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采用串联侵入反应作为序列标识符,对 cfDNA 中的 EGFR 突变丰度进行高灵敏度和特异性的实时 PCR 定量分析。

Highly sensitive and specific real-time PCR by employing serial invasive reaction as a sequence identifier for quantifying EGFR mutation abundance in cfDNA.

机构信息

Key Laboratory of Drug Quality Control and Pharmacovigilance of Ministry of Education, School of Pharmacy, China Pharmaceutical University, Nanjing, 210009, Jiangsu, China.

Department of Pharmacology, Jinling Hospital, Medical School of Nanjing University, Nanjing, 210002, Jiangsu, China.

出版信息

Anal Bioanal Chem. 2018 Oct;410(26):6751-6759. doi: 10.1007/s00216-018-1316-z. Epub 2018 Aug 20.

Abstract

Detection of EGFR mutations in circulating cell-free DNA (cfDNA) is beneficial to monitor the therapeutic effect, tumor progression, and drug resistance in real time. However, it requires that the mutation detection method has the ability to quantify the mutation abundance accurately. Although the next-generation sequencing (NGS) and digital PCR showed high sensitivity for quantifying mutations in cfDNA, the use of expensive equipment and the high-cost hampered their applications in the clinic. Herein, we propose a highly sensitive and specific real-time PCR by employing serial invasive reaction as a sequence identifier for quantifying EGFR mutation abundance in cfDNA (termed as qPCR-Invader). The mutation abundance can be quantified by using the difference of Ct values between mutant and wild-type targets without the need of making a standard curve. The method can quantify a mutation level as lower as 0.1% (10 copies/tube). Thirty-six tissue samples from non-small-cell lung cancer (NSCLC) patients were detected by our method and 14/36 tissues gave EGFR L858R mutation-positive results, whereas ARMS-PCR just identified 12 of L858R mutant samples. The two inconsistent samples were confirmed as L858R mutant by pyrophosphorolysis-activated polymerization method, indicating that qPCR-Invader is more sensitive than ARMS-PCR for mutation detection. The L858R mutation abundances of 19 cfDNA samples detected by qPCR-Invader were close to that from NGS, indicating our method can precisely quantify mutation abundance in cfDNA. The qPCR-Invader just needs a common real-time PCR device to accomplish quantification of EGFR mutations, and the fluorescence probes are universal for any target detection. Therefore, it could be used in most laboratories to analyze mutations in cfDNA. Graphical abstract ᅟ.

摘要

检测循环细胞游离 DNA(cfDNA)中的 EGFR 突变有助于实时监测治疗效果、肿瘤进展和耐药性。然而,这需要突变检测方法具有准确量化突变丰度的能力。尽管下一代测序(NGS)和数字 PCR 显示出在 cfDNA 中量化突变的高灵敏度,但昂贵的设备和高成本限制了它们在临床中的应用。在此,我们提出了一种高度敏感和特异的实时 PCR 方法,该方法采用串联入侵反应作为序列标识符,用于量化 cfDNA 中的 EGFR 突变丰度(称为 qPCR-Invader)。无需制作标准曲线,即可通过比较突变型和野生型靶标之间的 Ct 值差异来定量突变丰度。该方法可以定量低至 0.1%(10 拷贝/管)的突变水平。使用我们的方法检测了 36 例非小细胞肺癌(NSCLC)患者的组织样本,其中 14/36 个组织样本 EGFR L858R 突变阳性,而 ARMS-PCR 仅鉴定出 12 个 L858R 突变样本。两个不一致的样本通过焦磷酸酶激活聚合法被确认为 L858R 突变,表明 qPCR-Invader 比 ARMS-PCR 更敏感地检测突变。通过 qPCR-Invader 检测的 19 个 cfDNA 样本的 L858R 突变丰度与 NGS 检测的结果接近,表明该方法可以精确地定量 cfDNA 中的突变丰度。qPCR-Invader 仅需使用普通实时 PCR 设备即可完成 EGFR 突变的定量,并且荧光探针可用于任何目标检测的通用。因此,它可以在大多数实验室中用于分析 cfDNA 中的突变。

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