Department of Chemical and Materials Engineering, Chang Gung University, 259, Wen-Hwa First Road, Taoyuan, Taiwan.
Research Center for Chinese Herbal Medicine and Research Center for Food and Cosmetic Safety, College of Human Ecology, Chang Gung University of Science and Technology, 261, Wen-Hwa First Road, Taoyuan, Taiwan.
Mikrochim Acta. 2022 Apr 1;189(4):168. doi: 10.1007/s00604-022-05288-4.
The rapid spread of the novel human coronavirus 2019 (COVID-19) and its morbidity have created an urgent need for rapid and sensitive diagnostics. The real-time polymerase chain reaction is the gold standard for detecting the coronavirus in various types of biological specimens. However, this technique is time consuming, labor intensive, and expensive. Screen-printed electrodes (SPEs) can be used as point-of-care devices because of their low cost, sensitivity, selectivity, and ability to be miniaturized. The ability to detect the spike protein of COVID-19 in serum, urine, and saliva was developed using SPE aided by magnetic beads (MBs) and a portable potentiostat. The antibody-peroxidase-loaded MBs were the captured and catalytic units for the electrochemical assays. The MBs enable simple washing and homogenous deposition on the working electrode using a magnet. The assembly of the immunological MBs and the electrochemical system increases the measuring sensitivity and speed. The physical and electrochemical properties of the layer-by-layer modified MBs were systematically characterized. The performance of these immunosensors was evaluated using spike protein in the range 3.12-200 ng mL. We achieved a limit of detection of 0.20, 0.31, and 0.54 ng mL in human saliva, urine, and serum, respectively. A facile electrochemical method to detect COVID-19 spike protein was developed for quick point-of-care testing.
新型人冠状病毒 2019(COVID-19)的迅速传播及其发病率,催生了对快速和敏感诊断方法的迫切需求。实时聚合酶链反应是检测各种类型生物标本中冠状病毒的金标准。然而,该技术耗时、劳动强度大且成本高昂。丝网印刷电极(SPE)由于其低成本、高灵敏度、高选择性和可小型化的特点,可作为即时检测设备使用。利用 SPE 结合磁性珠(MB)和便携式电化学工作站,开发了用于检测血清、尿液和唾液中 COVID-19 刺突蛋白的方法。载有抗体-过氧化物酶的 MB 是电化学分析的捕获和催化单元。MB 可利用磁体实现简单的洗涤和均相沉积在工作电极上。免疫 MB 的组装和电化学系统的组合提高了测量的灵敏度和速度。系统地对 MBs 的物理和电化学性质进行了表征。使用 3.12-200ng mL 范围内的刺突蛋白对这些免疫传感器的性能进行了评估。我们在人唾液、尿液和血清中的检测限分别达到 0.20、0.31 和 0.54ng mL。开发了一种用于快速即时检测的简便电化学方法来检测 COVID-19 刺突蛋白。