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利用带有通用报告基团的新型介体置换探针的简化实时多重环介导等温扩增检测。

Simplified Real-Time Multiplex Detection of Loop-Mediated Isothermal Amplification Using Novel Mediator Displacement Probes with Universal Reporters.

机构信息

Laboratory for MEMS Applications, IMTEK - Department of Microsystems Engineering , University of Freiburg , Georges-Koehler-Allee 103 , 79110 Freiburg , Germany.

Mast Diagnostica GmbH, Feldstraße 20 , 23858 Reinfeld , Germany.

出版信息

Anal Chem. 2018 Apr 3;90(7):4741-4748. doi: 10.1021/acs.analchem.7b05371. Epub 2018 Mar 14.

Abstract

A variety of real-time detection techniques for loop-mediated isothermal amplification (LAMP) based on the change in fluorescence intensity during DNA amplification enable simultaneous detection of multiple targets. However, these techniques depend on fluorogenic probes containing target-specific sequences. That complicates the adaption to different targets leading to time-consuming assay optimization. Here, we present the first universal real-time detection technique for multiplex LAMP. The novel approach allows simple assay design and is easy to implement for various targets. The innovation features a mediator displacement probe and a universal reporter. During amplification of target DNA the mediator is displaced from the mediator displacement probe. Then it hybridizes to the reporter generating a fluorescence signal. The novel mediator displacement (MD) detection was validated against state-of-the-art molecular beacon (MB) detection by means of a HIV-1 RT-LAMP: MD surpassed MB detection by accelerated probe design (MD: 10 min, MB: 3-4 h), shorter times to positive (MD 4.1 ± 0.1 min shorter than MB, n = 36), improved signal-to-noise fluorescence ratio (MD: 5.9 ± 0.4, MB: 2.7 ± 0.4; n = 15), and showed equally good or better analytical performance parameters. The usability of one universal mediator-reporter set in different multiplex assays was successfully demonstrated for a biplex RT-LAMP of HIV-1 and HTLV-1 and a biplex LAMP of Haemophilus ducreyi and Treponema pallidum, both showing good correlation between target concentration and time to positive. Due to its simple implementation it is suggested to extend the use of the universal mediator-reporter sets to the detection of various other diagnostic panels.

摘要

多种实时检测技术可用于环介导等温扩增 (LAMP),这些技术基于 DNA 扩增过程中荧光强度的变化,可实现对多个目标的同时检测。然而,这些技术依赖于含有目标特异性序列的荧光探针。这使得针对不同的目标进行适配变得复杂,导致检测优化耗时。在这里,我们提出了用于多重 LAMP 的第一种通用实时检测技术。该新技术允许简单的检测设计,并且易于针对各种目标进行实施。该创新方法的特点是采用了介体置换探针和通用报告探针。在靶标 DNA 的扩增过程中,介体从介体置换探针中被置换出来。然后,它与报告探针杂交,产生荧光信号。通过 HIV-1 RT-LAMP 对新型介体置换 (MD) 检测与最先进的分子信标 (MB) 检测进行了验证:MD 检测在探针设计上具有加速优势(MD:10 分钟,MB:3-4 小时),阳性时间更短(MD 比 MB 短 4.1 ± 0.1 分钟,n = 36),荧光信号比噪声的比值更高(MD:5.9 ± 0.4,MB:2.7 ± 0.4;n = 15),并且表现出同等或更好的分析性能参数。在不同的多重检测中,成功地证明了一种通用的介体-报告探针组合在一个双靶标 RT-LAMP(HIV-1 和 HTLV-1)和一个双靶标 LAMP(杜克雷嗜血杆菌和梅毒螺旋体)中的可用性,两者都显示出靶标浓度与阳性时间之间的良好相关性。由于其简单的实施,建议将通用的介体-报告探针组合的使用扩展到各种其他诊断面板的检测中。

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