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Integration of a zero dead-volume PDMS rotary switch valve in a miniaturised (bio)electroanalytical system

机译:零死体积PDMS旋转开关阀集成在小型化(生物)电分析系统中

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摘要

This work features the design, fabrication and characterisation of a miniaturised electroanalytical lab on a chip that allows the performance of a complete bioassay, from the capture of magnetic particles through their functionalisation and sample incubation to the detection of electroactive reaction products. The system is built using mainly polymeric materials such as PMMA and PDMS and fast prototyping techniques such as milling and moulding. The system also includes a set of microelectrodes, photo-lithographed on a silicon chip. The novelty lies in the design of the rotary microvalve, which contains a microreactor so that various reaction and incubation steps can be carried out in isolation from the detection event with zero dead volume. This avoids contamination and fouling of the electrodes by proteins or other organic matter, and extends the useful lifetime of the detector. The system operation is demonstrated by a model example, consisting in the functionalisation of streptavidin-coated magnetic particles with biotinylated β-galactosidase over periods ranging from 5 to 15 min, at which point the particles saturate. Although the system is intended for the development of enzyme-based electrochemical bioassays, the concept of its rotary microreactor can be applied more broadly.
机译:这项工作的特点是在芯片上的小型电分析实验室的设计,制造和表征,该技术可以执行完整的生物测定,从捕获磁性粒子到功能化和样品孵育再到电活性反应产物的检测。该系统主要使用聚合材料(例如PMMA和PDMS)以及快速成型技术(例如铣削和成型)构建。该系统还包括一组微电极,在硅芯片上光刻。新颖之处在于旋转微型阀的设计,该微型阀包含一个微型反应器,因此可以在无死体积为零的情况下,与检测事件隔离地进行各种反应和孵育步骤。这避免了蛋白质或其他有机物对电极的污染和结垢,并延长了检测器的使用寿命。该系统的运行通过一个模型示例进行了演示,该示例包括在5至15分钟的时间内,用生物素化的β-半乳糖苷酶对链霉亲和素包被的磁性颗粒进行功能化,此时颗粒达到饱和。尽管该系统旨在开发基于酶的电化学生物测定法,但其旋转式微反应器的概念可以更广泛地应用。

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