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螺内酯代谢物导致雅培 Architect 免疫分析法中孕激素假性升高。

Spironolactone metabolite causes falsely increased progesterone in the Abbott Architect immunoassay.

机构信息

West African Centre for Cell Biology of Infectious Pathogens (WACCBIP), Department of Biochemistry Cell and Molecular Biology, University of Ghana, Accra, Ghana.

Division of Endocrinology and Metabolism, Department of Medicine, University of Virginia School of Medicine, Charlottesville, VA 22903, USA; Center for Research in Reproduction, University of Virginia School of Medicine, Charlottesville, VA 22903, USA.

出版信息

Clin Biochem. 2024 Apr;126:110747. doi: 10.1016/j.clinbiochem.2024.110747. Epub 2024 Mar 12.

Abstract

BACKGROUND

Immunoassays are important for routine clinical testing and medical diagnosis. However, they are limited by cross-reactivity especially at low analyte concentrations. There is a critical need to investigate compounds that can interfere with immunoassays. Herein, we describe the identification of canrenone, a spironolactone metabolite that falsely increases progesterone concentrations on the Abbott Architect i2000 Immunoassay.

METHODS

Serum samples and assay diluents were spiked with spironolactone or canrenone and progesterone concentrations were measured on the Architect i2000 and Immulite XPi immunoassay platforms. Blood samples from patients taking spironolactone were analyzed with liquid chromatography-tandem mass spectrometry to evaluate the intrinsic response of progesterone concentrations to the presence of canrenone.

RESULTS

We measured approximately 10-fold higher progesterone concentrations on the Abbott Architect i2000 compared to reference immunoassay analyzers (Siemens Immulite XPi and Roche Cobas e601/602), suggesting an analytical error which is unique to the Architect i2000 antibody and/or assay conditions. By measuring serum progesterone after addition of spironolactone or canrenone to serum samples, we found that canrenone falsely increased progesterone on the Architect i2000 immunoassay. However, this interference was more pronounced at low serum progesterone concentrations. Moreover, a strong positive correlation was seen between canrenone and measured serum progesterone concentrations.

CONCLUSIONS

Our investigations are important for individuals who require progesterone measurements using the Architect i2000 immunoassay, especially because it is unlikely for clinicians to order canrenone measurements alongside progesterone measurements for individuals taking spironolactone. Further research is needed to determine whether canrenone can influence progesterone measurements on other immunoassay systems.

摘要

背景

免疫分析在常规临床检测和医学诊断中非常重要。然而,它们受到交叉反应的限制,尤其是在分析物浓度较低时。因此,我们迫切需要研究能够干扰免疫分析的化合物。在此,我们描述了坎利酮的鉴定,坎利酮是一种螺内酯代谢物,会在雅培 Architect i2000 免疫分析中错误地增加孕激素浓度。

方法

将螺内酯或坎利酮和孕激素添加到血清样品和检测稀释液中,并在 Architect i2000 和 Immulite XPi 免疫分析平台上测量孕激素浓度。使用液相色谱-串联质谱法分析正在服用螺内酯的患者的血液样本,以评估孕激素浓度对坎利酮存在的固有反应。

结果

与参考免疫分析仪器(西门子 Immulite XPi 和罗氏 Cobas e601/602)相比,我们在雅培 Architect i2000 上测量的孕激素浓度大约高出 10 倍,这表明这是 Architect i2000 抗体和/或检测条件特有的分析错误。通过在血清样品中添加螺内酯或坎利酮后测量血清孕激素,我们发现坎利酮会在 Architect i2000 免疫分析中错误地增加孕激素浓度。然而,这种干扰在血清孕激素浓度较低时更为明显。此外,我们还发现坎利酮与测量的血清孕激素浓度之间存在强烈的正相关。

结论

我们的研究对需要使用 Architect i2000 免疫分析测量孕激素的个体非常重要,特别是因为临床医生不太可能在个体服用螺内酯的情况下同时开坎利酮和孕激素的测量。需要进一步研究以确定坎利酮是否会影响其他免疫分析系统上的孕激素测量。

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