MicruX Fluidic S.L., Severo Ochoa Building, Oviedo, Asturias, Spain.
Electrophoresis. 2012 Sep;33(17):2733-42. doi: 10.1002/elps.201200236.
A second generation of a battery-powered portable electrophoresis instrument for the use of ME with electrochemical detection was developed. As the first-generation, the main unit of the instrument (150 mm × 165 mm × 95 mm) consists of four-outputs high-voltage power supply (HVPS) with maximum voltage of 3 KV and acquisition system (bipotentiostat) containing 2-channels for dual electrochemical detection. A new reusable microfluidic platform was designed in order to incorporate the microchips with the portable instrument. In this case, the platform is integrated to the main unit of the instrument so that it is not necessary to have any external cable for the interconnection of both parts, making the use of the complete system easier. The new platform contains all the electrical connections for the HVPS and bipotentiostat, as well as fluidic ports for driving the solutions. The microfluidic electrophoresis instrument is controlled by means of a user-friendly interface from a computer. The possibility of wireless connection (Bluetooth®) allows the use of the instrument without any external cable improving the portability. Therefore, the second generation brings a more compact and integrated electrophoresis instrument for "in situ" applications using microfluidic chips in an easy way. The performance of the electrophoresis system was initially evaluated using single- and dual-channel SU-8/Pyrex microchips with different models of integrated electrodes including microelectrodes and interdigitated arrays. The method was tested in different analytical applications such as separation of neurotransmitters, chlorophenols, purine derivatives, vitamins, polyphenolic acids, and flavones.
第二代电池供电的便携式电泳仪器已经开发出来,用于 ME 与电化学检测的结合。与第一代仪器一样,仪器的主机(150mm×165mm×95mm)由四通道输出的高压电源(HVPS)和包含双通道用于双电化学检测的采集系统(双恒电位仪)组成,最大电压为 3KV。为了将微芯片与便携式仪器结合,设计了一种新的可重复使用的微流控平台。在这种情况下,该平台与仪器的主机集成在一起,因此不需要任何外部电缆来连接这两部分,从而使整个系统的使用更加容易。新平台包含了 HVPS 和双恒电位仪的所有电气连接,以及用于驱动溶液的流体端口。微流控电泳仪器通过计算机上的用户友好界面进行控制。无线连接(蓝牙®)的可能性允许在不使用任何外部电缆的情况下使用仪器,从而提高了便携性。因此,第二代仪器为“原位”应用提供了更紧凑、集成的电泳仪器,可轻松使用微流控芯片。该电泳系统的性能最初使用单通道和双通道 SU-8/Pyrex 微芯片进行了评估,这些微芯片具有不同模型的集成电极,包括微电极和叉指电极阵列。该方法在不同的分析应用中进行了测试,例如神经递质、氯酚、嘌呤衍生物、维生素、多酚酸和黄酮类化合物的分离。