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A Generic, Scalable, and Rapid Time-Resolved F?rster Resonance Energy Transfer-Based Assay for Antigen Detection—SARS-CoV-2 as a Proof of Concept

机译:抗原检测-SARS-COV-2的基于通用,可伸缩和快速的时间分辨的F?基于抗原检测-SARS-COV-2作为概念证据

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ABSTRACT The ongoing coronavirus disease 2019 (COVID-19) pandemic has seen an unprecedented increase in the demand for rapid and reliable diagnostic tools, leaving many laboratories scrambling for resources. We present a fast and simple assay principle for antigen detection and demonstrate its functionality by detecting severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) antigens in nasopharyngeal swabs. The method is based on the detection of SARS-CoV-2 nucleoprotein (NP) and S protein (SP) via time-resolved F?rster resonance energy transfer (TR-FRET) with donor- and acceptor-labeled polyclonal anti-NP and -SP antibodies. Using recombinant proteins and cell culture-grown SARS-CoV-2, the limits of detection were established as 25?pg of NP or 20 infectious units (IU) and 875?pg of SP or 625 IU. Testing reverse transcription-PCR (RT-PCR)-positive ( n ?=?48, with cycle threshold [ C _(T) ] values from 11 to 30) or -negative ( n ?=?96) nasopharyngeal swabs demonstrated that the assay yielded positive results for all samples with C _(T) values of &25 and for a single RT-PCR-negative sample. Virus isolation from the RT-PCR-positive nasopharyngeal swabs showed a strong association between the presence of infectious virus and a positive antigen test result. The NP-based assay showed 97.4% (37/38) sensitivity and 100% (10/10) specificity in comparison with virus isolation and 77.1% (37/48) sensitivity and 99.0% (95/96) specificity in comparison with SARS-CoV-2 RT-PCR. The assay is performed in a buffer that neutralizes SARS-CoV-2 infectivity, and the assay is relatively simple to set up as an “in-house” test. Here, SARS-CoV-2 served as the model pathogen, but the assay principle is applicable to other viral infections, and the test format could easily be adapted to high-throughput testing.
机译:摘要2019年持续的冠状病毒疾病(Covid-19)大流行病的需求急需增加,使许多实验室争夺资源。我们提出了一种快速而简单的测定原理,用于抗原检测,并通过检测鼻咽拭子中的严重急性呼吸综合征冠状病毒2(SARS-COV-2)抗原来证明其功能。该方法基于检测SARS-COV-2核蛋白(NP)和S蛋白(SP)的通过时间分辨的F-RSTER共振能量转移(TR-FRET),具有供体和受体标记的多克隆抗NP和-SP抗体。使用重组蛋白质和细胞培养生长的SARS-COV-2,检测的限值建立为25μl的NP或20个感染单元(IU)和875×PG的SP或625 IU。测试逆转录PCR(RT-PCR) - 呈阳性(N?=Δ48,循环阈值[C _(T)]值从11至30)或 - Negative(n?=β96)鼻咽拭子证明了测定结果为&amp的C _(t)值的所有样品产生阳性结果; 25和单个RT-PCR阴性样品。来自RT-PCR阳性鼻咽拭子的病毒分离显示出感染病毒的存在和阳性抗原试验结果之间的强烈关联。基于NP的测定显示出97.4%(37/38)敏感性和100%(10/10)特异性,与病毒分离相比,77.1%(37/48)敏感性和99.0%(95/96)特异性,与SARS相比-CoV-2 RT-PCR。测定在缓冲液中进行,该缓冲液中和SARS-COV-2感染性,并且测定相对简单地设置为“内部”测试。这里,SARS-COV-2用作模型病原体,但是测定原理适用于其他病毒感染,并且测试格式很容易适应高通量测试。

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