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首页> 外文期刊>Molecular & cellular proteomics: MCP >Design, implementation and multisite evaluation of a system suitability protocol for the quantitative assessment of instrument performance in liquid chromatography-multiple reaction monitoring-MS (LC-MRM-MS)
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Design, implementation and multisite evaluation of a system suitability protocol for the quantitative assessment of instrument performance in liquid chromatography-multiple reaction monitoring-MS (LC-MRM-MS)

机译:液相色谱仪-多反应监测-MS(LC-MRM-MS)仪器性能定量评估的系统适用性协议的设计,实现和多站点评估

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摘要

Multiple reaction monitoring (MRM) mass spectrometry coupled with stable isotope dilution (SID) and liquid chromatography (LC) is increasingly used in biological and clinical studies for precise and reproducible quantification of peptides and proteins in complex sample matrices. Robust LC-SID-MRM-MS-based assays that can be replicated across laboratories and ultimately in clinical laboratory settings require standardized protocols to demonstrate that the analysis platforms are performing adequately. We developed a system suitability protocol (SSP), which employs a predigested mixture of six proteins, to facilitate performance evaluation of LC-SID-MRM-MS instrument platforms, configured with nanoflow-LC systems interfaced to triple quadrupole mass spectrometers. The SSP was designed for use with low multiplex analyses as well as high multiplex approaches when software-driven scheduling of data acquisition is required. Performance was assessed by monitoring of a range of chromatographic and mass spectrometric metrics including peak width, chromatographic resolution, peak capacity, and the variability in peak area and analyte retention time (RT) stability. The SSP, which was evaluated in 11 laboratories on a total of 15 different instruments, enabled early diagnoses of LC and MS anomalies that indicated suboptimal LC-MRM-MS performance. The observed range in variation of each of the metrics scrutinized serves to define the criteria for optimized LCSID- MRM-MS platforms for routine use, with pass/fail criteria for system suitability performance measures defined as peak area coefficient of variation <0.15, peak width coefficient of variation <0.15, standard deviation of RT <0.15 min (9 s), and the RT drift <0.5min (30 s). The deleterious effect of a marginally performing LC-SID-MRM-MS system on the limit of quantification (LOQ) in targeted quantitative assays illustrates the use and need for a SSP to establish robust and reliable system performance. Use of a SSP helps to ensure that analyte quantification measurements can be replicated with good precision within and across multiple laboratories and should facilitate more widespread use of MRM-MS technology by the basic biomedical and clinical laboratory research communities.
机译:结合稳定同位素稀释(SID)和液相色谱(LC)的多反应监测(MRM)质谱越来越多地用于生物学和临床研究中,以对复杂样品基质中的肽和蛋白质进行精确且可重现的定量。可靠的基于LC-SID-MRM-MS的分析可在实验室之间重复使用,最终可在临床实验室环境中使用,因此需要标准化的规程以证明分析平台能够正常运行。我们开发了系统适用性协议(SSP),该协议采用了六种蛋白质的预消化混合物,以促进LC-SID-MRM-MS仪器平台的性能评估,该平台配置了与三重四极杆质谱仪连接的nanoflow-LC系统。 SSP设计用于需要软件驱动的数据采集调度的低多重分析以及高多重分析方法。通过监测一系列色谱和质谱指标(包括峰宽,色谱分辨率,峰容量以及峰面积和分析物保留时间(RT)稳定性的变化)来评估性能。 SSP在11个实验室中对总共15种不同的仪器进行了评估,可以对LC和MS异常进行早期诊断,表明LC-MRM-MS性能欠佳。观察到的每个指标的变化范围都可用来定义常规使用的优化LCSID-MRM-MS平台的标准,系统适用性性能度量的通过/失败标准定义为峰面积变异系数<0.15,峰宽变异系数<0.15,RT的标准偏差<0.15 min(9 s),RT漂移<0.5min(30 s)。在目标定量分析中,性能稍差的LC-SID-MRM-MS系统对定量限(LOQ)的有害影响说明了SSP的使用和建立稳定可靠的系统性能的需求。 SSP的使用有助于确保可以在多个实验室内和跨多个实验室高精度地复制分析物的定量测量结果,并且应该促进基本的生物医学和临床实验室研究团体更广泛地使用MRM-MS技术。

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