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微滴式数字 PCR 与 qPCR 用于低丰度靶基因表达分析:从可变无意义到发表质量数据。

Droplet Digital PCR versus qPCR for gene expression analysis with low abundant targets: from variable nonsense to publication quality data.

机构信息

Bio-Rad Laboratories, Inc., Hercules, CA, 94547, USA.

Department of Chemistry, Biochemistry and Physics, Université du Québec à Trois-Rivières, 3351 boul. des Forges, Trois-Rivières, QC, G9A 5H7, Canada.

出版信息

Sci Rep. 2017 May 25;7(1):2409. doi: 10.1038/s41598-017-02217-x.

Abstract

Quantitative PCR (qPCR) has become the gold standard technique to measure cDNA and gDNA levels but the resulting data can be highly variable, artifactual and non-reproducible without appropriate verification and validation of both samples and primers. The root cause of poor quality data is typically associated with inadequate dilution of residual protein and chemical contaminants that variably inhibit Taq polymerase and primer annealing. The most susceptible, frustrating and often most interesting samples are those containing low abundant targets with small expression differences of 2-fold or lower. Here, Droplet Digital PCR (ddPCR) and qPCR platforms were directly compared for gene expression analysis using low amounts of purified, synthetic DNA in well characterized samples under identical reaction conditions. We conclude that for sample/target combinations with low levels of nucleic acids (Cq ≥ 29) and/or variable amounts of chemical and protein contaminants, ddPCR technology will produce more precise, reproducible and statistically significant results required for publication quality data. A stepwise methodology is also described to choose between these complimentary technologies to obtain the best results for any experiment.

摘要

定量聚合酶链反应 (qPCR) 已成为测量 cDNA 和 gDNA 水平的金标准技术,但如果不对样品和引物进行适当的验证和确认,所得数据可能会高度可变、人为和不可重复。数据质量差的根本原因通常与残留蛋白和化学污染物的稀释不足有关,这些污染物会不同程度地抑制 Taq 聚合酶和引物退火。最容易出现、最令人沮丧且通常最有趣的样本是那些含有低丰度靶标且表达差异较小(2 倍或更低)的样本。在这里,使用低量纯化的合成 DNA 在特征明确的样本中,在相同的反应条件下,直接比较了微滴式数字 PCR (ddPCR) 和 qPCR 平台进行基因表达分析的效果。我们得出的结论是,对于核酸水平较低(Cq≥29)和/或存在化学和蛋白质污染物的样品/靶标组合,ddPCR 技术将产生更精确、可重复且具有统计学意义的结果,这些结果是获得发表质量数据所必需的。还描述了一种逐步的方法学,用于在这两种互补技术之间进行选择,以获得任何实验的最佳结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57cd/5445070/f41fdca2943d/41598_2017_2217_Fig1_HTML.jpg

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