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Evaluation of ~1H NMR Metabolic Profiling Using Biofluid Mixture Design

机译:使用生物流体混合物设计评估〜1H NMR代谢谱

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摘要

A strategy for evaluating the performance of quantitative spectral analysis tools in conditions that better approximate background variation in a metabonomics experiment is presented. Three different urine samples were mixed in known proportions according to a {3, 3} simplex lattice experimental design and analyzed in triplicate by 1D ~1H NMR spectroscopy. Fifty-four urinary metabolites were subsequently quantified from the sample spectra using two methods common in metabolic profiling studies: (1) targeted spectral fitting and (2) targeted spectral integration. Multivariate analysis using partial least-squares (PLS) regression showed the latent structure of the spectral set recapitulated the experimental mixture design. The goodness-of-prediction statistic (Q~2) of each metabolite variable in a PLS model was calculated as a metric for the reliability of measurement, across the sample compositional space. Several metabolites were observed to have low Q~2 values, largely as a consequence of their spectral resonances having low s or strong overlap with other sample components. This strategy has the potential to allow evaluation of spectral features obtained from metabolic profiling platforms in the context of the compositional background found in real biological sample sets, which may be subject to considerable variation. We suggest that it be incorporated into metabolic profiling studies to improve the estimation of matrix effects that confound accurate metabolite measurement. This novel method provides a rational basis for exploiting information from several samples in an efficient manner and avoids the use of multiple spike-in authentic standards, which may be difficult to obtain.
机译:提出了一种在代谢组学实验中更好地估计背景变化的条件下评估定量光谱分析工具性能的策略。根据{3,3}单纯形点阵实验设计,按已知比例混合三种不同的尿液样品,并通过1D〜1H NMR光谱一式三份进行分析。随后使用代谢谱分析研究中常用的两种方法从样品光谱中定量出54种尿液代谢物:(1)目标光谱拟合和(2)目标光谱积分。使用偏最小二乘(PLS)回归进行的多变量分析显示,光谱集的潜在结构概括了实验混合物的设计。计算PLS模型中每个代谢物变量的预测优度统计量(Q〜2),作为整个样本组成空间中测量可靠性的度量。观察到几种代谢物具有较低的Q〜2值,这主要是由于它们的光谱共振具有较低的s / n或与其他样品组分的强烈重叠。这种策略有可能允许在真实生物样品集中发现的组成背景的背景下,评估从代谢谱分析平台获得的光谱特征,这可能会发生很大的变化。我们建议将其纳入代谢谱研究中,以改善混淆准确代谢物测量的基质效应的估计。这种新颖的方法为以有效方式利用来自多个样本的信息提供了合理的基础,并且避免了使用多个难以获得的真实标准品。

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