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首页> 外文期刊>Analytical chemistry >PiTMaP: A New Analytical Platform for High-Throughput Direct Metabolome Analysis by Probe Electrospray Ionization/Tandem Mass Spectrometry Using an R Software-Based Data Pipeline
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PiTMaP: A New Analytical Platform for High-Throughput Direct Metabolome Analysis by Probe Electrospray Ionization/Tandem Mass Spectrometry Using an R Software-Based Data Pipeline

机译:PitMap:使用R软件的数据管道探头电喷雾电离/串联质谱法进行高通量直接代谢分析的新分析平台

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摘要

A new analytical platform called PiTMaP was developed for high-throughput direct metabolome analysis by probe electrospray ionization/tandem mass spectrometry (PESI/ MS/MS) using an R software-based data pipeline. PESI/MS/MS was used as the data acquisition technique, applying a scheduled-selected reaction monitoring method to expand the targeted metabolites. Seventy-two metabolites mainly related to the central energy metabolism were selected; data acquisition time was optimized using mouse liver and brain samples, indicating that the 2.4 min data acquisition method had a higher repeatability than the 1.2 and 4.8 min methods. A data pipeline was constructed using the R software, and it was proven that it can (i) automatically generate box-and-whisker plots for all metabolites, (ii) perform multivariate analyses such as principal component analysis (PCA) and projection to latent structures-discriminant analysis (PLS-DA), (iii) generate score and loading plots of PCA and PLS-DA, (iv) calculate variable importance of projection (VIP) values, (v) determine a statistical family by VIP value criterion, (vi) perform tests of significance with the false discovery rate (FDR) correction method, and (vii) draw box-and-whisker plots only for significantly changed metabolites. These tasks could be completed within ca. 1 min. Finally, PiTMaP was applied to two cases: (1) an acetaminophen-induced acute liver injury model and control mice and (2) human meningioma samples with different grades (G1-G3), demonstrating the feasibility of PiTMaP. PiTMaP was found to perform data acquisition without tedious sample preparation and a posthoc data analysis within ca. 1 min. Thus, it would be a universal platform to perform rapid metabolic profiling of biological samples.
机译:使用基于R软件的数据管道,开发了一种用于高通量直接代谢分析的高通量直接代谢分析的新的分析平台。 Pesi / MS / MS被用作数据采集技术,应用预定选择的反应监测方法扩展目标代谢物。七十二个代谢物主要与中央能量代谢相关;数据采集​​时间由小鼠肝脏和脑样本进行优化,表明2.4 min数据采集方法具有比1.2和4.8 min的重复性更高。使用R软件构建数据流水线,证明它可以(i)自动生成所有代谢物的箱子和晶须图,(ii)执行多变量分析,例如主成分分析(PCA)和投影潜在结构 - 判别分析(PLS-DA),(III)生成PCA和PCA-DA的分数和加载图,(IV)计算投影(VIP)值的变量重要性,(v)通过VIP值标准确定统计系列, (vi)对假冒发现率(FDR)校正方法进行重要性,(VII)仅针对显着改变的代谢物绘制盒子和晶须图。这些任务可以在CA内完成。 1分钟。最后,PitMap应用于两种情况:(1)乙酰氨基酚诱导的急性肝损伤模型和对小鼠和(2)具有不同等级(G1-G3)的人脑膜瘤样品,证明了PitMap的可行性。发现PitMap在没有繁琐的样品制备和加利福尼亚州内的数据分析,在没有繁琐的样品制备和POSTHOC数据分析的情况下进行数据采集。 1分钟。因此,对生物样品的快速代谢分析是一种通用平台。

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  • 来源
    《Analytical chemistry》 |2020年第12期|共9页
  • 作者单位

    Nagoya Univ In Vivo Real Time Omics Lab Inst Adv Res Chikusa Ku Nagoya Aichi 4648601 Japan;

    Tokyo Womens Med Univ Dept Neurosurg Neurol Inst Shinjuku Ku Tokyo 1628666 Japan;

    Nagoya Univ Dept Legal Med &

    Bioeth Grad Sch Med Showa Ku Nagoya Aichi 4668550 Japan;

    Nagoya Univ Dept Legal Med &

    Bioeth Grad Sch Med Showa Ku Nagoya Aichi 4668550 Japan;

    Nagoya Univ Dept Legal Med &

    Bioeth Grad Sch Med Showa Ku Nagoya Aichi 4668550 Japan;

    Nagoya Univ Dept Legal Med &

    Bioeth Grad Sch Med Showa Ku Nagoya Aichi 4668550 Japan;

    Tokyo Womens Med Univ Dept Neurosurg Neurol Inst Shinjuku Ku Tokyo 1628666 Japan;

    Natl Inst Adv Ind Sci &

    Technol Marine Geoenvironm Res Grp Inst Geol &

    Geoinformat Tsukuba Ibaraki 3058567 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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