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本文引用的文献

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An efficient method for long-term room temperature storage of RNA.一种高效的 RNA 长期室温储存方法。
Eur J Hum Genet. 2014 Mar;22(3):379-85. doi: 10.1038/ejhg.2013.145. Epub 2013 Jul 17.
2
Post-extraction stabilization of HIV viral RNA for quantitative molecular tests.提取后 HIV 病毒 RNA 的稳定化,用于定量分子检测。
J Virol Methods. 2012 Jun;182(1-2):104-10. doi: 10.1016/j.jviromet.2012.03.006. Epub 2012 Mar 13.
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Effect of long-term storage in TRIzol on microarray-based gene expression profiling.TRIzol 长期储存对基于微阵列的基因表达谱的影响。
Cancer Epidemiol Biomarkers Prev. 2010 Oct;19(10):2445-52. doi: 10.1158/1055-9965.EPI-10-0565. Epub 2010 Aug 30.
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Impact of RNA degradation on gene expression profiling.RNA 降解对基因表达谱的影响。
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Robust microRNA stability in degraded RNA preparations from human tissue and cell samples.从人组织和细胞样本的降解 RNA 制备中获得稳健的 microRNA 稳定性。
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RNA degradation compromises the reliability of microRNA expression profiling.RNA 降解会影响 microRNA 表达谱分析的可靠性。
BMC Biotechnol. 2009 Dec 21;9:102. doi: 10.1186/1472-6750-9-102.
7
Green technologies for room temperature nucleic acid storage.室温核酸存储的绿色技术。
Curr Issues Mol Biol. 2010;12(3):135-42. Epub 2009 Oct 2.
8
Assessing a novel room-temperature RNA storage medium for compatibility in microarray gene expression analysis.评估一种新型室温RNA储存介质在微阵列基因表达分析中的兼容性。
Biotechniques. 2009 Aug;47(2):667-8, 670. doi: 10.2144/000113209.
9
Impact of thawing on RNA integrity and gene expression analysis in fresh frozen tissue.解冻对新鲜冷冻组织中RNA完整性及基因表达分析的影响
Diagn Mol Pathol. 2009 Mar;18(1):44-52. doi: 10.1097/PDM.0b013e3181857e92.
10
Characterization of the effect of sample quality on high density oligonucleotide microarray data using progressively degraded rat liver RNA.使用逐步降解的大鼠肝脏RNA表征样本质量对高密度寡核苷酸微阵列数据的影响
BMC Biotechnol. 2007 Sep 13;7:57. doi: 10.1186/1472-6750-7-57.

通过表达微阵列评估RNAstable®中总RNA的长期稳定性。

Long-term stability of total RNA in RNAstable® as evaluated by expression microarray.

作者信息

Stevenson Holly S, Wang Yonghong, Muller Rolf, Edelman Daniel C

机构信息

1 Genetics Branch, Center for Cancer Research , National Cancer Institute, Bethesda, Maryland.

出版信息

Biopreserv Biobank. 2015 Apr;13(2):114-22. doi: 10.1089/bio.2014.0068. Epub 2015 Mar 31.

DOI:10.1089/bio.2014.0068
PMID:25826008
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4442560/
Abstract

Storage of labile RNA in laboratories is accomplished through ultra-low freezing of the nucleic acids. This however requires expensive freezers, convenient storage, reliable electrical power, and increased shipping costs, thereby making it a less viable option. Biomatrica (San Diego, CA) has created RNAstable(®), a stabilization reagent that is used to store RNA in a dehydrated state at room temperature (RT) and protects the RNA from degradation. Our objective was to investigate the sequence integrity and suitability of RNA when stored in RNAstable at extended time periods and at varying temperatures through use of Illumina and Agilent RNA expression microarrays. We observed in Bioanalyzer electropherograms that total RNA extracted from 293 cells stored at RT in RNAstable for 4.5 and 11.5 months is similar in quality to RNA stored at -80°C. Illumina mRNA expression array QC metrics and gene expression patterns from RNAstable-protected RNA, in contrast to RNA stored without RNAstable, correlated well with those of freezer controls. Significantly, when RNA was stored in RNAstable at 45°C for 4.5 months, equivalent to 22 months RT storage, RNA quality, microarray probe signal intensities, probe detection rates, and expression profiles remained similar between RNAstable-protected RNA at RT and the -80°C controls. At 10.5 months, miRNA levels were compared among the storage conditions using miRNA expression arrays. Here too we found strong concordance between miRNA expression patterns when total RNA was stored in RNAstable or at -80°C. Further, Bioanalyzer electrophoresis of RNAstable-protected samples stored at RT for a relative total of 33 months or 50.5 months showed comparable integrity scores to those of -80°C controls. We conclude that use of RNAstable holds promise as an effective stabilization reagent for total RNA and should be useful in situations where shipping and storage options are limited resources.

摘要

在实验室中,不稳定RNA的储存是通过对核酸进行超低温冷冻来实现的。然而,这需要昂贵的冰柜、便利的储存条件、可靠的电力供应,并且运输成本会增加,因此这是一个可行性较低的选择。生物计量公司(位于加利福尼亚州圣地亚哥)研发了RNAstable(®),一种用于在室温下以脱水状态储存RNA并保护RNA不被降解的稳定试剂。我们的目标是通过使用Illumina和安捷伦RNA表达微阵列,研究RNA在RNAstable中长时间且在不同温度下储存时的序列完整性和适用性。我们在生物分析仪电泳图中观察到,从在室温下于RNAstable中储存4.5个月和11.5个月的293细胞中提取的总RNA,其质量与储存在-80°C的RNA相似。与未使用RNAstable储存的RNA相比,来自经RNAstable保护的RNA的Illumina mRNA表达阵列质量控制指标和基因表达模式与冷冻对照的指标和模式相关性良好。值得注意的是,当RNA在45°C下于RNAstable中储存4.5个月时,相当于在室温下储存22个月,经RNAstable保护的RNA在室温下与-80°C对照之间的RNA质量、微阵列探针信号强度、探针检测率和表达谱仍保持相似。在10.5个月时,使用miRNA表达阵列比较了不同储存条件下的miRNA水平。同样,我们也发现当总RNA储存在RNAstable中或-80°C时,miRNA表达模式之间有很强的一致性。此外,对在室温下总共储存33个月或50.5个月的经RNAstable保护的样品进行生物分析仪电泳,结果显示其完整性得分与-80°C对照相当。我们得出结论,使用RNAstable有望成为一种有效的总RNA稳定试剂,在运输和储存选择有限的情况下应该会很有用。