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Loop-mediated isothermal amplification (LAMP) - review and classification of methods for sequence-specific detection

机译:环形介导的等温扩增(灯) - 序列特异性检测方法的回顾和分类

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In the course of the last 20 years, isothermal nucleic acid amplification tests have emerged as an important diagnostic tool, not only for clinical applications, but also for food quality control and environmental monitoring. Loop-mediated isothermal amplification (LAMP) is well known for its robust and highly sensitive and specific amplification of target DNA, which is achieved by utilizing up to six primers. Moreover, LAMP excels through its isothermal and energy efficient amplification requirements, rendering it a prime candidate for low-cost diagnostics and analysis at the point of need. Recently, methods for sequence-specific detection have gained more importance because, unlike sequence-independent detection methods, they are highly specific towards the target DNA. In the last 13 years, a variety of sequence-specific methods have emerged, based on a very diverse range of sensing techniques, including optical, magnetic, piezoelectric, electrochemical and magnetoresistive sensing. To give structure to the diverse multitude of sequence-specific methods, we created a systematic classification and provide a critical comparative evaluation according to a catalogue of criteria (analytical performance, multiplexing, quantification and instrumental requirements). Fluorescence-based detection, making up half of the methods, can be processed on open platforms and satisfies all the criteria listed before. Instrumental requirements are discussed in terms of complexity, portability and fluidic cartridges. In addition, the technological readiness level and the kind of platform (open versus method-tailored) are evaluated, the latter playing an important role in the miniaturization and automation of operational process steps. We also observe an increase in the use of smartphone-integrated sensors to improve LAMP-based point-of-need testing. In summary, recent developments in methods for the sequence-specific detection of LAMP demonstrate high potential for many future applications.
机译:在过去20年的过程中,等温核酸扩增试验作为一个重要的诊断工具,不仅适用于临床应用,而且还用于食品质量控制和环境监测。环介导的等温扩增(灯)众所周知,靶DNA的稳健且高度敏感和特异性扩增,这是通过使用多达六个引物实现的。此外,灯卓越通过其等温和节能放大要求,使其在需要时呈现出低成本诊断和分析的主要候选者。最近,序列特异性检测方法具有更多重要性,因为与术语无关的检测方法不同,它们对靶DNA具有高度特异性。在过去的13年中,基于非常多样化的传感技术,包括光学,磁,压电,电化学和磁阻感测,已经出现了各种序列特定方法。为了使结构各种序列的特定方法,我们创建了系统分类,并根据标准目录(分析性能,多路复用,量化和仪器要求)提供关键的比较评估。基于荧光的检测,可以在开放平台上处理一半的方法,并满足以前列出的所有标准。在复杂性,可移植性和流体盒方面讨论了乐器要求。此外,评估了技术准备水平和平台的种类(开放与方法量身定制),后者在运营过程步骤的小型化和自动化中起着重要作用。我们还观察使用智能手机集成传感器的使用增加,以改善基于灯的需求点测试。总之,灯的序列特异性检测方法的最新进展表现出许多未来应用的高潜力。

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