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基于滚环扩增和光诱导电子转移的双重信号增强策略用于甲基化 DNA 的超灵敏荧光检测。

Double signal enhancement strategy based on rolling circle amplification and photoinduced electron transfer for ultrasensitive fluorometric detection of methylated DNA.

机构信息

Key Laboratory of Laboratory Medical Diagnostics, Chinese Ministry of Education, Department of Laboratory Medicine, Chongqing Medical University, No. 1 Yi Xue Yuan Road, Chongqing, 400016, People's Republic of China.

出版信息

Mikrochim Acta. 2018 May 13;185(6):299. doi: 10.1007/s00604-018-2839-x.

Abstract

The authors describe a novel assay for the detection of methylated DNA site. Rolling circle amplification and CdSe/ZnS quantum dots with high fluorescence efficiency are applied in this method. The CdSe/ZnS quantum dots act as electron donors, and hemin and oxygen (derived from hydrogen peroxide act as acceptors in photoinduced electron transfer. The assay, best performed at excitation/emission peaks of 450/620 nm, is sensitive and specific. Fluorometric response is linear in the 1 pM to 100 nM DNA concentration range, and the lowest detectable concentration of methylated DNA is 142 fM (S/N = 3). The method is capable of recognizing 0.01% methylated DNA in a mixture of methylated/unmethylated DNA. Graphical abstract A novel method for methylated sites detection in DNA is established. Rolling circle amplification and photoinduced electron transfer. CdSe/ZnS quantum dots with high fluorescence efficiency act as the electron donor, while G-quadruplex/hemin and hydrogen peroxide derived oxygen act as electron acceptor. It presents a linear response towards 1 pM to 100 nM methylated DNA with a correlation coefficient of 0.9968, and the lowest detectable concentration of methylated DNA was 142 fM, with selectivity significantly superior to other methods.

摘要

作者描述了一种用于检测甲基化 DNA 位点的新方法。该方法应用了滚环扩增和具有高荧光效率的 CdSe/ZnS 量子点。CdSe/ZnS 量子点作为电子供体,而血红素和氧(来源于过氧化氢)在光诱导电子转移中作为电子受体。该方法在 450/620nm 的激发/发射峰处表现最佳,具有灵敏度和特异性。荧光响应在 1pM 至 100nM DNA 浓度范围内呈线性,最低可检测到的甲基化 DNA 浓度为 142fM(S/N=3)。该方法能够识别混合甲基化/未甲基化 DNA 中 0.01%的甲基化 DNA。

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