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qPCR、dPCR 和 MPS 中的 PCR 抑制:机制与解决方案。

PCR inhibition in qPCR, dPCR and MPS-mechanisms and solutions.

机构信息

Swedish National Forensic Centre, Swedish Police Authority, 581 94, Linköping, Sweden.

Applied Microbiology, Department of Chemistry, Lund University, P.O. Box 124, 221 00, Lund, Sweden.

出版信息

Anal Bioanal Chem. 2020 Apr;412(9):2009-2023. doi: 10.1007/s00216-020-02490-2. Epub 2020 Feb 12.

Abstract

DNA analysis has seen an incredible development in terms of instrumentation, assays and applications over the last years. Massively parallel sequencing (MPS) and digital PCR are now broadly applied in research and diagnostics, and quantitative PCR is used for more and more practises. All these techniques are based on in vitro DNA polymerization and fluorescence measurements. A major limitation for successful analysis is the various sample-related substances that interfere with the analysis, i.e. PCR inhibitors. PCR inhibition affects library preparation in MPS analysis and skews quantification in qPCR, and some inhibitors have been found to quench the fluorescence of the applied fluorophores. Here, we provide a deeper understanding of mechanisms of specific PCR inhibitors and how these impact specific analytical techniques. This background knowledge is necessary in order to take full advantage of modern DNA analysis techniques, specifically for analysis of samples with low amounts of template and high amounts of background material. The classical solution to handle PCR inhibition is to purify or dilute DNA extracts, which leads to DNA loss. Applying inhibitor-tolerant DNA polymerases, either single enzymes or blends, provides a more straightforward and powerful solution. This review includes mechanisms of specific PCR inhibitors as well as solutions to the inhibition problem in relation to cutting-edge DNA analysis.

摘要

近年来,DNA 分析在仪器设备、检测方法和应用方面取得了令人瞩目的发展。大规模平行测序(MPS)和数字 PCR 现已广泛应用于研究和诊断领域,而定量 PCR 的应用也越来越多。所有这些技术都基于体外 DNA 聚合和荧光测量。成功分析的一个主要限制因素是各种与样本相关的物质会干扰分析,即 PCR 抑制剂。PCR 抑制剂会影响 MPS 分析中的文库制备,并使 qPCR 的定量结果产生偏差,而且一些抑制剂已被发现会猝灭所应用荧光染料的荧光。在这里,我们深入了解了特定 PCR 抑制剂的作用机制,以及这些抑制剂如何影响特定的分析技术。为了充分利用现代 DNA 分析技术,特别是分析模板含量低、背景物质含量高的样本,这一背景知识是必要的。处理 PCR 抑制的经典方法是纯化或稀释 DNA 提取物,这会导致 DNA 损失。使用抑制剂耐受型 DNA 聚合酶,无论是单一酶还是混合酶,都是一种更直接、更强大的解决方案。本文综述了特定 PCR 抑制剂的作用机制,以及针对尖端 DNA 分析中抑制问题的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8054/7072044/25c35546732a/216_2020_2490_Fig1_HTML.jpg

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