Department of Bioengineering, University of California, San Diego, La Jolla, CA 92093-0412, USA.
Lab Chip. 2010 Nov 21;10(22):3084-93. doi: 10.1039/c0lc00044b. Epub 2010 Sep 3.
We report the development of a microfabricated electrophoretic device for assembling high-density arrays of antibody-conjugated microbeads for chip-based protein detection. The device consists of a flow cell formed between a gold-coated silicon chip with an array of microwells etched in a silicon dioxide film and a glass coverslip with a series of thin gold counter electrode lines. We have demonstrated that 0.4 and 1 μm beads conjugated with antibodies can be rapidly assembled into the microwells by applying a pulsed electric field across the chamber. By assembling step-wise a mixture of fluorescently labeled antibody-conjugated microbeads, we incorporated both spatial and fluorescence encoding strategies to demonstrate significant multiplexing capabilities. We have shown that these antibody-conjugated microbead arrays can be used to perform on-chip sandwich immunoassays to detect test antigens at concentrations as low as 40 pM (6 ng/mL). A finite element model was also developed to examine the electric field distribution within the device for different counter electrode configurations over a range of line pitches and chamber heights. This device will be useful for assembling high-density, encoded antibody arrays for multiplexed detection of proteins and other types of protein-conjugated microbeads for applications such as the analysis of protein-protein interactions.
我们报告了一种用于组装高密度抗体偶联微球阵列的微流控电泳装置的开发,用于基于芯片的蛋白质检测。该装置由一个流室组成,该流室由金覆盖的硅片和玻璃盖玻片组成,硅片上刻有微井阵列,玻璃盖玻片上刻有一系列细的金对电极线。我们已经证明,通过在腔室中施加脉冲电场,可以将 0.4 和 1μm 大小的偶联有抗体的珠子快速组装到微井中。通过逐步组装荧光标记的抗体偶联微球混合物,我们结合了空间和荧光编码策略,展示了显著的多重检测能力。我们已经表明,这些抗体偶联微球阵列可用于进行芯片上的三明治免疫分析,以检测低至 40 pM(6ng/mL)浓度的测试抗原。还开发了有限元模型,以检查不同对电极配置在不同线距和腔室高度范围内的装置内的电场分布。该装置将有助于组装高密度、编码抗体阵列,用于对蛋白质和其他类型的蛋白质偶联微球进行多重检测,例如用于分析蛋白质-蛋白质相互作用。