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基于非对称马赫-曾德尔干涉的生物传感用于人血浆中抗 SARS-CoV-2 抗体的定量和灵敏多重检测。

Asymmetric Mach-Zehnder Interferometric Biosensing for Quantitative and Sensitive Multiplex Detection of Anti-SARS-CoV-2 Antibodies in Human Plasma.

机构信息

Surfix Diagnostics, Plus Ultra Building, Bronland 12 B-1, 6708 WH Wageningen, The Netherlands.

Future Diagnostics Solutions, Nieuweweg 279, 6603 BN Wijchen, The Netherlands.

出版信息

Biosensors (Basel). 2022 Jul 22;12(8):553. doi: 10.3390/bios12080553.

Abstract

The Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) pandemic has once more emphasized the urgent need for accurate and fast point-of-care (POC) diagnostics for outbreak control and prevention. The main challenge in the development of POC in vitro diagnostics (IVD) is to combine a short time to result with a high sensitivity, and to keep the testing cost-effective. In this respect, sensors based on photonic integrated circuits (PICs) may offer advantages as they have features such as a high analytical sensitivity, capability for multiplexing, ease of miniaturization, and the potential for high-volume manufacturing. One special type of PIC sensor is the asymmetric Mach-Zehnder Interferometer (aMZI), which is characterized by a high and tunable analytical sensitivity. The current work describes the application of an aMZI-based biosensor platform for sensitive and multiplex detection of anti-SARS-CoV-2 antibodies in human plasma samples using the spike protein (SP), the receptor-binding domain (RBD), and the nucleocapsid protein (NP) as target antigens. The results are in good agreement with several CE-IVD marked reference methods and demonstrate the potential of the aMZI biosensor technology for further development into a photonic IVD platform.

摘要

严重急性呼吸系统综合症冠状病毒 2 型(SARS-CoV-2)的全球大流行再次强调了准确、快速的即时现场诊断对于疾病爆发控制和预防的迫切需求。即时现场体外诊断(IVD)发展的主要挑战在于将短时间内得出结果与高灵敏度相结合,并保持检测的成本效益。在这方面,基于光子集成电路(PIC)的传感器可能具有优势,因为它们具有高分析灵敏度、可进行多重检测、易于小型化以及大规模生产的潜力。一种特殊类型的 PIC 传感器是不对称马赫-曾德尔干涉仪(aMZI),其特点是具有高且可调的分析灵敏度。目前的工作描述了一种基于 aMZI 的生物传感器平台在人血浆样本中用于敏感和多重检测抗 SARS-CoV-2 抗体的应用,该平台使用刺突蛋白(SP)、受体结合域(RBD)和核衣壳蛋白(NP)作为靶抗原。结果与几种 CE-IVD 标记的参考方法非常吻合,证明了 aMZI 生物传感器技术在进一步开发为光子 IVD 平台方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b319/9394312/5bcb4d123d81/biosensors-12-00553-g001.jpg

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