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Highly sensitive detection of DNA methylation levels by using a quantum dot-based FRET method

机译:高度敏感的检测DNA甲基化通过使用量子水平基于烦恼的方法

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摘要

DNA methylation is the most frequently studied epigenetic modification that is strongly involved in genomic stability and cellular plasticity. Aberrant changes in DNA methylation status are ubiquitous in human cancer and the detection of these changes can be informative for cancer diagnosis. Herein, we reported a facile quantum dot-based (QD-based) fluorescence resonance energy transfer (FRET) technique for the detection of DNA methylation. The method relies on methylation-sensitive restriction enzymes for the differential digestion of genomic DNA based on its methylation status. Digested DNA is then subjected to PCR amplification for the incorporation of Alexa Fluor-647 (A647) fluorophores. DNA methylation levels can be detected qualitatively through gel analysis and quantitatively by the signal amplification from QDs to A647 during FRET. Furthermore, the methylation levels of three tumor suppressor genes, PCDHGB6, HOXA9 and RASSF1A, in 20 lung adenocarcinoma and 20 corresponding adjacent nontumorous tissue (NT) samples were measured to verify the feasibility of the QD-based FRET method and a high sensitivity for cancer detection (up to 90%) was achieved. Our QD-based FRET method is a convenient, continuous and high-throughput method, and is expected to be an alternative for detecting DNA methylation as a biomarker for certain human cancers.
机译:DNA甲基化是最频繁的研究表观遗传修饰强烈相关基因组稳定性和细胞的可塑性。异常的DNA甲基化状态的变化无处不在的人类癌症的检测这些变化可以为癌症信息诊断基于荧光共振(QD-based)能量转移(烦恼)技术DNA甲基化的检测。在methylation-sensitive限制性内切酶基于微分消化的基因组DNA甲基化状态。进行的PCR扩增公司Alexa萤石- 647 (A647)荧光团。通过凝胶分析和定性检测定量的信号放大量子点在A647烦恼。甲基化水平的三个肿瘤抑制基因、PCDHGB6 HOXA9 RASSF1A基因,在20个肺腺癌和20名对应的相邻nontumorous组织(NT)样品测定验证的可行性QD-based烦恼针对癌症的方法和高灵敏度检测(高达90%)。烦恼是一种方便的方法,连续的和高通量方法,有望成为一个替代检测DNA甲基化的对于某些人类癌症生物标志物。

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