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通过与寡核苷酸探针修饰的金纳米粒子偶联的入侵反应可视化检测多重环介导等温扩增扩增子中的单碱基差异。

Visualized detection of single-base difference in multiplexed loop-mediated isothermal amplification amplicons by invasive reaction coupled with oligonucleotide probe-modified gold nanoparticles.

机构信息

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

School of Life Science and Technology, China Pharmaceutical University, Nanjing 210009, China.

出版信息

Biosens Bioelectron. 2017 Apr 15;90:388-393. doi: 10.1016/j.bios.2016.12.015. Epub 2016 Dec 8.

Abstract

Loop-mediated isothermal amplification (LAMP) is a well-developed DNA amplification method with an ultra-high sensitivity, but it is difficult to recognize a single-base difference (like genotyping) in target-specific amplicons by conventional detection ways, such as the intercalation of dyes into dsDNA amplicons or the increase of solution turbidity along with the polymerization process. To allow genotyping based on LAMP suitable for POCT (point-of-care testing) or on-site testing, here we proposed a highly specific and cost-effective method for detecting a single-base difference in LAMP amplicons. The method includes three key steps, sequence amplifier to amplify multiple fragments containing the single nucleotide polymorphisms (SNPs) of interest, allele identifier to recognize a targeted base in the amplicons by invasive reaction, and signal generator to yield signals by hybridization-induced assembly of oligonucleotide probe-modified gold nanoparticles. Because the allele identifier is sensitive to one base difference, it is possible to use multiplexed LAMP (mLAMP) to generate amplicon mixtures for multiple SNP typing. Genotyping of 3 different SNPs (CYP2C192, CYP2C193 and MDR1-C3435T) for guiding the dosage of clopidogrel is successfully carried out in a 3-plex LAMP on real clinical samples. As our method relies on the naked-eye detection and constant-temperature reaction, no expensive instrument is required for both target amplification and sequence identification, thus much suitable for inexpensive gene-guided personalized medicine in source-limited regions.

摘要

环介导等温扩增 (LAMP) 是一种高度成熟的 DNA 扩增方法,具有超高的灵敏度,但通过传统的检测方法(如染料插入双链 DNA 扩增子或聚合过程中溶液浊度的增加)很难识别目标特异性扩增子中的单碱基差异(如基因分型)。为了允许基于 LAMP 的基因分型适合 POCT(即时检测)或现场检测,我们在这里提出了一种用于检测 LAMP 扩增子中单碱基差异的高度特异性和具有成本效益的方法。该方法包括三个关键步骤,序列扩增器扩增包含感兴趣的单核苷酸多态性 (SNP) 的多个片段,等位基因识别器通过入侵反应识别扩增子中的靶向碱基,以及信号发生器通过杂交诱导寡核苷酸探针修饰的金纳米粒子的组装产生信号。由于等位基因识别器对单碱基差异敏感,因此可以使用多重 LAMP (mLAMP) 生成用于多种 SNP 分型的扩增子混合物。在对真实临床样本进行的 3 重 LAMP 中成功进行了指导氯吡格雷剂量的 3 种不同 SNP(CYP2C192、CYP2C193 和 MDR1-C3435T)的基因分型。由于我们的方法依赖于肉眼检测和恒温反应,因此无需昂贵的仪器即可进行目标扩增和序列识别,因此非常适合资源有限地区的廉价基因指导个性化医学。

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