High-Quality and High-Yield RNA Extraction Method From Whole Human Saliva.

IF 3.4 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Biomarker Insights Pub Date : 2020-06-08 eCollection Date: 2020-01-01 DOI:10.1177/1177271920929705
Vaibhav Gandhi, Mara H O'Brien, Sumit Yadav
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引用次数: 7

Abstract

Background: Human saliva has been identified as a novel, practical, and noninvasive source of biomarkers and genetic materials. However, it is equally challenging due to the availability of an abundance of impurities in the form of microbes and other proteinaceous compounds. The objective of this study was to develop a robust, reproducible, and economic method of extracting high-yield and high-quality RNA from whole human saliva.

Methods: The modified TRIzol protocol was developed to extract RNA from saliva (n = 14), followed by complementary DNA synthesis and reverse transcription quantitative polymerase chain reaction analyses for the genes encoding IL1B, ALPL, RUNX2, and ACTB. To compare our protocol with the spin column-based method, we used Qiagen Salivary Protect Micro-RNA spin columns (n = 6). To evaluate and compare the yields and quality of extracted RNAs from both methods, we used (1) Experion Bioanalyzer, (2) QuantiFluor RNA dye, and (3) NanoDrop 2000 Spectrometer.

Results: With the modified TRIzol lysis protocol, a high yield of total RNA, on average 12.34 μg, from saliva was extracted compared with on average 0.2 μg with a spin column-based method. The average RQI (RNA quality index) with the TRIzol method was 7.86, which is also comparable with that of the spin column-based method (RQI = 7.58). QuantiFluor dye used for RNA quantification showed a 16-fold higher yield of RNA concentration using our TRIzol protocol.

Conclusions: Our modified TRIzol protocol is a reproducible method to extract RNA from whole human saliva which can be used for gene expression analysis. This method allows also ensures the quality of RNA required for specific applications such as RNA sequencing.

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人全唾液高质量、高产率RNA提取方法。
背景:人类唾液已被确定为一种新颖、实用、无创的生物标志物和遗传物质来源。然而,由于微生物和其他蛋白质化合物形式的大量杂质的可用性,这同样具有挑战性。本研究的目的是建立一种可靠的、可重复的、经济的从人唾液中提取高产量和高质量RNA的方法。方法:采用改进的TRIzol方法提取唾液RNA (n = 14),对IL1B、ALPL、RUNX2和ACTB编码基因进行互补DNA合成和逆转录定量聚合酶链反应分析。为了与基于自旋柱的方法进行比较,我们使用Qiagen Salivary Protect Micro-RNA自旋柱(n = 6)。为了评估和比较两种方法提取的RNA的产量和质量,我们使用了(1)Experion生物分析仪,(2)QuantiFluor RNA染料和(3)NanoDrop 2000光谱仪。结果:采用改进的TRIzol裂解方案,从唾液中提取总RNA的平均产量为12.34 μg,而采用自旋柱法提取总RNA的平均产量为0.2 μg。TRIzol法的平均RQI (RNA质量指数)为7.86,与基于自旋柱的方法(RQI = 7.58)相当。用于RNA定量的quantifluer染料显示,使用我们的TRIzol协议,RNA浓度的产量提高了16倍。结论:改进的TRIzol方法是一种可重复提取人唾液RNA的方法,可用于基因表达分析。这种方法还可以确保特定应用(如RNA测序)所需的RNA质量。
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来源期刊
Biomarker Insights
Biomarker Insights MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
6.00
自引率
0.00%
发文量
26
审稿时长
8 weeks
期刊介绍: An open access, peer reviewed electronic journal that covers all aspects of biomarker research and clinical applications.
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