首页> 外文期刊>Journal of Chromatographic Science >A Sensitive Dilute-and-Shoot Approach for the Simultaneous Screening of 71 Stimulants and 7 Metabolites in Human Urine by LC-MS-MS with Dynamic MRM
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A Sensitive Dilute-and-Shoot Approach for the Simultaneous Screening of 71 Stimulants and 7 Metabolites in Human Urine by LC-MS-MS with Dynamic MRM

机译:采用动态MRM的LC-MS-MS同时检测人尿中71种兴奋剂和7种代谢物的灵敏的稀释射击方法

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摘要

A novel, reliable and sensitive liquid chromatography-tandem mass spectrometry (LC-MS-MS) method was developed with dynamic multiple reaction monitoring (dMRM) mode for the simultaneous screening of 71 stimulants and 7 metabolites in human urine using unsophisticated MS instruments (Agilent triple-quadruple 6410 B mass spectrometer). With a known retention time of an analyte, dMRM algorithm monitors each MRM transition only around its expected retention time. Therefore, dMRM enables the maximization of dwell times and provides much higher sensitivity and reproducibility than the conventional multiple reaction monitoring mode (cMRM). After precipitation of protein, the urine sample was injected into LC-MS-MS system directly without sample pre-concentration. For comparison, cMRM and dMRM acquisitions were performed under the same chromatographic conditions. The result showed that the signal response and quality of the chromatograms for each stimulant improved significantly with dMRM over cMRM. The method has been fully validated giving limits of detection (0.1-25 ng/mL) satisfactory for its application to anti-doping analysis. The repeatability of the concentrations and the retention times are good both for intra-and for inter-day experiments (%CV of concentrations always <20 and %CV of retention times <0.5). The method also afforded satisfactory results in terms of accuracy, matrix effect and specificity.
机译:建立了一种新颖,可靠,灵敏的液相色谱-串联质谱(LC-MS-MS)方法,采用动态多反应监测(dMRM)模式,使用简单的MS仪器同时筛查人尿中的71种兴奋剂和7种代谢物(Agilent三重四重6410 B质谱仪)。在已知的分析物保留时间的情况下,dMRM算法仅在其预期保留时间附近监视每个MRM跃迁。因此,与传统的多反应监测模式(cMRM)相比,dMRM可以最大程度地延长停留时间,并提供更高的灵敏度和重现性。蛋白质沉淀后,将尿液样品直接注入LC-MS-MS系统,而无需样品预浓缩。为了进行比较,在相同的色谱条件下进行了cMRM和dMRM采集。结果表明,与cMRM相比,dMRM显着改善了每种兴奋剂的信号响应和色谱图质量。该方法已经过充分验证,其检测限(0.1-25 ng / mL)足以用于反掺杂分析。对于日内和日间实验,浓度的重复性和保留时间都很好(浓度的%CV始终<20,保留时间的%CV <0.5)。该方法在准确性,基质效应和特异性方面也提供了令人满意的结果。

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