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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Ultra-precise label-free nanosensor based on integrated graphene with Au nanostars toward direct detection of IgG antibodies of SARS-CoV-2 in blood
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Ultra-precise label-free nanosensor based on integrated graphene with Au nanostars toward direct detection of IgG antibodies of SARS-CoV-2 in blood

机译:基于集成石墨烯的超精密标记纳米传感器,与Au nanostars直接检测血液中SARS-COV-2的IgG抗体

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Rapid distribution of airborne contagious pathogenic viruses such as SRAS-CoV-2 and their severely adverse impacts on different aspects of the human society, along with significant weaknesses of traditional diagnostic platforms, raised the global requirement for the design/fabrication of precise, sensitive, and rapid nanosystems capable of specific detection of viral illnesses with almost negligible false-negative results. To address this indispensable requirement, we have developed an ultra-precise fast diagnostic platform capable of detecting the trace of monoclonal IgG antibody against S1 protein of SARS-CoV-2 within infected patients' blood specimens with COVID-19 in about 1 min. The as-developed electrochemical-based nanosensor consists of a highly activated graphene-based platform in conjunction with Au nanostars, which can detect SARS-CoV-2 antibodies with a fantastic detection limit (DL) and sensitivity of 0.18 & times; 10 & minus;19%V/V and 2.14 mu A.%V/V.cm & minus;2, respectively, in human blood plasma specimens even upon the presence of a high amount of interfering compound/antibodies. The nanosensor also exhibited remarkable sensitivity/specificity compared with the gold standard (i.e., ELISA assay), which furtherly confirmed its superb performance.
机译:SRAS-CoV-2等空气传播的传染性致病性病毒的迅速传播及其对人类社会不同方面的严重负面影响,以及传统诊断平台的显著弱点,提高了全球对精确、灵敏、高效、高可靠性的,以及能够特异性检测病毒疾病的快速纳米系统,假阴性结果几乎可以忽略不计。为了满足这一不可或缺的要求,我们研制了2019冠状病毒疾病患者血液标本中SARS COV-2单克隆抗体的超精密快速诊断平台,该仪器可在1分钟内检测到感染的患者血液标本中的SARS COV-2,该抗体是由一种高度活化的石墨烯为基础的平台,与Au nanostars一起,可检测SARS-CoV-2抗体,检测限(DL)高达0.18倍,灵敏度高达100%;10&负;19%V/V和2.14亩A.%V/V.cm&负;2,即使在存在大量干扰化合物/抗体的情况下,也分别在人血浆样本中。与金标准(即ELISA分析)相比,纳米传感器还表现出显著的灵敏度/特异性,这进一步证实了其卓越的性能。

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