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通过液相色谱-串联质谱法,利用预定多重反应监测和即时库搜索进行兴奋剂控制,高效利用保留时间分析马血浆中的 302 种药物。

Efficient use of retention time for the analysis of 302 drugs in equine plasma by liquid chromatography-MS/MS with scheduled multiple reaction monitoring and instant library searching for doping control.

机构信息

University of Pennsylvania School of Veterinary Medicine, New Bolton Center Campus, 382 West Street Road, Kennett Square, Pennsylvania 19348, USA.

出版信息

Anal Chem. 2011 Sep 1;83(17):6834-41. doi: 10.1021/ac2016163. Epub 2011 Aug 12.

Abstract

Multiple drug target analysis (MDTA) used in doping control is more efficient than single drug target analysis (SDTA). The number of drugs with the potential for abuse is so extensive that full coverage is not possible with SDTA. To address this problem, a liquid chromatography tandem mass spectrometric method was developed for simultaneous analysis of 302 drugs using a scheduled multiple reaction monitoring (s-MRM) algorithm. With a known retention time of an analyte, the s-MRM algorithm monitors each MRM transition only around its expected retention time. Analytes were recovered from plasma by liquid-liquid extraction. Information-dependent acquisition (IDA) functionality was used to combine s-MRM with enhanced product ion (EPI) scans within the same chromatographic analysis. An EPI spectrum library was also generated for rapid identification of analytes. Analysis time for the 302 drugs was 7 min. Scheduled MRM improved the quality of the chromatograms, signal response, reproducibility, and enhanced signal-to-noise ratio (S/N), resulting in more data points. Reduction in total cycle time from 2.4 s in conventional MRM (c-MRM) to 1 s in s-MRM allowed completion of the EPI scan at the same time. The speed for screening and identification of multiple drugs in equine plasma for doping control analysis was greatly improved by this method.

摘要

多药物靶标分析(MDTA)在兴奋剂检测中的应用比单药物靶标分析(SDTA)更高效。具有滥用潜力的药物数量如此广泛,以至于 SDTA 不可能完全涵盖。为了解决这个问题,开发了一种液相色谱串联质谱法,使用预定多重反应监测(s-MRM)算法同时分析 302 种药物。对于具有已知保留时间的分析物,s-MRM 算法仅在其预期保留时间周围监测每个 MRM 跃迁。分析物通过液液萃取从血浆中回收。信息依赖性采集(IDA)功能用于在同一色谱分析中结合 s-MRM 和增强的产物离子(EPI)扫描。还生成了一个 EPI 光谱库,用于快速鉴定分析物。302 种药物的分析时间为 7 分钟。预定的 MRM 提高了色谱图的质量、信号响应、重现性和增强的信噪比(S/N),从而产生了更多的数据点。从传统 MRM(c-MRM)中的总循环时间 2.4 秒减少到 s-MRM 中的 1 秒,允许同时完成 EPI 扫描。这种方法大大提高了赛马血浆中多种药物的筛选和鉴定速度,用于兴奋剂检测分析。

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