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与常用的显色底物相比,使用荧光底物的酶联免疫吸附测定法具有更高的灵敏度和精度。

Enhanced sensitivity and precision in an enzyme-linked immunosorbent assay with fluorogenic substrates compared with commonly used chromogenic substrates.

作者信息

Meng Yuan, High Katrina, Antonello Joseph, Washabaugh Michael W, Zhao Qinjian

机构信息

Department of Bioprocess and Bioanalytical Research, Merck Research Laboratories, West Point, PA 19486, USA.

出版信息

Anal Biochem. 2005 Oct 15;345(2):227-36. doi: 10.1016/j.ab.2005.07.026.

Abstract

Quantitative enzyme-linked immunosorbent assay (ELISA) is a widely used tool for analyzing biopharmaceutical and vaccine products. The superior sensitivity of the ELISA format is conferred by signal amplification through the enzymatic oxidation or hydrolysis of substrates to products with enhanced color or fluorescence. The extinction coefficient for a colored product or the quantum yield of a fluorescent product, coupled with the efficiency of the immobilized enzyme, is the determining factor for the sensitivity and precision of a given ELISA. The enhancement of precision and sensitivity using fluorogenic substrates was demonstrated in a direct-binding ELISA in a low-analyte concentration range compared with commonly used chromogenic substrates. The enhancement in precision was demonstrated quantitatively with lower coefficients of variation in measurements of signal intensities, approximately a five- to six-fold enhancement in signal-to-noise ratio at a given analyte concentration with fluorogenic substrates. Similarly, the amplitude of the enhancement in sensitivity, as reflected by relative limits of detection or quantitation, is approximately two- to five-fold when compared with commonly used chromogenic substrates. Additional advantages of a fluorescence-based ELISA format include the continuous monitoring of initial rates of enzymatic reactions, the measurement of fluorescence changes in the presence of particulate materials, the absence of a quench step, and a larger quantifiable analyte range.

摘要

定量酶联免疫吸附测定(ELISA)是一种广泛用于分析生物制药和疫苗产品的工具。ELISA形式的卓越灵敏度是通过底物酶促氧化或水解为具有增强颜色或荧光的产物来实现信号放大而赋予的。有色产物的消光系数或荧光产物的量子产率,再加上固定化酶的效率,是给定ELISA灵敏度和精密度的决定因素。与常用的显色底物相比,在低分析物浓度范围内的直接结合ELISA中证明了使用荧光底物可提高精密度和灵敏度。通过信号强度测量中较低的变异系数定量证明了精密度的提高,在给定分析物浓度下使用荧光底物时信噪比提高了约五到六倍。同样,与常用的显色底物相比,以相对检测或定量限反映的灵敏度提高幅度约为两到五倍。基于荧光的ELISA形式的其他优点包括连续监测酶促反应的初始速率、在存在颗粒物质的情况下测量荧光变化、无需淬灭步骤以及可定量分析物范围更大。

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