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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Droplet digital PCR is an accurate method to assess methylation status on FFPE samples
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Droplet digital PCR is an accurate method to assess methylation status on FFPE samples

机译:液滴数码PCR是评估FFPE样品上甲基化状态的准确方法

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摘要

Most tissue samples available for cancer research are archived as formalin-fixed paraffin-embedded (FFPE) samples. However, the fixation process and the long storage duration lead to DNA fragmentation and hinder epigenome analysis. The use of droplet digital PCR (ddPCR) to detect DNA methylation has recently emerged. In this study, we compare an optimized ddPCR assay with a conventional qPCR assay by targeting a dilution series of control DNA. In addition, we compare the ddPCR technology with results from Infinium arrays targeting two separate CpG sites on a set of colon adenoma FFPE samples. Our data demonstrate that qPCR and ddPCR assess methylation status equally well on dilution controls with a high DNA input. However, the methylation detection on low-input samples is more accurate using ddPCR. The proposed primer design (methylation-independent primers with amplification of solely the converted DNA target) will allow for methylation detection, independent of bisulfite conversion efficiency. Those data show that ddPCR can be used for methylation analysis on FFPE samples with a wide range of DNA input and that the precision of the assay depends largely on the total amount of amplifiable DNA fragments. Due to accessibility of the ddPCR technology and its accuracy on high-as well as low-DNA input samples, we propose the use of this approach for studies involving degraded FFPE samples.
机译:可用于癌症研究的大多数组织样本被存档为福尔马林固定的石蜡包埋(FFPE)样品。然而,固定过程和长的储存持续时间导致DNA碎片和妨碍外延蛋白酶体分析。最近出现了使用液滴数码PCR(DDPCR)来检测DNA甲基化。在该研究中,通过靶向稀释系列的对照DNA,将优化的DDPCR测定与常规QPCR测定进行比较。此外,我们将DDPCR技术与Infinium阵列的结果进行比较,瞄准两组结肠腺瘤FFPE样品上的两个单独的CPG位点。我们的数据表明,QPCR和DDPCR在具有高DNA输入的稀释对照上同样地评估甲基化状态。但是,使用DDPCR更准确地对低输入样品的甲基化检测更准确。所提出的底漆设计(甲基化 - 与转化的DNA靶标的扩增的甲基化的引物)将允许甲基化检测,与亚硫酸氢盐转化效率无关。这些数据表明,DDPCR可用于对具有宽范围DNA输入的FFPE样品的甲基化分析,并且测定的精度在很大程度上取决于可扩增性DNA片段的总量。由于DDPCR技术的可访问性及其高于低DNA输入样品的准确性,我们建议使用这种方法进行涉及降解的FFPE样品。

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