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New analytical portable instrument for microchip electrophoresis with electrochemical detection

机译:用于电化学检测的微芯片电泳的新型分析便携式仪器

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摘要

A new portable instrument that includes a high voltage power supply, a bipotentiostat, and a chip holder has been especially developed for using microchips electrophoresis with electrochemical detection. The main unit of the instrument has dimensions of 150×165×70 mm (w×d×h) and consists of a four-outputs high voltage power supply with a maximum voltage of ±3 KV and an acquisition system with two channels for dual amperometric (DC or pulsed amperometric detection) detection. Electrochemical detection has been selected as signal transduction method because it is relatively easily implemented, since nonoptical elements are required. The system uses a lithium-ion polymer battery and it is controlled from a desktop or laptop PC with a graphical user interface based on LabVIEW connected by serial RS232 or Bluetooth®. The last part of the system consists of a reusable chip holder for housing the microchips, which contain all the electrical connections and reservoirs for making the work with microchips easy. The performance of the new instrument has been evaluated and compared with other commercially available apparatus using single- and dual-channel pyrex microchips for the separation of the neurotransmitters dopamine, epinephrine, and 3,4-dihydroxy-L-phenyl-alanine. The reduction of the size of the instrument has not affected the good performance of the separation and detection using microchips electrophoresis with electrochemical detection. Moreover, the new portable instrument paves the way for in situ analysis making the use of microchips electrophoresis easier.
机译:专门开发了一种新的便携式仪器,该仪器包括高压电源,双恒电位仪和芯片固定器,可用于微芯片电泳和电化学检测。仪器的主体尺寸为150×165×70 mm(w×d×h),由最大输出为±3 KV的四路输出高压电源和带两个通道的采集系统组成安培(直流或脉冲安培检测)检测。电化学检测已被选作信号转导方法,因为它相对容易实现,因为需要非光学元件。该系统使用锂离子聚合物电池,可通过台式机或笔记本电脑通过基于LabVIEW的图形用户界面进行控制,该图形用户界面通过串行RS232或Bluetooth ®连接。该系统的最后一部分包括一个可重复使用的芯片支架,用于容纳微芯片,该芯片支架包含所有电连接和储存器,可简化与微芯片的工作。新仪器的性能已经过评估,并与其他使用单通道和双通道吡咯烷酮微芯片用于分离神经递质多巴胺,肾上腺素和3,4-二羟基-L-苯基-丙氨酸的市售仪器进行了比较。仪器尺寸的减小并未影响使用带有电化学检测的微芯片电泳的分离和检测的良好性能。此外,新的便携式仪器为原位分析铺平了道路,从而使微芯片电泳的使用更加容易。

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