted miRNAs remain stable for up to 1 year. When normalization is based on combined endogenous and exogenous control miRNAs, differences in miRNA recovery and differences in cDNA synthesis between samples are compensated. Using this normalization procedure and hsa-miR-21 as a biomarker, we could clearly discriminate healthy individuals from patients with cancer. Experimental handling and the use of exogenous and endogenous controls for normalization are critical for the reliable quantification of circulating miRNA levels in plasma.

摘要

循环 miRNA 被广泛评估为有前途的基于血液的生物标志物。这种对开发循环 miRNA 检测方法的日益关注,需要仔细考虑分析前和分析参数对循环 miRNA 的分离、稳定性和定量的影响。通过使用定量茎环 RT-PCR,我们比较了四种 miRNA 分离系统和不同储存条件的相对效率。通过测量内源性 hsa-miR-21 和 hsa-miR-16 以及所有样本中相同浓度添加的外源性 cel-miR-39,评估了数据归一化程序对来自 30 名健康个体和 30 名非小细胞肺癌患者的血浆中循环 miRNA 水平定量的影响。基于二氧化硅柱的 RNA 提取方法比 TRIzol LS 更有效和可靠。当血浆储存在 4°C 时,内源性循环 miRNA 水平不稳定,样本应储存在-70°C,在此温度下,提取的 miRNA 可稳定保存长达 1 年。当基于内源性和外源性对照 miRNA 进行归一化时,可补偿 miRNA 回收和 cDNA 合成之间的差异。使用这种归一化程序和 hsa-miR-21 作为生物标志物,我们可以清楚地区分健康个体和癌症患者。实验处理和内源性及外源性对照物的使用对于可靠定量血浆中循环 miRNA 水平至关重要。

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