电化学免疫分析法:一种超灵敏的方法。

H B Halsall, W R Heineman
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引用次数: 0

摘要

流体动力学电化学技术如液相色谱和流动注射分析电化学检测是非常有效的快速测定酶免疫分析中的酶生成产物。作者使用这种检测方法在各种分析格式使用碱性磷酸酶和葡萄糖-6-磷酸脱氢酶作为标签。地高辛的测定将用于说明。近年来,作者采用70ml微细血细胞比容管作为免疫测定反应血管,碱性磷酸酶作为标记酶。该检测在30分钟内完成,血清中IgG的检出限为5,6 × 10 -20摩尔。线性范围为4个数量级。这种低检测限是由于反应容器的有利几何形状和通过添加离子配对阻断剂抑制非特异性吸附的结合。更小的反应容器可以达到更低的可检测量。检测如此少量分析物的能力对于分析极小样本(如单细胞和早产儿血液样本)可能是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrochemical immunoassay: an ultrasensitive method.

Hydrodynamic electrochemical techniques such as liquid chromatography and flow injection analysis with electrochemical detection are very effective for the rapid determination of the enzyme-generated product in enzyme immunoassays. The authors have used this detection method in various assay formats using both alkaline phosphatase and glucose-6-phosphate dehydrogenase as labels. Assays for digoxin will be used illustratively. Recently, the authors have used 70 mL microcapillary hematocrit tubes as the immunoassay reaction vessel and alkaline phosphatase as the labeling enzyme. The assay, complete in 30 min, had a detection limit of 5,6 x 10 -20 moles of IgG in serum. The linear range was four orders of magnitude. This low detection limit is due to a combination of the favorable geometry of the reaction vessel and the suppression of nonspecific adsorption by the addition of ion-pairing blocking agents. Even lower detectable amounts should be achievable with smaller reaction vessels. The capability for detecting such small amounts of analyte is potentially useful for the analysis of extremely small samples such as single cells and blood samples from premature infants.

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