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Paper-Based Enzyme Immobilization for Flow Injection Electrochemical Biosensor Integrated with Reagent-Loaded Cartridge toward Portable Modular Device

机译:纸质酶固定化的流动注射电化学生物传感器与试剂盒集成到便携式模块化设备。

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Paper-based enzyme immobilization for a flow injection electrochemical biosensor integrated with a reagent-loaded cartridge toward a portable device was developed. A paper disk was immobilized with enzyme, then it was integrated in a flow cell as an electrochemical biosensor. A silicon tube reagent-loaded cartridge was integrated into the system, a complicated procedure was simplified as a one-click operation toward development for point-of-care applications. In this research, glucose oxidase (GOx) was employed as a model enzyme, silver ion as an inhibition reagent for GOx, and EDTA as a regeneration reagent. When GOx was inhibited by silver ions, glucose was introduced for electrochemical measurements before and after inhibited enzyme regeneration and the difference was caused by silver inhibition. The modular device has great potential for other applications, e.g., detection of enzyme activity and substrate. The platform based on double-test mode provided accurate results due to elimination of an average or control value in comparison with classical routine approaches.
机译:纸质酶固定化的流动注射电化学生物传感器与试剂盒集成到便携式设备。用酶固定纸盘,然后将其集成在流通池中作为电化学生物传感器。将装有硅管试剂的药筒集成到系统中,简化了复杂的过程,因为只需单击即可进行操作,以开发即时医疗应用。在这项研究中,葡萄糖氧化酶(GOx)被用作模型酶,银离子被用作GOx的抑制剂,而EDTA被用作再生剂。当GOx被银离子抑制时,在抑制酶再生之前和之后引入葡萄糖进行电化学测量,差异是由银抑制引起的。模块化装置具有用于其他应用的巨大潜力,例如,酶活性和底物的检测。与传统的常规方法相比,基于双重测试模式的平台由于消除了平均值或控制值,因此提供了准确的结果。

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