BIOS Lab-on-a-Chip Group, MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Anal Chem. 2010 May 15;82(10):4145-50. doi: 10.1021/ac1003163.
We present a simple electrokinetic lab-on-a-biochip (EKLB) with four microchannels integrated with a surface plasmon resonance imaging (iSPR) label-free biosensor that is operated using a single electrical voltage for the simultaneous transport of reagents in all microchannels without conventional fluidic plumbing. We demonstrate the utility of the simple approach with various biosensing experiments, including single injection kinetics (multiple varied ligand densities and single analyte concentration), one shot kinetics (single ligand densities and multiple varied analyte concentrations), and multi-ligand/multianalyte detection. In all cases, the binding kinetics and affinity were extracted using a conventional 1:1 interaction model. Since the reagent transport is done with a single electrical voltage source, scaling up to hundreds to thousands of simultaneous experiments is straightforward.
我们提出了一种简单的基于电动力学的生物芯片实验室(EKLB),该实验室具有四个微通道,集成了表面等离子体共振成像(iSPR)无标记生物传感器,可通过单个电电压操作,无需传统的流体管道即可同时在所有微通道中输送试剂。我们通过各种生物传感实验证明了这种简单方法的实用性,包括单注入动力学(多种不同的配体密度和单一分析物浓度)、单次动力学(单配体密度和多种不同的分析物浓度)和多配体/多分析物检测。在所有情况下,使用传统的 1:1 相互作用模型提取结合动力学和亲和力。由于试剂输送是通过单个电电压源完成的,因此很容易扩展到数百到数千个同时进行的实验。