Development of microbead-based affinity biosensor by insulator-based dielectrophoresis

Tsung-Min Chuo, W. Hsu, S. Fan
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Abstract

This research describes a high sensitivity microfluidic bead-based immunosensor based on the principle of insulator-based dielectrophoresis (iDEP). An insulator film with small holes between two electrodes creates a nonuniform electric field. By applying appropriate voltage and frequency, the fluorescent beads are concentrated to lower electric field regions due to the difference of dielectric properties. This concentrating step enhances the fluorescence intensity of analytes and decreases the detection limit of immunosensor. In this research, the fluorescence dye is conjugated with streptavidin which has high affinity to biotin. We use biotin-labeled polystyrene beads to bind with streptavidin, therefore, we can further detect fluorescent streptavidin conjugates by a fluorescence microscope. The biotin-labeled polystyrene beads perform not only various chemical characteristics by labeling different functional groups but also offer an increased surface area for antibodies or antigens to immobilize on. Finally, we fabricate a microfluidic bead-based immunosensor with high sensitivity (1 pg/ml), short analysis time (~10 minutes), few sample consumption (~0.5 μl) and without physical microchannel.
基于绝缘体介质电泳的微珠亲和生物传感器的研制
本研究描述了一种基于绝缘体基介电电泳(iDEP)原理的高灵敏度微流控球免疫传感器。两个电极之间有小孔的绝缘体膜会产生不均匀的电场。通过施加适当的电压和频率,由于介电特性的差异,荧光珠被集中到较低的电场区域。该浓缩步骤提高了分析物的荧光强度,降低了免疫传感器的检测限。在本研究中,荧光染料与与生物素有高亲和力的链霉亲和素偶联。我们使用生物素标记的聚苯乙烯珠与链霉亲和素结合,因此,我们可以通过荧光显微镜进一步检测荧光链霉亲和素偶联物。生物素标记的聚苯乙烯珠不仅通过标记不同的官能团表现出不同的化学特性,而且还为抗体或抗原的固定提供了更大的表面积。最后,我们制作了一种灵敏度高(1 pg/ml)、分析时间短(~10分钟)、样品消耗少(~0.5 μl)、无物理微通道的微流控球免疫传感器。
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