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储存RNA样本中微小RNA的分离与稳定性

MicroRNA isolation and stability in stored RNA samples.

作者信息

Mraz M, Malinova K, Mayer J, Pospisilova S

机构信息

Department of Internal Medicine, Center of Molecular Biology and Gene Therapy, University Hospital Brno, 625 00 Brno, Czech Republic.

出版信息

Biochem Biophys Res Commun. 2009 Dec 4;390(1):1-4. doi: 10.1016/j.bbrc.2009.09.061. Epub 2009 Sep 19.

Abstract

MicroRNAs (miRNAs) are small RNA molecules, which act as post-transcriptional regulators of a gene expression, with important functions within the cell physiology. Whilst many authors have focused on the study of miRNA expression in physiological and pathological processes, various technical variables related to miRNA isolation have simultaneously emerged and the stability of the stored miRNA samples has been questioned. A robust method for RNA isolation is essential for reproducible results and miRNAs instability in the stored samples would make for an alarming situation for most expression studies. Here these issues are discussed and we investigate the stability of miRNAs isolated from clinical samples of B lymphocytes (chronic lymphocytic leukemia) by the most commonly utilized method based on a Trizol/TRI-Reagent solution (RNAs stored at -80 degrees C). To assess the stability of miRNAs, a Real Time-PCR analysis was performed for a panel of 29 miRNAs from a freshly isolated RNA sample and after 14 days storage at -80 degrees C. Furthermore, a Real Time-PCR analysis was repeatedly performed for a stored RNA sample over a period of approximately 10 months. We observed high stability of isolated miRNAs and respective cDNAs. The reproducibility and efficiency of the Trizol/TRI-Reagent isolation method was also tested and compared to the mirVana Isolation kit (Ambion) and RNeasy kit (Qiagen). In conclusion, Trizol/TRI-Reagent based isolation is a robust reproducible method, and obtained miRNA samples do not show any tendency to degradation when properly stored and handled.

摘要

微小RNA(miRNA)是小RNA分子,作为基因表达的转录后调节因子,在细胞生理过程中发挥着重要作用。虽然许多作者专注于研究miRNA在生理和病理过程中的表达,但与miRNA分离相关的各种技术变量同时出现,并且储存的miRNA样本的稳定性受到质疑。一种可靠的RNA分离方法对于获得可重复的结果至关重要,而储存样本中miRNA的不稳定性对于大多数表达研究来说将是一个令人担忧的情况。本文讨论了这些问题,并通过基于Trizol/TRI试剂溶液(RNA储存在-80℃)的最常用方法,研究了从B淋巴细胞(慢性淋巴细胞白血病)临床样本中分离的miRNA的稳定性。为了评估miRNA的稳定性,对新鲜分离的RNA样本以及在-80℃储存14天后的一组29种miRNA进行了实时定量PCR分析。此外,对一个储存的RNA样本在大约10个月的时间内反复进行实时定量PCR分析。我们观察到分离的miRNA及其相应的cDNA具有高度稳定性。还测试了Trizol/TRI试剂分离方法的重现性和效率,并与mirVana分离试剂盒(Ambion)和RNeasy试剂盒(Qiagen)进行了比较。总之,基于Trizol/TRI试剂的分离是一种可靠的可重复方法,并且获得的miRNA样本在妥善储存和处理时不会显示出任何降解趋势。

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