• Title of article

    Microfluidic, bead-based assay: Theory and experiments

  • Author/Authors

    Thompson، نويسنده , , Jason A. and Bau، نويسنده , , Haim H.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    9
  • From page
    228
  • To page
    236
  • Abstract
    Microbeads are frequently used as a solid support for biomolecules such as proteins and nucleic acids in heterogeneous microfluidic assays. However, relatively few studies investigate the binding kinetics on modified bead surfaces in a microfluidics context. In this study, a customized hot embossing technique is used to stamp microwells in a thin plastic substrate where streptavidin-coated agarose beads are selectively placed and subsequently immobilized within a conduit. Biotinylated quantum dots are used as a label to monitor target analyte binding to the beadʹs surface. Three-dimensional finite element simulations are carried out to model the binding kinetics on the beadʹs surface. The model accounts for surface exclusion effects resulting from a single quantum dot occluding multiple receptor sites. The theoretical predictions are compared and favorably agree with experimental observations. The theoretical simulations provide a useful tool to predict how varying parameters affect microbead reaction kinetics and sensor performance. This study enhances our understanding of bead-based microfluidic assays and provides a design tool for developers of point-of-care, lab-on-chip devices for medical diagnosis, food and water quality inspection, and environmental monitoring.
  • Keywords
    Biosensors , Agarose beads , Numerical simulation , Microfluidics
  • Journal title
    Journal of Chromatography B
  • Serial Year
    2010
  • Journal title
    Journal of Chromatography B
  • Record number

    1468050