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An Empirical Approach for Quantifying Loop-Mediated Isothermal Amplification (LAMP) Using Escherichia coli as a Model System

机译:一种使用大肠杆菌作为模型系统定量环介导的等温扩增(LAMP)的经验方法

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摘要

Loop mediated isothermal amplification (LAMP) is a highly efficient, selective and rapid DNA amplification technique for genetic screening of pathogens. However, despite its popularity, there is yet no mathematical model to quantify the outcome and no well-defined metric for comparing results that are available. LAMP is intrinsically complex and involves multiple pathways for gene replication, making fundamental modelling nearly intractable. To circumvent this difficulty, an alternate, empirical model is introduced that will allow one to extract a set of parameters from the concentration versus time curves. A simple recipe to deduce the time to positive, Tp - a parameter analogous to the threshold cycling time in polymerase chain reaction (PCR), is also provided. These parameters can be regarded as objective and unambiguous indicators of LAMP amplification. The model is exemplified on Escherichia coli strains by using the two gene fragments responsible for vero-toxin (VT) production and tested against VT-producing (O157 and O45) and non-VT producing (DH5 alpha) strains. Selective amplification of appropriate target sequences was made using well established LAMP primers and protocols, and the concentrations of the amplicons were measured using a Qubit 2.0 fluorometer at specific intervals of time. The data is fitted to a generalized logistic function. Apart from providing precise screening indicators, representing the data with a small set of numbers offers significant advantages. It facilitates comparisons of LAMP reactions independently of the sampling technique. It also eliminates subjectivity in interpretation, simplifies data analysis, and allows easy data archival, retrieval and statistical analysis for large sample populations. To our knowledge this work represents a first attempt to quantitatively model LAMP and offer a standard method that could pave the way towards high throughput automated screening.
机译:环介导的等温扩增(LAMP)是一种用于病原体遗传筛选的高效,选择性和快速的DNA扩增技术。但是,尽管它很流行,但是还没有数学模型来量化结果,也没有明确的指标来比较可用的结果。 LAMP本质上很复杂,并且涉及基因复制的多种途径,这使得基本建模几乎难以处理。为了避免这一困难,引入了一种替代的经验模型,该模型将允许人们从浓度对时间的曲线中提取出一组参数。还提供了一个简单的方法来推断出达到阳性的时间Tp(类似于聚合酶链反应(PCR)中阈值循环时间的参数)。这些参数可以看作是LAMP扩增的客观和明确的指标。通过使用两个负责维罗毒素(VT)产生的基因片段在大肠杆菌菌株中举例说明该模型,并针对产生VT的菌株(O157和O45)和不产生VT的菌株(DH5α)进行了测试。使用成熟的LAMP引物和方案进行适当靶序列的选择性扩增,并使用Qubit 2.0荧光计在特定时间间隔测量扩增子的浓度。数据适合于广义逻辑函数。除了提供精确的筛选指标外,用少量数字表示数据还具有明显的优势。独立于采样技术,它便于进行LAMP反应的比较。它还消除了解释的主观性,简化了数据分析,并允许轻松地对大样本群体进行数据归档,检索和统计分析。据我们所知,这项工作代表了对LAMP进行定量建模的首次尝试,并提供了可以为高通量自动化筛选铺平道路的标准方法。

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  • 年(卷),期 -1(9),6
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  • 页码 e100596
  • 总页数 10
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