首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Full H-1 and C-13 NMR spectral assignment of conjugated valerolactone metabolites isolated from urine of black tea consumers by means of SPE-prepLC-MS-LC-MS-NMR
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Full H-1 and C-13 NMR spectral assignment of conjugated valerolactone metabolites isolated from urine of black tea consumers by means of SPE-prepLC-MS-LC-MS-NMR

机译:通过SPE-Preplc-MS-LC-MS-NMR,全H-1和C-13 NMR谱分配从黑茶消费者尿液中分离的尿液中分离出来

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The health benefits of black tea have been linked to polyphenol metabolites that target specific modes of action in the human body. A major bottleneck in unravelling the underlying mechanisms is the preparative isolation of these metabolites, which hampers their structural elucidation and assessment of in vitro bioactivity. A solid phase extraction (SPE)-preparative liquid chromatography (prepLC)-MS-LC-MS-NMR workflow was implemented for preparative isolation of conjugated valerolactone metabolites of catechin-based polyphenols from urine of black tea consumers. First, the urine was cleaned and preconcentrated using an SPE method. Subsequently, the clean urine concentrate was injected on a preparative LC column, and conjugated valerolactones were obtained by MS-guided collection. Reconstituted fractions were further separated on an analytical LC column, and valerolactone fractions were collected in an MS-guided manner. These were reconstituted in methanol-d(4) and identified and quantified using 1D and 2D homo- and hetereonuclear NMR experiments (at a field strength of 14.1 T), in combination with mass spectrometry. This resulted in the full spectral H-1 and C-13 NMR assignments of five conjugated valerolactones. These metabolites were collected in quantities of 8-160 mu g and purities of 70-91%. The SPE-prepLC-MS-LC-MS-NMR workflow is suitable for isolating metabolites that occur at sub-mu M concentrations in a complex biofluid such as urine. The workflow also provides an alternative for cumbersome and expensive de novo synthesis of tea metabolites for testing in bioactivity assays or for use as authentic analytical standards for quantification by mass spectrometry.
机译:红茶的健康益处已与多酚代谢产物有关,其靶向人体中的特异性作用方式。解开潜在机制的主要瓶颈是这些代谢物的制备分离,它们妨碍了它们的结构阐明和对体外生物活性的评估。实施固相萃取(SPE) - 制备液相色谱(PROPLC)-MS-LC-MS-NMR工作流,用于制备从黑茶叶消费者尿液中的Cacinin基多酚的共轭戊酮代谢物的分离。首先,使用SPE方法清洁和预先浓缩尿液。随后,在制备LC柱上注射干净的尿液浓缩物,通过MS引导收集获得缀合的戊酮。将重构的级分进一步分离在分析LC柱上,并以MS引导的方式收集戊内酮级分。将它们重构在甲醇-D(4)中,并使用1D和2D同源和HetereOnu-old NMR实验(以14.1t的场强)鉴定和定量,与质谱相结合。这导致全光谱H-1和C-13 NMR分配的五种共轭戊酮。这些代谢物以8-160μg和70-91%的纯度收集。 SPE-Preplc-MS-LC-MS-NMR工作流程适于分离在诸如尿液中的复杂生物流体中以亚μM浓度发生的代谢物。工作流还提供了繁琐且昂贵的茶代谢物合成的替代方案,用于在生物活性测定中测试或用作质谱法定量的真实分析标准。

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