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An Enzymatic Microreactor Based on Chaotic Micromixing for Enhanced Amperometric Detection in a Continuous Glucose Monitoring Application

机译:基于混沌微混合的酶微反应器在连续葡萄糖监测应用中用于增强安培检测的应用

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The development of continuous glucose monitoring systems is a major trend in diabetes-related research. Small, easy-to-wear systems which are robust enough to function over many days without maintenance are the goal. We present a new sensing system for continuous glucose monitoring based on a microreactor incorporating chaotic mixing channels. Two different types of chaotic mixing channels with arrays of either slanted or herringbone grooves were fabricated in poly(dimethylsiloxane) (PDMS) and compared to channels containing no grooves. Mixing in channels with slanted grooves was characterized using a fluorescence method as a function of distance and at different flow rates, and compared to the mixing behavior observed in channels with no grooves. For electrochemical detection, a thin-film Pt electrode was positioned at the end of the fluidic channel as an on-chip detector of the reaction product, H_(2)O_(2). Glucose determination was performed by rapidly mixing glucose and glucose oxidase (GOx) in solution at a flow rate of 0.5 (mu)L/min and 1.5 (mu)L/min, respectively. A 150 U/mL GOx solution was selected as the optimum concentration of enzyme. In order to investigate the dependence of device response on flow rate, experiments with a premixed solution of glucose and GOx were compared to experiments in which glucose and GOx were reacted on-chip. Calibration curves for glucose (0-20 mM, in the clinical range of interest) were obtained in channels with and without grooves, using amperometric detection and a 150 U/mL GOx solution for in-chip reaction.
机译:连续葡萄糖监测系统的发展是糖尿病相关研究的主要趋势。目标是小巧易用的系统,其坚固性足以在无需维护的情况下运行许多天。我们提出了一个新的传感系统,用于基于结合了混沌混合通道的微反应器的连续葡萄糖监测。在聚(二甲基硅氧烷)(PDMS)中制造了两种不同类型的具有倾斜或人字形凹槽阵列的混沌混合通道,并将其与不包含凹槽的通道进行了比较。使用荧光方法根据距离和在不同流速下表征具有倾斜凹槽的通道中的混合,并将其与没有凹槽的通道中的混合行为进行比较。为了进行电化学检测,将薄膜Pt电极放置在流体通道的末端,作为反应产物H_(2)O_(2)的芯片上检测器。通过分别以0.5μL/ min和1.5μL/ min的流速将溶液中的葡萄糖和葡萄糖氧化酶(GOx)快速混合来进行葡萄糖测定。选择150 U / mL GOx溶液作为酶的最佳浓度。为了研究设备响应对流速的依赖性,将使用葡萄糖和GOx的预混合溶液的实验与其中葡萄糖和GOx在芯片上反应的实验进行了比较。使用安培检测和150 U / mL GOx溶液进行芯片内反应,在有槽和无槽的通道中获得葡萄糖的校准曲线(0-20 mM,在感兴趣的临床范围内)。

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