Li Liang, Boedicker James Q, Ismagilov Rustem F
Department of Chemistry and Institute for Biophysical Dynamics, The University of Chicago, 929 East 57th Street, Chicago, Illinois 60637, USA.
Anal Chem. 2007 Apr 1;79(7):2756-61. doi: 10.1021/ac062179n. Epub 2007 Mar 6.
In this paper we describe a multijunction microfluidic device for the injection of a substrate into an array of preformed plugs carried by an immiscible fluid in a microchannel. The device uses multiple junctions to inject substrate into preformed plugs without synchronization of the flow of substrate and the array of preformed plugs of reagent, which reduces cross-contamination of the plugs, eliminates formation of small droplets of substrate, and allows a greater range of injection ratios compared to that of a single T-junction. The device was based on a previously developed physical model for transport that was here adapted to describe injection and experimentally verified. After characterization, the device was applied to two biochemical assays, including evaluation of the enzymatic activity of thrombin and determination of the coagulation time of human blood plasma, which both provided reliable results. The reduction of cross-contamination and greater range of injection ratios achieved by this device may improve the processes that involve addition and titration of reagents into plugs, such as high-throughput screening of protein crystallization conditions.
在本文中,我们描述了一种多结微流控装置,用于将底物注入由微通道中不混溶流体携带的预制塞阵列中。该装置使用多个结将底物注入预制塞中,而无需底物流与试剂预制塞阵列同步,这减少了塞之间的交叉污染,消除了底物小液滴的形成,并且与单个T型结相比允许更大范围的注入比。该装置基于先前开发的用于传输的物理模型,在此对其进行了调整以描述注入并通过实验进行了验证。经过表征后,该装置应用于两种生化分析,包括凝血酶酶活性评估和人血浆凝血时间测定,两者均提供了可靠的结果。该装置实现的交叉污染减少和更大范围的注入比可能会改善涉及将试剂添加和滴定到塞中的过程,例如蛋白质结晶条件的高通量筛选。