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基于扩增引发点分析的纸膜定量等温扩增。

Quantitative isothermal amplification on paper membranes using amplification nucleation site analysis.

机构信息

Department of Mechanical Engineering, University of Washington, Stevens Way, Box 352600, Seattle, WA 98195, Washington, USA.

Department of Chemical Engineering, University of Washington, Seattle, Washington, USA.

出版信息

Lab Chip. 2022 Jun 14;22(12):2352-2363. doi: 10.1039/d2lc00007e.

Abstract

Quantitative nucleic acid amplification tests (qNAATs) are critical in treating infectious diseases, such as in HIV viral load monitoring or SARS-CoV-2 testing, in which viral load indicates viral suppression or infectivity. Quantitative PCR is the gold standard tool for qNAATs; however, there is a need to develop point-of-care (POC) qNAATs to manage infectious diseases in outpatient clinics, low- and middle-income countries, and the home. Isothermal amplification methods are an emerging tool for POC NAATs as an alternative to traditional PCR-based workflows. Previous works have focused on relating isothermal amplification bulk fluorescence signals to input copies of target nucleic acids for sample quantification with limited success. In this work, we show that recombinase polymerase amplification (RPA) reactions on paper membranes exhibit discrete fluorescent amplification nucleation sites. We demonstrate that the number of nucleation sites can be used to quantify HIV-1 DNA and viral RNA in less than 20 minutes. An image-analysis algorithm quantifies nucleation sites and determines the input nucleic acid copies in the range of 67-3000 copies per reaction. We demonstrate a mobile phone-based system for image capture and onboard processing, illustrating that this method may be used at the point-of-care for qNAATs with minimal instrumentation.

摘要

定量核酸扩增检测(qNAAT)在治疗传染病方面至关重要,例如在 HIV 病毒载量监测或 SARS-CoV-2 检测中,病毒载量表明病毒抑制或传染性。实时荧光定量 PCR 是 qNAAT 的金标准工具;然而,需要开发即时检测(POC)qNAAT 来管理门诊诊所、低收入和中等收入国家以及家庭中的传染病。等温扩增方法是替代传统基于 PCR 工作流程的 POC NAAT 的新兴工具。以前的工作主要集中在将等温扩增的体荧光信号与目标核酸的输入拷贝相关联,以进行样品定量,但取得的成功有限。在这项工作中,我们表明在纸膜上的重组酶聚合酶扩增(RPA)反应显示出离散的荧光扩增成核位点。我们证明可以使用成核位点的数量来在不到 20 分钟的时间内定量 HIV-1 DNA 和病毒 RNA。图像分析算法定量核位点,并确定每个反应中 67-3000 个拷贝范围内的输入核酸拷贝数。我们展示了一种基于手机的图像采集和板载处理系统,表明该方法可用于即时检测,具有最小的仪器设备,用于 qNAAT。

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