Li Qiang, Yuan Yong J
Laboratory of Biosensing and MicroMechatronics, School of Materials Science and Engineering, Southwest Jiaotong University, 610031 Chengdu, China.
Micromachines (Basel). 2016 May 25;7(6):96. doi: 10.3390/mi7060096.
This paper presents a microfluidic device with electroplated vertical electrodes in the side walls for impedance measurement. Based on the proposed device, the impedance of NaCl solutions with different concentrations and polystyrene microspheres with different sizes was measured and analyzed. The electroplating and SU-8-PDMS (SU-8-poly(dimethylsiloxane)) bonding technologies were firstly integrated for the fabrication of the proposed microfluidic device, resulting in a tightly three-dimensional structure for practical application. The magnitude of impedance of the tested solutions in the frequency range of 1 Hz to 100 kHz was analyzed by the Zennium electrochemical workstation. The results show that the newly designed microfluidic device has potential for impedance analysis with the advantages of ease of fabrication and the integration of 3D electrodes in the side walls. The newly designed impedance sensor can distinguish different concentrations of polystyrene microspheres and may have potential for cell counting in biological areas. By integrating with other techniques such as dielectrophoresis (DEP) and biological recognition technology, the proposed device may have potential for the assay to identify foodborne pathogen bacteria.
本文介绍了一种侧壁带有电镀垂直电极用于阻抗测量的微流控装置。基于该装置,对不同浓度的NaCl溶液和不同尺寸的聚苯乙烯微球的阻抗进行了测量和分析。首次将电镀和SU-8-聚二甲基硅氧烷(SU-8-PDMS)键合技术集成用于所提出的微流控装置的制造,从而形成了一种用于实际应用的紧密三维结构。通过Zennium电化学工作站分析了测试溶液在1 Hz至100 kHz频率范围内的阻抗大小。结果表明,新设计的微流控装置具有进行阻抗分析的潜力,具有易于制造和侧壁集成三维电极的优点。新设计的阻抗传感器能够区分不同浓度的聚苯乙烯微球,并且在生物领域的细胞计数方面可能具有潜力。通过与诸如介电电泳(DEP)和生物识别技术等其他技术相结合,所提出的装置在检测食源性病原体细菌方面可能具有潜力。