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Redox-Magnetohydrodynamics, Flat Flow Profile-Guided Enzyme Assay Detection: Toward Multiple, Parallel Analyses

机译:氧化还原-磁流体动力学,平流曲线引导的酶测定检测:多重并行分析

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摘要

A proof-of-concept superparamagnetic microbead-enzyme complex was integrated with microfluidics pumped by redox-magneto-hydrodynamics (MHD) to take advantage of the magnet (0.56 T) beneath the chip and the uniform flat flow profile, as a first step toward developing multiple, parallel chemical analyses on a chip without the need for independent channels. The superparamagnetic beads were derivatized with alkaline phosphatase (a common enzyme label for biochemical assays) and magnetically immobilized at three different locations on the chip with one directly on the path to the detector and the other two locations adjacent to, but off the path, by a distance >5 times the detector diameter. Electroactive p-aminophenol, enzymatically generated at the bead-enzyme complex from its electroinactive precursor p-aminophenyl phosphate in a solution containing a redox species [Ru(NH_3)_6]~(3+/2+) for pumping and Tris buffer, was transported by redox-MHD and detected with square wave voltammetry at a 312 μm diameter gold microdisk stationed 2 mm downstream from the bead-complex on the flow path. Oppositely biased pumping electrodes, consisting of 2.5 cm long gold bands and separated by 5.6 mm, flanked the active flow region containing the bead-enzyme complex and detection site. The signal from adjacent paths was only 20% of that for the direct path and ≤8% when pumping electrodes were inactive.
机译:概念验证的超顺磁性微珠酶复合物与通过氧化还原-磁-流体力学(MHD)泵送的微流体集成在一起,以利用芯片下方的磁体(0.56 T)和均匀的扁平流动曲线,这是迈向第一步的第一步无需独立通道即可在芯片上进行多个并行化学分析。将超顺磁珠用碱性磷酸酶(生化分析常用的酶标记)衍生化,并磁固定在芯片上的三个不同位置,其中一个直接位于通向检测器的路径上,而另外两个位置与路径相邻但不在路径上,通过距离>探测器直径的5倍。在珠状酶复合物中由其电活性前体对氨基苯基磷酸酯在含有氧化还原物质[Ru(NH_3)_6]〜(3 + / 2 +)的溶液和Tris缓冲液中酶促生成的电活性对氨基苯酚为通过氧化还原-MHD转运并用方波伏安法在直径为312μm的金微盘上检测到,该微盘位于流路珠状复合物下游2毫米处。相反的泵电极由2.5厘米长的金带组成,相隔5.6毫米,位于带珠-酶复合物和检测位点的有效流动区域的两侧。来自相邻路径的信号仅为直接路径的信号的20%,而当泵浦电极处于非活动状态时,信号的信号强度≤8%。

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