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Measuring Rapid Enzymatic Kinetics by Electrochemical Method in Droplet-Based Microfluidic Devices with Pneumatic Valves

机译:电化学方法在带有气动阀的基于液滴的微流控设备中通过电化学方法测量快速酶动力学。

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This paper describes a droplet-based microfluidic chip with pneumatic valves for measuring millisecond enzyme kinetics using amperometric detection method. Aqueous streams containing reactants were injected to an oil flow to form droplets, and each droplet represented one microreactor. Pneumatic valves were used to control the moving distance and in turn the reaction time of the droplets. The reaction time was also fine-tuned by varying the flow rate of the droplets in microchannels. A complete Michaelis-Menten kinetics of catalase was successfully measured by amperometric method in a single-run experiment, and the total consumption of reagents was less than 50 (mu)L. In the current experiment, the best time resolution was about 0.05 s, and the reaction time measured was from 0.05 to 25 s. This microfluidic system is applicable to many biochemical reactions, as long as one of the reactants or products is electrochemically active. With appropriate quenching method at the outlet, various detection methods can be integrated into the microfluidic system, further extending the application of the combination of pneumatic valves and droplets in microchannels.
机译:本文介绍了一种基于液滴的微流控芯片,该芯片带有气动阀,可使用安培检测方法测量毫秒级的酶动力学。将包含反应物的水流注入油流以形成液滴,每个液滴代表一个微反应器。气动阀用于控制移动距离,进而控制液滴的反应时间。通过改变微通道中液滴的流速,还可以对反应时间进行微调。在一次运行的实验中,通过安培法成功地测量了过氧化氢酶的完整Michaelis-Menten动力学,并且试剂的总消耗量小于50μL。在当前实验中,最佳时间分辨率为约0.05 s,测得的反应时间为0.05到25 s。只要反应物或产物之一具有电化学活性,该微流体系统即可用于许多生化反应。通过在出口处使用适当的淬灭方法,可以将各种检测方法集成到微流体系统中,从而进一步扩展了气动阀和液滴结合在微通道中的应用。

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