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Fast and precise quantitative analysis of metabolic mixtures by 2D 1H INADEQUATE NMR.

机译:通过2D 1H INADEQUATE NMR快速准确地定量分析代谢混合物。

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摘要

Quantitative analysis of metabolic mixtures by (1)H 1D NMR offers a limited potential for precise quantification of biomarkers, due to strong overlap between the peaks. Two-dimensional spectroscopy is a powerful tool to unambiguously and simultaneously measure a larger number of metabolite contributions. However, it is still rarely used for quantification, first because quantitative analysis by 2D NMR requires a calibration procedure due to the multi-impulsional nature of 2D NMR experiments, and above all because of the prohibitive experiment duration that is necessary to obtain such a calibration curve. In this work, we develop and evaluate a 2D (1)H INADEQUATE protocol for a fast determination of metabolite concentrations in complex mixtures. The 2D pulse sequence is carefully optimized and evaluated in terms of precision and linearity. Quantitative (1)H INADEQUATE 2D spectra of metabolic mixtures are obtained in 7 min with a repeatability better than 2% for metabolite concentrations as small as 100 muM and an excellent linearity. The method described in this work allows a fast and precise quantification of metabolic mixtures, and it forms a promising tool for metabonomic studies.
机译:由于峰之间的强烈重叠,通过(1)H 1D NMR对代谢混合物进行定量分析提供了精确定量生物标记物的潜力。二维光谱学是一种强大的工具,可以明确地同时测量大量代谢物。但是,它仍然很少用于定量分析,首先,由于2D NMR实验的多脉冲性质,通过2D NMR进行定量分析需要校准程序,最重要的是,获得这种校准所必需的禁止实验时间曲线。在这项工作中,我们开发和评估2D(1)H INADEQUATE协议,用于快速测定复杂混合物中的代谢物浓度。二维脉冲序列经过仔细优化,并根据精度和线性进行了评估。 (1)H不饱和定量代谢混合物的二维光谱在7分钟内获得,对于低至100μM的代谢物,其重复性优于2%,并且线性很好。这项工作中描述的方法可以快速,准确地定量代谢混合物,并且为代谢组学研究提供了有希望的工具。

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