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Sensitivity Study of Cancer Antigens (CA-125) Detection Using Interdigitated Electrodes Under Microfluidic Flow Condition

机译:微流体流动条件下使用间隙电极进行癌抗原(CA-125)检测的敏感性研究

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摘要

The integrated module of microfluidics with the biosensor is of great research interest with the increasing trend of lab-on-the-chip and point-of-care devices. Though there are numerous studies performed on associating the microfluidics to the biosensing mechanisms, the study of the sensitivity variation due to microfluidic flow is very much limited. In this paper, a study of the sensitivity variation while detecting the CA-125 antigen using interdigitated electrodes, with static drop and with microfluidic flow of biofluid sample (CA-125 antigens with phosphate buffer saline solution), was performed. When the biofluid sample was passed on the CA-125 antibodies that are immobilized on the gold interdigitated electrodes, the capacitance variation of the sensing circuit was caused due to the antigen-antibody interaction. However, the capacitance measured during CA-125 antigen-antibody interaction with the microfluidic flow condition (270.34 pF) was lower than static drop condition (296.09 pF) due to the instability of the immobilized antibodies on the sensing surface that was caused by the shear stress on the sensing surface during the microfluidic flow. This study helps to understand the capacitive sensitivity issues in the biosensing mechanisms with microfluidic platform.
机译:与生物传感器的微流体综合模块具有很大的研究兴趣,以及芯片的芯片和护理点装置的趋势。尽管对将微流体与生物传感机制相关联进行了许多研究,但对由于微流体流引起的敏感性变化的研究非常有限。在本文中,进行了使用叉下降检测Ca-125抗原的同时进行敏感性变化,并进行静电下降和生物流体样品的微流体流动(Ca-125抗原,具有磷酸盐缓冲盐溶液)。当生物流体样品通过在固定在金叉指电极上的Ca-125抗体上时,感测电路的电容变化是由于抗原 - 抗体相互作用引起的。然而,由于由剪切引起的传感表面上的固定抗体的不稳定性,在Ca-125抗原 - 抗体(270.34pf)期间测量的电容与微流体流动条件(270.34pF)低于静态下降条件(296.09pf)。微流体流动期间对感测表面的应力。该研究有助于了解微流体平台的生物传感机制中的电容敏感性问题。

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  • 来源
    《BioNanoscience》 |2019年第1期|共12页
  • 作者单位

    Advanced Energy Systems and Microdevices Laboratory Department of Mechanical and Industrial Engineering New Jersey Institute of Technology 200 Central Avenue Rm MEC 327 Newark NJ 07102-1982 USA;

    Advanced Energy Systems and Microdevices Laboratory Department of Mechanical and Industrial Engineering New Jersey Institute of Technology 200 Central Avenue Rm MEC 327 Newark NJ 07102-1982 USA;

    Provost Summer Research Intern at New Jersey Institute of Technology &

    Tenafly High School Tenafly NJ USA;

    Advanced Energy Systems and Microdevices Laboratory Department of Mechanical and Industrial Engineering New Jersey Institute of Technology 200 Central Avenue Rm MEC 327 Newark NJ 07102-1982 USA;

    Advanced Energy Systems and Microdevices Laboratory Department of Mechanical and Industrial Engineering New Jersey Institute of Technology 200 Central Avenue Rm MEC 327 Newark NJ 07102-1982 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
  • 关键词

    Biosensing; Microfluidics; Interdigitated electrodes; Capacitive sensing; Shear flow; Stability of biomarkers;

    机译:生物传感;微流体;互连电极;电容感应;剪切流动;生物标志物的稳定性;

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