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A novel approach for evaluating the performance of real time quantitative loop-mediated isothermal amplification-based methods

机译:一种评估实时定量环介导的等温扩增方法性能的新颖方法

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摘要

Molecular diagnostic measurements are currently underpinned by the polymerase chain reaction (PCR). There are also a number of alternative nucleic acid amplification technologies, which unlike PCR, work at a single temperature. These ‘isothermal’ methods, reportedly offer potential advantages over PCR such as simplicity, speed and resistance to inhibitors and could also be used for quantitative molecular analysis. However there are currently limited mechanisms to evaluate their quantitative performance, which would assist assay development and study comparisons. This study uses a sexually transmitted infection diagnostic model in combination with an adapted metric termed isothermal doubling time (IDT), akin to PCR efficiency, to compare quantitative PCR and quantitative loop-mediated isothermal amplification (qLAMP) assays, and to quantify the impact of matrix interference. The performance metric described here facilitates the comparison of qLAMP assays that could assist assay development and validation activities.
机译:分子诊断测量目前由聚合酶链反应(PCR)支持。还有许多替代核酸扩增技术,与PCR不同,它们可在单一温度下工作。据报道,这些“等温”方法相对于PCR具有潜在的优势,例如简单,快速和对抑制剂的抵抗力,也可用于定量分子分析。但是,目前仅有有限的机制来评估其定量性能,这将有助于测定方法的开发和研究比较。这项研究将性传播感染诊断模型与称为PCR效率的适应标准称为等温倍增时间(IDT)结合使用,以比较定量PCR和定量环介导的等温扩增(qLAMP)分析,并量化矩阵干扰。此处描述的性能指标有助于比较qLAMP分析,从而有助于分析开发和验证活动。

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