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Automated Microchromatography Enables Multiplexing of Immunoaffinity Enrichment of Peptides to Greater than 150 for Targeted MS-Based Assays

机译:自动化的微色谱技术可将基于肽段的免疫亲和富集倍增至大于150,以用于基于MS的靶向分析

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Immunoaffinity enrichment of peptides coupled with analysis by stable isotope dilution multiple reaction mass spectrometry has been shown to have analytical performance and detection limits suitable for many biomarker verification studies and biological applications. Prior studies have shown that antipeptide antibodies can be multiplexed up to 50 in a single assay without significant loss of performance. Achieving higher multiplex levels is relevant to all studies involving precious biological material as this minimizes the amount of sample that must be consumed to measure a given set of analytes and reduces the assay cost per analyte. Here we developed automated methods employing the Agilent AssayMAP Bravo microchromatography platform and used these methods to characterize the performance of immunoaffinity enrichment of peptides up to multiplex levels of 172. Median capture efficiency for the target peptides remained high (88%) even at levels of 150-plex and declined to 70% at 172-plex compared to antibody performance observed at standard lower multiplex levels (n = 25). Subsequently, we developed and analytically characterized a multiplexed immuno-multiple reaction monitoring-mass spectrometry (immuno-MRM-MS) assay (n = 110) and applied it to measure candidate protein biomarkers of cardiovascular disease in plasma of patients undergoing planned myocardial infarction. The median lower limit of detection of all peptides was 71.5 amol/mu L (nM), and the coefficient of variation (CV) was less than 15% at the lower limit of quantification. The results demonstrate that high multiplexed immuno-MRM-MS assays are readily achievable using the optimized sample processing and peptide capture methods described here.
机译:肽的免疫亲和力富集以及通过稳定同位素稀释的多重反应质谱分析已显示出适合许多生物标志物验证研究和生物学应用的分析性能和检测极限。先前的研究表明,抗肽抗体可以在一次测定中最多复用50种,而不会显着降低性能。实现更高的多重分析水平与所有涉及珍贵生物材料的研究都息息相关,因为这可以最大程度地减少测量一组给定分析物所需消耗的样品量,并降低每种分析物的分析成本。在这里,我们开发了使用Agilent AssayMAP Bravo微色谱平台的自动化方法,并使用这些方法来表征了高达172多重水平的肽的免疫亲和富集性能。即使在150的水平下,目标肽的中位捕获效率仍然很高(88%)与在标准较低多重水平下(n = 25)观察到的抗体性能相比,在172多重条件下,抗体的抗体水平降低至70%。随后,我们开发并分析了多重免疫多反应监测质谱(immuno-MRM-MS)分析(n = 110)的特性,并将其用于测量患有计划性心肌梗死的患者血浆中心血管疾病的候选蛋白质生物标志物。所有肽的检测中位数下限为71.5 amol /μL(nM),在定量下限时变异系数(CV)小于15%。结果表明,使用此处所述的优化的样品处理和肽捕获方法可轻松实现高度多重的免疫MRM-MS分析。

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