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螺内酯代谢物与四种地高辛免疫测定法交叉反应性的重新评估。

Reassessment of cross-reactivity of spironolactone metabolites with four digoxin immunoassays.

作者信息

Pleasants R A, Williams D M, Porter R S, Gadsden R H

机构信息

Department of Pharmacy, North Carolina Memorial Hospital, Chapel Hill.

出版信息

Ther Drug Monit. 1989;11(2):200-4. doi: 10.1097/00007691-198903000-00013.

Abstract

Spironolactone and one of its metabolites, canrenone, cross-react with some digoxin immunoassays to result in erroneous serum digoxin concentrations. Recently, additional compounds, 7-alpha-thiomethylspirolactone (7-a-TMS) and 6-beta-hydroxy-7-alpha-thiomethylspirolactone (6-B-OH-7-a-TMS), have been reported to be quantitatively important metabolites of spironolactone. This study was initiated to evaluate the cross-reactivity of these metabolites, canrenone, and spironolactone with four different digoxin immunoassays. Blank serum was spiked with each compound to yield concentrations reported to occur in vivo. Samples were analyzed in duplicate by each of the following immunoassays: fluorescence polarization immunoassay (FPIA); affinity-column-mediated immunoassay (ACMIA); radioimmunoassay (RIA); and enzyme immunoassay (EIA). The 7-a-TMS metabolite cross-reacted with both the RIA and ACMIA methods. Apparent digoxin concentrations were as great as 0.39 ng/ml for this metabolite at the highest concentration evaluated, 600 ng/ml. At the lowest concentrations evaluated with the 7-a-TMS metabolite, 50 ng/ml, apparent digoxin concentrations as high as 0.28 ng/ml were reported. The 6-B-OH-7-a-TMS metabolite did not cross-react to a significant extent with any of immunoassays studied. Canrenone cross-reacted with the ACMIA method at a concentration of 100 ng/ml. The EIA method exhibited no apparent cross-reactivity with any of the compounds, whereas the FPIA method exhibited minimal cross-reactivity. The results of this study indicate that the 7-a-TMS metabolite cross-reacts to a significant extent with some immunoassays; however, this is not true for the 6-B-OH-7-a-TMS metabolite.

摘要

螺内酯及其一种代谢产物坎利酮会与某些地高辛免疫测定法发生交叉反应,导致血清地高辛浓度出现误差。最近,有报道称另外两种化合物,即7-α-硫甲基螺内酯(7-a-TMS)和6-β-羟基-7-α-硫甲基螺内酯(6-B-OH-7-a-TMS)是螺内酯的重要定量代谢产物。本研究旨在评估这些代谢产物、坎利酮和螺内酯与四种不同地高辛免疫测定法的交叉反应性。向空白血清中加入每种化合物,使其浓度达到体内报道的浓度。样品通过以下每种免疫测定法进行双份分析:荧光偏振免疫测定法(FPIA);亲和柱介导免疫测定法(ACMIA);放射免疫测定法(RIA);酶免疫测定法(EIA)。7-a-TMS代谢产物与RIA和ACMIA方法均发生交叉反应。在评估的最高浓度600 ng/ml时,该代谢产物的表观地高辛浓度高达0.39 ng/ml。在用7-a-TMS代谢产物评估的最低浓度50 ng/ml时,报道的表观地高辛浓度高达0.28 ng/ml。6-B-OH-7-a-TMS代谢产物与所研究的任何免疫测定法均未发生显著交叉反应。坎利酮在浓度为100 ng/ml时与ACMIA方法发生交叉反应。EIA方法与任何化合物均未表现出明显的交叉反应性,而FPIA方法表现出最小的交叉反应性。本研究结果表明,7-a-TMS代谢产物与某些免疫测定法发生显著交叉反应;然而,6-B-OH-7-a-TMS代谢产物并非如此。

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