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多重 LAMP 检测法:方法学综述与诊断应用。

Multiplexing LAMP Assays: A Methodological Review and Diagnostic Application.

机构信息

Infectious and Tropical Diseases Research Group (e-INTRO), Biomedical Research Institute of Salamanca Research Centre for Tropical Diseases at the University of Salamanca (IBSAL-CIETUS), Faculty of Pharmacy, University of Salamanca, 37007 Salamanca, Spain.

出版信息

Int J Mol Sci. 2024 Jun 9;25(12):6374. doi: 10.3390/ijms25126374.

Abstract

The loop-mediated isothermal amplification (LAMP) technique is a great alternative to PCR-based methods, as it is fast, easy to use and works with high sensitivity and specificity without the need for expensive instruments. However, one of the limitations of LAMP is difficulty in achieving the simultaneous detection of several targets in a single tube, as the methodologies that allow this rely on fluorogenic probes containing specific target sequences, complicating their adaptation and the optimization of assays. Here, we summarize different methods for the development of multiplex LAMP assays based on sequence-specific detection, illustrated with a schematic representation of the technique, and evaluate their practical application based on the real-time detection and quantification of results, the possibility to visualize the results at a glance, the prior stabilization of reaction components, promoting the point-of-care use, the maximum number of specific targets amplified, and the validation of the technique in clinical samples. The various LAMP multiplexing methodologies differ in their operating conditions and mechanism. Each methodology has its advantages and disadvantages, and the choice among them will depend on specific application interests.

摘要

环介导等温扩增(LAMP)技术是一种替代基于 PCR 的方法的好方法,因为它快速、易于使用,并且具有高灵敏度和特异性,而无需昂贵的仪器。然而,LAMP 的一个限制是难以在单个管中同时检测多个靶标,因为允许这种方法的方法依赖于含有特定靶序列的荧光探针,这使得它们的适应和检测的优化变得复杂。在这里,我们总结了基于序列特异性检测的多重 LAMP 检测方法,并用该技术的示意图进行了说明,并根据实时检测和定量结果、能够一目了然地查看结果的可能性、反应成分的预先稳定化、促进即时使用、可扩增的最大特异性靶标数量以及在临床样本中的技术验证来评估它们的实际应用。各种 LAMP 多重化方法在操作条件和机制上有所不同。每种方法都有其优点和缺点,选择哪种方法将取决于特定的应用兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/870e/11203869/6e27ee273486/ijms-25-06374-g001.jpg

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