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Continuous measurement of enzymatic kinetics in droplet flow for point-of-care monitoring

机译:连续测量液滴流中的酶动力学,用于即时监测

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摘要

Droplet microfluidics is ideally suited to continuous biochemical analysis, requiring low sample volumes and offering high temporal resolution. Many biochemical assays are based on enzymatic reactions, the kinetics of which can be obtained by probing droplets at multiple points over time. Here we present a miniaturised multi-detector flow cell to analyse enzyme kinetics in droplets, with an example application of continuous glucose measurement. Reaction rates and Michaelis–Menten kinetics can be quantified for each individual droplet and unknown glucose concentrations can be accurately determined (errors <5 %). Droplets can be probed continuously giving short sample-to-result time (~30 s) measurement. In contrast to previous reports of multipoint droplet measurement (all of which used bulky microscope-based setups) the flow cell presented here has a small footprint and uses low-powered, low-cost components, making it ideally suited for use in field-deployable devices.
机译:液滴微流体是连续生物化学分析的理想选择,需要低样品量并提供高时间分辨率。许多生化测定均基于酶促反应,其动力学可通过随时间推移在多个点上探测液滴来获得。在这里,我们介绍了一种小型的多检测器流动池,用于分析液滴中的酶动力学,并提供连续葡萄糖测量的示例应用。可以对每个液滴的反应速率和米氏反应动力学进行定量,并且可以准确确定未知的葡萄糖浓度(误差<5%)。可以连续探测液滴,从而缩短了样品到结果的时间(约30 s)。与以前的多点液滴测量报告(所有报告均使用大体积的基于显微镜的装置)相比,此处介绍的流通池占地面积小,并使用低功耗,低成本的组件,因此非常适合在现场部署中使用设备。

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