Institute of Chemistry and Metabolomics, University of Lübeck, Ratzeburger Allee 160, 23562 Lübeck, Germany.
Anal Chem. 2021 Jan 26;93(3):1451-1457. doi: 10.1021/acs.analchem.0c03353. Epub 2020 Dec 28.
Investigating the metabolic profiles of solid sample materials with solution nuclear magnetic resonance (NMR) spectroscopy requires the extraction of these metabolites. This is commonly done by using two immiscible solvents such as water and chloroform for extraction. Subsequent solvent removal makes these extraction procedures very time-consuming. To shorten the preparation time of the NMR sample, the following protocol is proposed: the metabolites from a solid or liquid sample are extracted directly in the NMR tube, the NMR tube is centrifuged, and the metabolite profiles in the aqueous and organic phases are determined by using slice-selective proton NMR experiments. This protocol was tested with 11 black teas and 11 green teas, which can be easily distinguished by their metabolic profiles in the aqueous phase. As a test case for liquid samples, 29 milk samples were investigated. The geographical origin of the diaries where the milk was processed could not be determined unequivocally from the metabolic profiles of the hydrophilic metabolites; however, this was easily seen in the lipid profiles. As shown for the different test samples, the extraction protocol in combination with slice-selection NMR experiments is suitable for metabolic investigations. Because samples are rapidly processed, this approach can be used to explore different extraction strategies for metabolite isolation.
采用溶液核磁共振(NMR)光谱法研究固体样品的代谢谱需要提取这些代谢物。通常使用水和氯仿等两种不混溶的溶剂进行提取。随后去除溶剂会使这些提取程序非常耗时。为了缩短 NMR 样品的制备时间,提出了以下方案:将固体或液体样品中的代谢物直接在 NMR 管中提取,对 NMR 管进行离心,然后使用选择性质子 NMR 实验确定水相和有机相中的代谢物谱。该方案用 11 种红茶和 11 种绿茶进行了测试,它们的水相代谢谱很容易区分。作为液体样品的测试案例,研究了 29 个牛奶样品。从亲水性代谢物的代谢谱中无法明确确定牛奶加工地的地理位置;然而,在脂质谱中很容易看出这一点。对于不同的测试样品,表明该提取方案与切片选择 NMR 实验相结合适用于代谢研究。由于样品可以快速处理,因此该方法可用于探索不同的提取策略以进行代谢物分离。