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首页> 外文期刊>Journal of Applied Physics >Integrated active mixing and biosensing using low frequency vibrating mixer and Love-wave sensor for real time detection of antibody binding event
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Integrated active mixing and biosensing using low frequency vibrating mixer and Love-wave sensor for real time detection of antibody binding event

机译:使用低频振动混合器和Love-wave传感器进行集成的主动混合和生物传感,可实时检测抗体结合事件

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摘要

The development of lab-on-chip devices is expected to dramatically change biochemical analyses, allowing for a notable increase of processing quality and throughput, provided the induced chemical reactions are well controlled. In this work, we investigate the impact of local acoustic mixing to promote or accelerate such biochemical reactions, such as antibody grafting on activated surfaces. During microarray building, the spotting mode leads to low efficiency in the ligand grafting and heterogeneities which limits its performances. To improve the transfer rate, we induce a hydrodynamic flow in the spotted droplet to disrupt the steady state during antibody grafting. To prove that acoustic mixing increases the antibody transfer rate to the biochip surface, we have used a Love-wave sensor allowing for real-time monitoring of the biological reaction for different operating conditions (with or without mixing). An analysis of the impact of the proposed mixing on grafting kinetics is proposed and finally checked in the case of antibody-antigen combination.
机译:芯片实验室设备的开发有望显着改变生化分析,只要诱导的化学反应得到良好控制,就可以显着提高加工质量和通量。在这项工作中,我们研究了局部声学混合对促进或加速此类生化反应(如在活化表面上移植抗体)的影响。在微阵列构建期间,点样模式导致配体接枝效率低和异质性,从而限制了其性能。为了提高转移速率,我们在斑点的液滴中诱导流体动力学流动,以破坏抗体移植过程中的稳态。为了证明声音混合可以提高抗体向生物芯片表面的转移速率,我们使用了Love-wave传感器,可以实时监控不同操作条件下(混合或不混合)的生物反应。提出了对提议的混合对移植动力学的影响的分析,并最终在抗体-抗原结合的情况下进行了检查。

著录项

  • 来源
    《Journal of Applied Physics》 |2011年第9期|p.094701.1-094701.8|共8页
  • 作者单位

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France;

    ICTEAM, ELEC - Place du Levant 3 a 1348 Louvain-la-Neuve, Belgium;

    SENSeOR, 32 Avenue de l'Observatoire, 25044 Besangon, France;

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France;

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France;

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France;

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France;

    FEMTO-ST, University de Franche-Comte, CNRS, ENSMM, UTBM F-25044 Besangon, France,SENSeOR, 32 Avenue de l'Observatoire, 25044 Besangon, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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