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用于尖峰蛋白早期检测的有机电化学晶体管免疫传感器。

Organic Electrochemical Transistor Immuno-Sensors for Spike Protein Early Detection.

机构信息

CNR-SPIN, c/o Department of Physics ''Ettore Pancini'', P.le Tecchio, 80, 80125 Napoli, Italy.

Department of Chemical, Materials and Production Engineering-University Federico II, P.le Tecchio 80, 80125 Napoli, Italy.

出版信息

Biosensors (Basel). 2023 Jul 17;13(7):739. doi: 10.3390/bios13070739.

Abstract

The global COVID-19 pandemic has had severe consequences from the social and economic perspectives, compelling the scientific community to focus on the development of effective diagnostics that can combine a fast response and accurate sensitivity/specificity performance. Presently available commercial antigen-detecting rapid diagnostic tests (Ag-RDTs) are very fast, but still face significant criticisms, mainly related to their inability to amplify the protein signal. This translates to a limited sensitive outcome and, hence, a reduced ability to hamper the spread of SARS-CoV-2 infection. To answer the urgent need for novel platforms for the early, specific and highly sensitive detection of the virus, this paper deals with the use of organic electrochemical transistors (OECTs) as very efficient ion-electron converters and amplifiers for the detection of spike proteins and their femtomolar concentration. The electrical response of the investigated OECTs was carefully analyzed, and the changes in the parameters associated with the transconductance (i.e., the slope of the transfer curves) in the gate voltage range between 0 and 0.3 V were found to be more clearly correlated with the spike protein concentration. Moreover, the functionalization of OECT-based biosensors with anti-spike and anti-nucleocapside proteins, the major proteins involved in the disease, demonstrated the specificity of these devices, whose potentialities should also be considered in light of the recent upsurge of the so-called "long COVID" syndrome.

摘要

全球 COVID-19 大流行从社会和经济角度来看产生了严重后果,迫使科学界专注于开发能够结合快速响应和准确灵敏度/特异性性能的有效诊断方法。目前可用的商业抗原检测快速诊断测试(Ag-RDT)非常快速,但仍面临重大批评,主要与它们无法放大蛋白质信号有关。这意味着敏感结果有限,因此,减少了阻止 SARS-CoV-2 感染传播的能力。为了满足对新型平台的迫切需求,以实现病毒的早期、特异性和高灵敏度检测,本文探讨了使用有机电化学晶体管(OECT)作为非常有效的离子-电子转换器和放大器,用于检测刺突蛋白及其飞摩尔浓度。仔细分析了所研究的 OECT 的电响应,并且发现与门电压范围在 0 到 0.3 V 之间的跨导(即转移曲线的斜率)相关的参数变化与刺突蛋白浓度更明显相关。此外,用主要涉及疾病的抗刺突和抗核衣壳蛋白对基于 OECT 的生物传感器进行功能化,证明了这些设备的特异性,鉴于最近所谓的“长 COVID”综合征的兴起,还应考虑这些设备的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3979/10377135/e4e602282d38/biosensors-13-00739-g001.jpg

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