Xiangya School of Pharmaceutical Sciences, Central South University, 172 Tongzipo Road, Changsha, 410013, Hunan, China.
Anal Bioanal Chem. 2019 Mar;411(8):1579-1589. doi: 10.1007/s00216-019-01601-y. Epub 2019 Feb 1.
A multichannel chip containing 16 microchambers was developed for fast and sensitive immunoassays. In each chamber, antibody-functionalized nonmagnetic beads were applied as the solid phase to capture target antigens. Four types of IgGs (human, rabbit, chicken, and mouse) could be detected simultaneously by our combining this microchip with a sandwich immunoassay technique. A three-layer chip structure was investigated for integration of multiple processes, including washing, immune reaction, and detection, in one microchip. Moreover, the proposed chip design could improve batch-to-batch repeatability and avoid interferences between different channels without the preparation of complex microvalves. The total operation time of this system was less than 30 min, with a desirable detection limit of 0.2 pg/mL. The results indicate that the microfluidic platform is promising for the immunoassay of multiple clinical biomarkers. Graphical abstract.
一种包含 16 个微室的多通道芯片被开发出来,用于快速灵敏的免疫分析。在每个微室中,抗体功能化的非磁性珠用作固相以捕获靶抗原。通过将这种微芯片与夹心免疫分析技术结合使用,我们可以同时检测四种 IgG(人、兔、鸡和鼠)。为了在一个微芯片中集成多个过程,包括洗涤、免疫反应和检测,研究了三层芯片结构。此外,所提出的芯片设计可以提高批间重复性,并避免不同通道之间的干扰,而无需制备复杂的微阀。该系统的总操作时间小于 30 分钟,检测限为 0.2 pg/mL。结果表明,该微流控平台有望用于多种临床生物标志物的免疫分析。