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使用褶皱石墨烯场效应晶体管生物传感器检测 SARS-CoV-2 病毒扩增。

Detection of SARS-CoV-2 Virus Amplification Using a Crumpled Graphene Field-Effect Transistor Biosensor.

机构信息

Nick Holonyak Jr. Micro and Nanotechnology Laboratory, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

出版信息

ACS Sens. 2021 Dec 24;6(12):4461-4470. doi: 10.1021/acssensors.1c01937. Epub 2021 Dec 8.

Abstract

The rapid and unexpected spread of SARS-CoV-2 worldwide has caused unprecedented disruption to daily life and has brought forward critical challenges for public health. The disease was the largest cause of death in the United States in early 2021. Likewise, the COVID-19 pandemic has highlighted the need for rapid and accurate diagnoses at scales larger than ever before. To improve the availability of current gold standard diagnostic testing methods, the development of point-of-care devices that can maintain gold standard sensitivity while reducing the cost and providing portability is much needed. In this work, we combine the amplification capabilities of reverse transcriptase loop-mediated isothermal amplification (RT-LAMP) techniques with high-sensitivity end-point detection of crumpled graphene field-effect transistors (cgFETs) to develop a portable detection cell. This electrical detection method takes advantage of the ability of graphene to adsorb single-stranded DNA due to noncovalent π-π bonds but not double-stranded DNA. These devices have demonstrated the ability to detect the presence of the SARS-CoV-2 virus in a range from 10 to 10 copies/μL in 20 viral transport medium (VTM) clinical samples. As a result, we achieved 100% PPV, NPV, sensitivity, and specificity with 10 positive and 10 negative VTM clinical samples. Further, the cgFET devices can differentiate between positive and negative VTM clinical samples in 35 min based on the Dirac point shift. Likewise, the improved sensing capabilities of the crumpled gFET were compared with those of the traditional flat gFET devices.

摘要

SARS-CoV-2 在全球范围内的迅速和意外传播,给日常生活带来了前所未有的破坏,并给公共卫生带来了严峻挑战。该疾病是 2021 年初美国最大的死因。同样,COVID-19 大流行凸显了需要以前所未有的规模进行快速准确的诊断。为了改善当前金标准诊断测试方法的可用性,非常需要开发能够在保持金标准灵敏度的同时降低成本并提供便携性的即时检测设备。在这项工作中,我们将逆转录环介导等温扩增 (RT-LAMP) 技术的扩增能力与褶皱石墨烯场效应晶体管 (cgFET) 的高灵敏度终点检测相结合,开发了一种便携式检测单元。这种电检测方法利用了石墨烯由于非共价 π-π 键而吸附单链 DNA 但不吸附双链 DNA 的能力。这些设备已证明能够在 20 个病毒转运培养基 (VTM) 临床样本中检测到 SARS-CoV-2 病毒的存在,浓度范围为 10 至 10 拷贝/μL。因此,我们用 10 个阳性和 10 个阴性 VTM 临床样本实现了 100%的 PPV、NPV、灵敏度和特异性。此外,基于 Dirac 点位移,cgFET 设备可以在 35 分钟内区分阳性和阴性 VTM 临床样本。同样,与传统的平栅 FET 器件相比,褶皱 gFET 的改进传感性能也得到了比较。

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