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采用阶跃去耦 CMP-NMR 对多相非均相天然样品中的 C 进行定量分析。

C quantification in heterogeneous multiphase natural samples by CMP-NMR using stepped decoupling.

机构信息

Environmental NMR Centre, University of Toronto Scarborough, 1265 Military Trail, Toronto, ON, M1C 1A4, Canada.

Bruker BioSpin GmbH., Silberstreifen 4, 76287, Rheinstetten, Germany.

出版信息

Anal Bioanal Chem. 2018 Nov;410(27):7055-7065. doi: 10.1007/s00216-018-1306-1. Epub 2018 Aug 13.

Abstract

Many natural and environmental samples contain combinations of liquids, gels, and solids, yet quantification in the intact state and across multiple phases is highly challenging. Comprehensive multiphase nuclear magnetic resonance (CMP-NMR) combines all the capabilities of high-resolution magic angle spinning (HR-MAS), with the addition of full solids power handling, permitting all phases (i.e., mixtures of liquids, gels, and solids) to be studied and differentiated in intact samples without pre-treatment or extraction. Here, quantification in CMP-NMR is considered. As H NMR is considerably broadened in the solid-state, quantification is easier to achieve through C which can be observed easily in all the phases. Accurate C quantification requires effective H decoupling for all the phases, but each phase requires different decoupling conditions. To satisfy these conditions, a pulse sequence termed stepped decoupling is introduced. This sequence can be used to study all components under ideal decoupling conditions resulting in high-resolution spectra without truncation artifacts and provides accurate integrals of components in all phases. The approach is demonstrated on standards and then applied to natural samples including broccoli, soil, and Arabidopsis. The approach permits accurate quantification of chemical categories (for example total carbohydrates) as well as individual species (for example glucose). Further, as the samples are studied intact, volatile species such as methanol and ethylene which are normally hard to detect in plants can be easily quantified in Arabidopsis. Graphical abstract ᅟ.

摘要

许多天然和环境样本中包含液体、凝胶和固体的组合,但在完整状态和多个相之间进行定量分析极具挑战性。综合多相核磁共振(CMP-NMR)结合了高分辨率魔角旋转(HR-MAS)的所有功能,增加了全固体功率处理能力,允许在无需预处理或提取的情况下,对完整样品中的所有相(即液体、凝胶和固体的混合物)进行研究和区分。这里考虑了 CMP-NMR 中的定量分析。由于 H NMR 在固态中明显展宽,因此通过 C 更容易实现定量,C 可以在所有相中轻松观察到。准确的 C 定量需要对所有相进行有效的 H 去耦,但每个相都需要不同的去耦条件。为了满足这些条件,引入了一种称为分步去耦的脉冲序列。该序列可用于在理想去耦条件下研究所有组分,从而获得无截断伪影的高分辨率光谱,并为所有相中的组分提供准确的积分。该方法首先在标准品上进行了演示,然后应用于天然样品,包括西兰花、土壤和拟南芥。该方法允许对化学类别(例如总碳水化合物)以及单个物种(例如葡萄糖)进行准确的定量。此外,由于样品是完整研究的,通常难以在植物中检测到的甲醇和乙烯等挥发性物质可以在拟南芥中轻松定量。

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