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Metabolite Projection Analysis for Fast Identification of Metabolites in Metabonomics. Application in an Amiodarone Study

机译:代谢物投影分析,可快速识别代谢组学中的代谢物。在胺碘酮研究中的应用

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The assignment of significantly changed NMR signals, which were identified with the help of multivariate models, to individual metabolites in biofluids is a manual and tedious task requiring knowledge in chemometrics and NMR spectroscopy. Metabolite projection analysis, introduced in this work, allows automatic linking of multivariate models with metabolites by skipping the level of manual NMR signal identification. The method depends on the projection of sets of metabolite NMR spectra from a database into PCA or PLS models of NMR spectra of biofluid samples. Metabolites that are significantly changed can be identified graphically in metabolite projection plots or numerically as projected virtual concentration. The method is demonstrated together with a newly introduced algorithm for refined nonequidistant binning using a metabonomics study with amiodarone as administered drug. Amiodarone can induce phospholipidosis in the lung and liver, which is accompanied by associated organ toxicity in these organs. It is shown how metabolite projection analysis allows easy and fast tentative assignment of all structures of metabolites whose concentrations in the urine samples significantly changed upon dosage. These metabolites had also been identified previously by manually interpreting the multivariate models and spectra. Among these metabolites, phenylacetylglycine was also identified as being significantly increased. This metabolite has recently been proposed as urinary biomarker for phospholipidosis.
机译:将借助多​​变量模型确定的显着变化的NMR信号分配给生物流体中的单个代谢物是一项手动且繁琐的任务,需要化学计量学和NMR光谱学方面的知识。这项工作中引入的代谢物投影分析通过跳过手动NMR信号识别的级别,允许将多元模型与代谢物自动链接。该方法取决于数据库中代谢物NMR光谱集对生物流体样品NMR光谱的PCA或PLS模型的投影。可以在代谢物投影图中以图形方式识别发生重大变化的代谢物,或在数值上以投影的虚拟浓度进行识别。该方法与新引入的算法进行了演示,该算法使用胺碘酮作为给药药物的代谢组学研究,用于精炼非等距装箱。胺碘酮可在肺和肝中引起磷脂酰化,并伴有这些器官的相关器官毒性。它显示了代谢物投影分析如何使所有代谢物的结构轻松快速地进行初步分配,这些结构的尿样中浓度随剂量的变化而显着变化。这些代谢物之前也已通过人工解释多元模型和光谱进行了鉴定。在这些代谢产物中,苯乙酰基甘氨酸也被认为明显增加。最近已经提出了这种代谢产物作为磷脂代谢的尿液生物标志物。

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