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Assessing a novel room-temperature RNA storage medium for compatibility in microarray gene expression analysis

机译:评估一种新型的室温RNA存储介质,以用于微阵列基因表达分析中的相容性

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摘要

RNA integrity is a critical factor in obtaining meaningful gene expression data. Current methodologies rely on maintaining samples in cold environments during collection, transport, processing, and storage procedures, which are also extremely time-sensitive. Several RNA storage products are commercially available to help prevent degradation during the handling and storage steps; however, samples must be kept cold for optimal protection. We have evaluated a novel RNA storage medium based on anhydrobiosis for stabilizing and protecting samples from degradation at room temperature that are intended for use in microarray analysis. Samples were stored dry at room temperature for various time periods to assess any degradation or loss of activity as compared with frozen control samples. Recovered samples were used directly for analysis without further purification and exhibited no interference or inhibition in downstream applications. Comparison of gene expression profiles indicate no significant differences between freezer-stored control samples and those kept at room temperature protected in the RNA storage medium. The quality of recovered RNA was confirmed using spectrophotometry and Bioanalyzer analysis and was identical to control samples. The ability to stabilize RNA samples at ambient temperatures for extended time periods will have tremendous use, particularly for sample shipment to core facilities.
机译:RNA完整性是获得有意义的基因表达数据的关键因素。当前的方法依赖于在采集,运输,处理和存储过程中将样品保持在寒冷的环境中,这也非常敏感。市场上有几种RNA储存产品可用于防止在处理和储存步骤中降解;但是,样品必须保持低温以提供最佳保护。我们已经评估了一种基于脱水生物的新型RNA存储介质,用于稳定和保护样品在室温下不降解,旨在用于微阵列分析。将样品在室温下干燥保存各种时间,以评估与冷冻对照样品相比活性的任何降低或降低。回收的样品无需进一步纯化即可直接用于分析,并且在下游应用中无干扰或抑制。基因表达谱的比较表明,冷冻保存的对照样品与室温保存在RNA存储介质中的对照样品之间没有显着差异。使用分光光度法和生物分析仪确认回收的RNA的质量,并且与对照样品相同。在环境温度下长时间稳定RNA样品的能力将得到极大的利用,特别是将样品运送到核心设施时。

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