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Application of the FLIPSY pulse sequence for increased sensitivity in H-1 NMR-based metabolic profiling studies

机译:FLIPSY脉冲序列在基于H-1 NMR的代谢谱研究中提高敏感性的应用

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摘要

Metabolite profiling relies on optimal precision of the acquired data, which requires, among others, a high signal-to-noise ratio (S/N). In addition, increased S/N will increase the likelihood of identification of new biomarkers. Here we introduce, for the first time in metabolite profiling studies by H-1 NMR, an approach to enhance the precision of multivariate regression models by use of the FLIPSY (flip angle adjustable one-dimensional NOESY) pulse sequence, augmented by a homospoil pulse after the presaturation period to provide superior baseline quality. Unlike NOESYPRESAT, the standard one-dimensional (1D) sequence generally used in metabonomic studies, FLIPSY incorporates a variable flip angle, allowing use of the Ernst angle for excitation and thus optimization of S/N ratios according to spin lattice relaxation times (T-1) of individual resonances. T-1 values of metabolites present in human urine were determined by inversion-recovery experiments and subsequently used in calculations of optimal experimental conditions. Comparison of human urine analysis by the FLIPSY and NOESYPRESAT demonstrated an increase of S/N ratio in the former case that amounts to approximately 7% ;when measured for the hippurate doublet at delta 7.84. An orthogonal projection to latent structures discriminant analysis (O-PLS-DA) model exhibited superior discrimination between controls and simulated phenylketonuria urines when using data generated by the FLIPSY as compared to NOESYPRESAT.
机译:代谢物分析依赖于所采集数据的最佳精度,这尤其需要高信噪比(S / N)。另外,增加的信噪比将增加鉴定新生物标记的可能性。在这里,我们首次通过H-1 NMR进行代谢物分析研究,该方法通过使用FLIPSY(翻转角可调一维NOESY)脉冲序列并加同质脉冲来增强多元回归模型的精度预饱和期后,可提供卓越的基线质量。与代谢组学研究中通常使用的标准一维(1D)序列NOESYPRESAT不同,FLIPSY包含可变的翻转角,允许使用Ernst角进行激发,从而根据自旋晶格弛豫时间(T- 1)个人共鸣。人尿中存在的代谢物的T-1值通过反演回收实验确定,然后用于最佳实验条件的计算。通过FLIPSY和NOESYPRESAT对人尿液分析的比较表明,在前一种情况下,在δ7.84处检测到的马尿酸双峰时,信噪比增加了大约7%。与NOESYPRESAT相比,当使用FLIPSY生成的数据时,对潜在结构判别分析(O-PLS-DA)模型的正交投影显示出控件和模拟苯丙酮尿症尿液之间的出色区分。

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