Choi Jin-Woo, Oh Kwang W, Thomas Jennifer H, Heineman William R, Halsall H Brian, Nevin Joseph H, Helmicki Arthur J, Henderson H Thurman, Ahn Chong H
Department of Electrical and Computer Engineering and Computer Science, University of Cincinnati, Cincinnati, OH 45221-0030, USA.
Lab Chip. 2002 Feb;2(1):27-30. doi: 10.1039/b107540n. Epub 2001 Dec 6.
This paper presents the development and characterization of an integrated microfluidic biochemical detection system for fast and low-volume immunoassays using magnetic beads, which are used as both immobilization surfaces and bio-molecule carriers. Microfluidic components have been developed and integrated to construct a microfluidic biochemical detection system. Magnetic bead-based immunoassay, as a typical example of biochemical detection and analysis, has been successfully performed on the integrated microfluidic biochemical analysis system that includes a surface-mounted biofilter and electrochemical sensor on a glass microfluidic motherboard. Total time required for an immunoassay was less than 20 min including sample incubation time, and sample volume wasted was less than 50 microl during five repeated assays. Fast and low-volume biochemical analysis has been successfully achieved with the developed biofilter and immunosensor, which is integrated to the microfluidic system. Such a magnetic bead-based biochemical detection system, described in this paper, can be applied to protein analysis systems.
本文介绍了一种集成微流控生化检测系统的开发与特性,该系统用于使用磁珠进行快速、小体积免疫测定,磁珠既用作固定表面又用作生物分子载体。已开发并集成了微流控组件以构建微流控生化检测系统。基于磁珠的免疫测定作为生化检测与分析的典型示例,已在集成微流控生化分析系统上成功进行,该系统在玻璃微流控母板上包括一个表面安装的生物过滤器和电化学传感器。免疫测定所需的总时间包括样品孵育时间少于20分钟,并且在五次重复测定期间浪费的样品体积少于50微升。利用开发的生物过滤器和免疫传感器已成功实现了快速、小体积的生化分析,该生物过滤器和免疫传感器集成到了微流控系统中。本文所述的这种基于磁珠的生化检测系统可应用于蛋白质分析系统。