Seder Islam, Jo Ahla, Jun Bong-Hyun, Kim Sung-Jin
Department of Mechanical Engineering, Konkuk University, Seoul 05029, Korea.
Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Korea.
Nanomaterials (Basel). 2022 Jan 17;12(2):284. doi: 10.3390/nano12020284.
Preventing the rapid spread of viral infectious diseases has become a major concern for global health. In this study, we present a microfluidic platform that performs an immunoassay of viral antigens in a simple, automated, yet highly sensitive manner. The device uses silica particles embedded with highly bright quantum dots (QD) and performs the immunoassay with a vertically movable top layer and a rotating bottom layer. Through the motion of the layers and the surface tension in the liquids, reagents move from top chambers to bottom chambers and mix homogeneously. A tip in the top layer with a mobile permanent magnet moves the immune complexes comprising the magnetic beads, virus particles, and QD between the bottom chambers. In this way, our automated device achieves a highly sensitive magnetic bead-based sandwich immunoassay for the influenza A H1N1 virus within 32.5 min. The detection limit of our method is 5.1 × 10 hemagglutination units, which is 2 × 10 times more sensitive than that of the conventional hemagglutination method and is comparable to PCR. Our device is useful for the rapid and sensitive detection of infectious diseases in point-of-care applications and resource-limited environments.
防止病毒性传染病的快速传播已成为全球卫生领域的主要关注点。在本研究中,我们展示了一种微流控平台,该平台能够以简单、自动化且高度灵敏的方式对病毒抗原进行免疫测定。该装置使用嵌入高亮度量子点(QD)的二氧化硅颗粒,并通过可垂直移动的顶层和旋转的底层进行免疫测定。通过各层的运动以及液体中的表面张力,试剂从顶部腔室移动到底部腔室并均匀混合。顶层中带有移动永磁体的尖端在底部腔室之间移动包含磁珠、病毒颗粒和量子点的免疫复合物。通过这种方式,我们的自动化装置在32.5分钟内实现了对甲型H1N1流感病毒基于磁珠的高灵敏度夹心免疫测定。我们方法的检测限为5.1×10血凝单位,比传统血凝方法灵敏2×10倍,与聚合酶链反应(PCR)相当。我们的装置对于即时护理应用和资源有限环境中的传染病快速灵敏检测很有用。