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通过场放大堆积酶反应产物,提高微流控 ELISA 的灵敏度。

Improvement in the sensitivity of microfluidic ELISA through field amplified stacking of the enzyme reaction product.

机构信息

Department of Chemistry, University of Wyoming, Laramie, WY 82071, USA.

Department of Chemistry, University of Wyoming, Laramie, WY 82071, USA.

出版信息

Anal Chim Acta. 2014 Jan 31;810:32-8. doi: 10.1016/j.aca.2013.12.007. Epub 2013 Dec 11.

Abstract

In this article, we demonstrate a novel approach to enhancing the sensitivity of enzyme-linked immunosorbent assays (ELISA) through pre-concentration of the enzyme reaction product (resorufin/4-methylumbelliferone) in free solution. The reported pre-concentration was accomplished by transporting the resorufin/4-methylumbelliferone molecules produced in the ELISA process towards a high ionic-strength buffer stream in a microfluidic channel while applying a voltage drop across this merging region. A sharp change in the electric field around the junction of the two liquid streams was observed to abruptly slow down the negatively charged resorufin/4-methylumbelliferone species leading to the reported pre-concentration effect based on the field amplified stacking (FAS) technique. It has been shown that the resulting enhancement in the detectability of the enzyme reaction product significantly improves the signal-to-noise ratio in the system thereby reducing the smallest detectable analyte concentration in the ELISA method. Applying the above-described approach, we were able to detect mouse anti-BSA and human TNF-α at concentrations nearly 60-fold smaller than that possible on commercial microwell plates. For the human TNF-α sample, this improvement in assay sensitivity corresponded to a limit of detection (LOD) of 0.102pg mL(-1) using the FAS based microfluidic ELISA method as compared to 7.03pg mL(-1) obtained with the traditional microwell plate based approach. Moreover, because our ELISAs were performed in micrometer sized channels, they required sample volumes about two orders of magnitude smaller than that consumed in the latter case (1μL versus 100μL).

摘要

在本文中,我们展示了一种通过在游离溶液中预浓缩酶反应产物(resorufin/4-methylumbelliferone)来提高酶联免疫吸附测定(ELISA)灵敏度的新方法。报道的浓缩是通过在微流控通道中将在 ELISA 过程中产生的 resorufin/4-methylumbelliferone 分子输送到高离子强度缓冲液流中,同时在该合并区域施加电压降来实现的。在两种液体流的交界处观察到电场的急剧变化,这导致带负电荷的 resorufin/4-methylumbelliferone 物种突然减速,从而基于场放大堆积(FAS)技术实现了报道的预浓缩效果。结果表明,酶反应产物检测灵敏度的提高显著提高了系统中的信噪比,从而降低了 ELISA 方法中最小可检测分析物浓度。应用上述方法,我们能够检测到浓度比商用微孔板低近 60 倍的小鼠抗 BSA 和人 TNF-α。对于人 TNF-α 样本,与传统微孔板 ELISA 方法相比,基于 FAS 的微流控 ELISA 方法的检测灵敏度提高了 60 倍,检测限(LOD)为 0.102pg mL(-1)。此外,由于我们的 ELISA 是在微米级通道中进行的,因此所需的样品量比后者小两个数量级(1μL 对 100μL)。

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