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数字和非数字聚合酶链反应及环介导等温扩增法检测人巨细胞病毒定量的灵敏度、线性、抑制抵抗力比较研究。

Comparative study of sensitivity, linearity, and resistance to inhibition of digital and nondigital polymerase chain reaction and loop mediated isothermal amplification assays for quantification of human cytomegalovirus.

机构信息

LGC , Queens Road, Teddington, Middlesex TW11 0LY, United Kingdom.

出版信息

Anal Chem. 2014 May 6;86(9):4387-94. doi: 10.1021/ac500208w. Epub 2014 Apr 22.

DOI:10.1021/ac500208w
PMID:24684191
Abstract

Performing nucleic acid amplification techniques (NAATs) in digital format using limiting dilution provides potential advantages that have recently been demonstrated with digital polymerase chain reaction (dPCR). Key benefits that have been claimed are the ability to quantify nucleic acids without the need of an external calibrator and a greater resistance to inhibitors than real-time quantitative PCR (qPCR). In this study, we evaluated the performance of four NAATs, qPCR, dPCR, real-time quantitative loop mediated isothermal amplification (qLAMP), and digital LAMP (dLAMP), for the detection and quantification of human cytomegalovirus (hCMV). We used various DNA templates and inhibitors to compare the performance of these methods using a conventional real-time thermocycler platform (Bio-Rad CFX96) and a chip based digital platform (Fluidigm Biomark 12.765 Digital Array). dPCR performed well and demonstrated greater resistance to inhibitors than the other methods although this resistance did not apply equally to all inhibitors tested. dLAMP was found to be less sensitive than dPCR, but its quantitative performance was better than qLAMP, the latter being unable to quantify below 1000 copies. dLAMP was also more resistant to inhibitors than qLAMP. Unlike qPCR, both digital methods were able to quantify viral genomes without requiring a calibrator; however, neither can currently compete with the large reaction volumes, and thus the greater absolute sensitivity, of qPCR. With the introduction of digital instrumentation that will enable larger reaction volumes, digital amplification methods such as those evaluated in this study could potentially offer a robust alternative to qPCR for nucleic acid quantification.

摘要

采用限制稀释法以数字格式进行核酸扩增技术(NAATs)具有潜在优势,最近已通过数字聚合酶链反应(dPCR)得到证实。据称,其主要优势在于无需外部校准物即可定量核酸,并且比实时定量聚合酶链反应(qPCR)具有更高的抗抑制能力。在这项研究中,我们评估了四种 NAATs(qPCR、dPCR、实时定量环介导等温扩增(qLAMP)和数字 LAMP(dLAMP))检测和定量人巨细胞病毒(hCMV)的性能。我们使用各种 DNA 模板和抑制剂,使用传统的实时热循环仪平台(Bio-Rad CFX96)和基于芯片的数字平台(Fluidigm Biomark 12.765 Digital Array)比较了这些方法的性能。dPCR 性能良好,并且与其他方法相比,抗抑制剂能力更强,尽管这种抗抑制作用并非适用于所有测试的抑制剂。尽管 dLAMP 的灵敏度不如 dPCR,但它的定量性能优于 qLAMP,后者无法定量低于 1000 个拷贝。dLAMP 也比 qLAMP 更能抵抗抑制剂。与 qPCR 不同,这两种数字方法都能够在无需校准物的情况下定量病毒基因组;但是,目前这两种方法都无法与 qPCR 的大反应体积(因此具有更大的绝对灵敏度)竞争。随着数字仪器的引入,能够实现更大的反应体积,如本研究中评估的数字扩增方法,可能为核酸定量提供一种比 qPCR 更可靠的替代方法。

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