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An on-chip fluorogenic enzyme assay using a multilayer microchip interconnected with a nanocapillary array membrane

  作者 Gong, MJ; Kim, BY; Flachsbart, BR; Shannon, MA; Bohn, PW; Sweedler, JV  
  选自 期刊  IEEE Sensors Journal;  卷期  2008年8-5-6;  页码  601-607  
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[摘要]Microfluidic devices allow manipulation of reagents and fluids in a semi-automated fashion, ideal for performing multiple measurements or conditioning various reagents. Here, an enzyme assay has been performed in a multilayer poly(methyl methacrylate)-based microfluidic device, where the layers are fluidically connected via a nanocapillary array membrane serving as an effective injector and valve. As a model system, beta-glucuronidase from Escherichia coli and fluorescein di(beta-D-glucuronide) are used for the assay; offline mixing and online incubation of substrate and enzyme allow determination of the initial hydrolysis rates of the substrate under catalysis by beta-glucuronidase. The Michaelis constant K, was determined to be similar to 4.0 mu M for the enzyme of 83 units/mL at ambient temperature. The 50% inhibitory concentration IC50 of D-saccharic acid-1,4-lactone to 167 units/mL was estimated to be 3.0 mu M. These results demonstrate added functionality for a poly(methyl methacrylate)-based nanocapillary array membrane-containing microfluidic device for following enzyme reaction kinetics.

 
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