使用一次性试纸和金属氧化物半导体场效应晶体管平台快速诊断SARS-CoV-2。

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Chan-Wen Chiu, Minghan Xian, Jenna L Stephany, Xinyi Xia, Chao-Ching Chiang, Fan Ren, Cheng-Tse Tsai, Siang-Sin Shan, Yu-Te Liao, Josephine F Esquivel-Upshaw, Santosh R Rananaware, Long T Nguyen, Nicolas C Macaluso, Piyush K Jain, Melanie N Cash, Carla N Mavian, Marco Salemi, Marino E Leon, Chin-Wei Chang, Jenshan Lin, Stephen J Pearton
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引用次数: 2

摘要

SARS-CoV-2大流行在全球产生了重大影响。目前,最常用的病毒检测方法是聚合酶链反应(PCR)和侧流试验。聚合酶链反应(PCR)需要一个多小时才能获得结果,横向流动试验难以检测低浓度的病毒。本研究采用一次性葡萄糖生物传感器条和可重复使用的印刷电路板对60份临床人唾液样本进行COVID-19筛查,其中30份为RT-PCR阳性样本,30份为阴性样本。一次性试纸条被镀金并被功能化以固定抗体在金膜上。功能化后,将条带连接到印刷电路板上金属氧化物半导体场效应晶体管的栅极上,以放大测试信号。将一个同步双脉冲偏置电压加到晶体管和带的漏极上。由此产生的漏极波形变化被转换为数字读数。再次使用定量PCR (RT-qPCR)检测经rt -PCR确认的唾液样本,以确定循环阈值(Ct)。Ct值高达45是指检测病毒存在所需的扩增周期数。将这些PCR结果与传感器的数字读数进行比较,以更好地评估传感器技术。结果表明,Ct值在17.8 ~ 35范围内的样品均能被区分出来,说明该传感器技术的灵敏度有所提高。这项研究表明,这种生物传感器技术有潜力进一步发展成为一种具有成本效益的、即时护理的便携式SARS-CoV-2快速检测方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Rapid SARS-CoV-2 diagnosis using disposable strips and a metal-oxide-semiconductor field-effect transistor platform.

Rapid SARS-CoV-2 diagnosis using disposable strips and a metal-oxide-semiconductor field-effect transistor platform.

The SARS-CoV-2 pandemic has had a significant impact worldwide. Currently, the most common detection methods for the virus are polymerase chain reaction (PCR) and lateral flow tests. PCR takes more than an hour to obtain the results and lateral flow tests have difficulty with detecting the virus at low concentrations. In this study, 60 clinical human saliva samples, which included 30 positive and 30 negative samples confirmed with RT-PCR, were screened for COVID-19 using disposable glucose biosensor strips and a reusable printed circuit board. The disposable strips were gold plated and functionalized to immobilize antibodies on the gold film. After functionalization, the strips were connected to the gate electrode of a metal-oxide-semiconductor field-effect transistor on the printed circuit board to amplify the test signals. A synchronous double-pulsed bias voltage was applied to the drain of the transistor and strips. The resulting change in drain waveforms was converted to digital readings. The RT-PCR-confirmed saliva samples were tested again using quantitative PCR (RT-qPCR) to determine cycling threshold (Ct) values. Ct values up to 45 refer to the number of amplification cycles needed to detect the presence of the virus. These PCR results were compared with digital readings from the sensor to better evaluate the sensor technology. The results indicate that the samples with a range of Ct values from 17.8 to 35 can be differentiated, which highlights the increased sensitivity of this sensor technology. This research exhibits the potential of this biosensor technology to be further developed into a cost-effective, point-of-care, and portable rapid detection method for SARS-CoV-2.

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CiteScore
2.70
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