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Microdialysis Sampling Coupled to Microchip Electrophoresis with Integrated Amperometric Detection on an All Glass Substrate

机译:在全玻璃基板上进行微透析采样与微芯片电泳结合的集成安培检测

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摘要

The development of an all-glass separation-based sensor using microdialysis coupled to microchip electrophoresis with amperometric detection is described. The system includes a flow-gated interface to inject discrete sample plugs from the microdialysis perfusate into the microchip electrophoresis system. Electrochemical detection was accomplished with a platinum electrode in an in-channel configuration using a wireless electrically isolated potentiostat. To facilitate bonding around the in-channel electrode, a fabrication process was employed that produced a working and a reference electrode flush with the glass surface. Both normal and reversed polarity separations were performed with this sensor. The system was evaluated in vitro for the continuous monitoring of the production of hydrogen peroxide from the reaction of glucose oxidase with glucose. Microdialysis experiments were performed using a BASi loop probe with an overall lag time of approximately five minutes and a rise time of less than 60 seconds.
机译:描述了一种基于全玻璃分离的传感器的开发,该传感器使用微透析与安培检测耦合到微芯片电泳。该系统包括一个流控接口,用于将来自微透析灌流液的离散样品塞注入微芯片电泳系统中。电化学检测是通过使用无线隔离电恒电位仪的通道内配置的铂电极完成的。为了促进通道内电极周围的粘结,采用了一种制造工艺,该工艺可以使工作电极和参比电极与玻璃表面齐平。正常和反向极性分离均使用该传感器进行。对该系统进行了体外评估,以连续监测葡萄糖氧化酶与葡萄糖反应产生的过氧化氢。使用BASi环形探针进行微透析实验,其总滞后时间约为5分钟,上升时间少于60秒。

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