Moghadam Babak Y, Connelly Kelly T, Posner Jonathan D
Mechanical Engineering Department, University of Washington , Seattle, Washington 98195, United States.
Anal Chem. 2015 Jan 20;87(2):1009-17. doi: 10.1021/ac504552r. Epub 2015 Jan 7.
Lateral flow immunoassays (LFA) are one of the most prevalent point-of-care (POC) diagnostics due to their simplicity, low cost, and robust operation. A common criticism of LFA tests is that they have poor detection limits compared to those of analytical techniques, like ELISA, which confines their application as a diagnostic tool. The low detection limit of LFA and associated long equilibration times are due to kinetically limited surface reactions that result from low target concentration. Here, we use isotachophoresis (ITP), a powerful electrokinetic preconcentration and separation technique, to focus target analytes into a thin band and transport them to the LFA capture line, resulting in a dramatic increase in the surface reaction rate and equilibrium binding. We show that ITP is able to improve the limit of detection (LoD) of LFA by 400-fold for 90 s assay time and by 160-fold for a longer 5 min time scale. ITP-enhanced LFA (ITP-LF) also shows up to 30% target extraction from 100 μL of the sample, whereas conventional LFA captures less than 1% of the target. ITP improves the LoD of LFA to the level of some lab-based immunoassays, such as ELISA, and may provide sufficient analytical sensitivity for application to a broader range of analytes and diseases that require higher sensitivity and lower detection limits.
侧向流动免疫分析(LFA)因其操作简单、成本低廉且运行稳定,成为最普遍的即时检测(POC)诊断方法之一。对LFA检测的一个常见批评是,与酶联免疫吸附测定(ELISA)等分析技术相比,其检测限较差,这限制了其作为诊断工具的应用。LFA的低检测限和相关的较长平衡时间是由于低目标浓度导致的动力学受限表面反应。在这里,我们使用等速电泳(ITP),一种强大的电动预浓缩和分离技术,将目标分析物聚焦成一条窄带并将其传输到LFA捕获线,从而显著提高表面反应速率和平衡结合。我们表明,对于90秒的检测时间,ITP能够将LFA的检测限提高400倍,对于更长的5分钟时间尺度,能够提高160倍。ITP增强的LFA(ITP-LF)还显示从100μL样品中提取高达30%的目标物,而传统LFA捕获的目标物不到1%。ITP将LFA的检测限提高到一些基于实验室的免疫分析(如ELISA)的水平,并可能为应用于更广泛的分析物和需要更高灵敏度和更低检测限的疾病提供足够的分析灵敏度。