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比率分析核磁共振波谱法用于复杂样品中选择性代谢物的鉴定。

Ratio analysis nuclear magnetic resonance spectroscopy for selective metabolite identification in complex samples.

机构信息

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, USA.

出版信息

Anal Chem. 2011 Oct 15;83(20):7616-23. doi: 10.1021/ac201625f. Epub 2011 Sep 23.

Abstract

Metabolite identification in the complex NMR spectra of biological samples is a challenging task due to significant spectral overlap and limited signal-to-noise. In this study we present a new approach, RANSY (ratio analysis NMR spectroscopy), which identifies all the peaks of a specific metabolite on the basis of the ratios of peak heights or integrals. We show that the spectrum for an individual metabolite can be generated by exploiting the fact that the peak ratios for any metabolite in the NMR spectrum are fixed and proportional to the relative numbers of magnetically distinct protons. When the peak ratios are divided by their coefficients of variation derived from a set of NMR spectra, the generation of an individual metabolite spectrum is enabled. We first tested the performance of this approach using one-dimensional (1D) and two-dimensional (2D) NMR data of mixtures of synthetic analogues of common body fluid metabolites. Subsequently, the method was applied to (1)H NMR spectra of blood serum samples to demonstrate the selective identification of a number of metabolites. The RANSY approach, which does not need any additional NMR experiments for spectral simplification, is easy to perform and has the potential to aid in the identification of unknown metabolites using 1D or 2D NMR spectra in virtually any complex biological mixture.

摘要

由于生物样本中核磁共振谱的重叠严重且信噪比有限,代谢物的鉴定是一项具有挑战性的任务。在本研究中,我们提出了一种新的方法 RANSY(比率分析核磁共振波谱法),它可以根据峰高或积分的比值来确定特定代谢物的所有峰。我们表明,通过利用 NMR 谱中任何代谢物的峰比值都是固定的并且与磁不同质子的相对数量成比例的事实,可以生成单个代谢物的谱。当将峰比值除以从一组 NMR 谱中得出的其变异系数时,就可以生成单个代谢物谱。我们首先使用常见体液代谢物的合成类似物混合物的一维(1D)和二维(2D)NMR 数据测试了该方法的性能。随后,将该方法应用于血清样品的(1)H NMR 谱,以证明可以选择性地鉴定多种代谢物。RANSY 方法不需要任何额外的 NMR 实验来简化光谱,易于执行,并且有可能使用一维或二维 NMR 谱在几乎任何复杂的生物混合物中辅助鉴定未知代谢物。

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