首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Development of solid-phase chemiluminescence immunoassays for digoxin comparing flow injection and sequential injection techniques
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Development of solid-phase chemiluminescence immunoassays for digoxin comparing flow injection and sequential injection techniques

机译:流动注射和顺序注射技术的地高辛固相化学发光免疫分析方法的建立

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摘要

The development of a competitive solid-phase immunoassay for digoxin making use of the acridinium chemiluminescence system is described. Two different instrumental approaches are compared. One is based on a continuous flow system using a peristaltic flow injection analysis pump; the other uses a new sequential injection technique. Ln both systems a flow cell, consisting of transparent PTFE tubing packed with immobilized antibodies, acts as an immunoreactor. The entire assay, including both the immunoreaction and the chemiluminescence reaction, takes place in this immunoreactor cell. Compared with the flow injection technique, the sequential injection mode showed higher precision, ranging from 2.16 to 5.5% RSD depending on concentration. The total assay time, including regeneration, is less than 8 min with the sequential injection technique. The detection limit for both techniques is in the low femtomole range. [References: 14]
机译:描述了利用the啶化学发光系统开发地高辛竞争性固相免疫测定方法的方法。比较了两种不同的工具方法。一种基于使用蠕动流动注射分析泵的连续流动系统;另一种基于连续流动系统。另一种使用新的顺序注射技术。在这两个系统中,流通池均由免疫反应器组成,流通池由装有固定抗体的透明PTFE管组成。整个测定,包括免疫反应和化学发光反应,都在该免疫反应器细胞中进行。与流动注射技术相比,顺序注射模式显示出更高的精度,取决于浓度,范围为2.16至5.5%RSD。使用顺序进样技术,包括再生在内的总测定时间少于8分钟。两种技术的检测限都在低飞摩尔范围内。 [参考:14]

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