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Systematic Evaluation of Non-Uniform Sampling Parameters in the Targeted Analysis of Urine Metabolites by 1H1H 2D NMR Spectroscopy

机译:通过1H1H 2D NMR光谱法对尿液代谢物进行目标分析中非均匀采样参数的系统评价

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摘要

Non-uniform sampling (NUS) allows the accelerated acquisition of multidimensional NMR spectra. The aim of this contribution was the systematic evaluation of the impact of various quantitative NUS parameters on the accuracy and precision of 2D NMR measurements of urinary metabolites. Urine aliquots spiked with varying concentrations (15.6–500.0 µM) of tryptophan, tyrosine, glutamine, glutamic acid, lactic acid, and threonine, which can only be resolved fully by 2D NMR, were used to assess the influence of the sampling scheme, reconstruction algorithm, amount of omitted data points, and seed value on the quantitative performance of NUS in 1H,1H-TOCSY and 1H,1H-COSY45 NMR spectroscopy. Sinusoidal Poisson-gap sampling and a compressed sensing approach employing the iterative re-weighted least squares method for spectral reconstruction allowed a 50% reduction in measurement time while maintaining sufficient quantitative accuracy and precision for both types of homonuclear 2D NMR spectroscopy. Together with other advances in instrument design, such as state-of-the-art cryogenic probes, use of 2D NMR spectroscopy in large biomedical cohort studies seems feasible.
机译:非均匀采样(NUS)可以加快多维NMR光谱的采集。该贡献的目的是系统评估各种定量NUS参数对尿液代谢物2D NMR测量的准确性和精密度的影响。尿液等分试样中掺有色氨酸,酪氨酸,谷氨酸,谷氨酸,谷氨酸,乳酸和苏氨酸的浓度不同(15.6–500.0μm),这些只能通过二维NMR完全分辨,用于评估采样方案的影响,重建算法,遗漏的数据点数量以及种子值对NUS在 1 H, 1 H-TOCSY和 1 H中的定量性能的影响, 1 H-COSY45 NMR光谱学。正弦泊松间隙采样和采用迭代再加权最小二乘法进行光谱重建的压缩感测方法可将测量时间减少50%,同时为两种同核2D NMR光谱保持足够的定量准确性和精密度。与仪器设计的其他进展(例如最先进的低温探针)一起,在大型生物医学队列研究中使用2D NMR光谱似乎是可行的。

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