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Countercurrent assisted quantitative recovery of metabolites from plant-associated natural deep eutectic solvents

机译:从植物相关的天然深共熔溶剂中逆流辅助定量回收代谢物

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NAtural Deep Eutectic Solvents (NADES) are chemically simple but physiologically important plant constituents that exhibit unique solubilizing properties of other metabolites, including bioactive constituents. The high polarity of NADES introduces a challenge in the ability of conventional solid-support based chromatography to recover potential bioactive metabolites. This complicates the systematic explanation of the NADES' functions in botanical extracts. The present study utilizes countercurrent separation (CCS) methodology to overcome the recovery challenge. To demonstrate its feasibility, Glucose-Choline chloride-Water (GCWat, 2:5:5, mole/mole) served as a model NADES, and four widely used marker flavonoids with different polarities (rutin, quercetin, kaempferol, and daidzein) were chosen as model target analytes. In order to prepare GCWat with high consistency, a water drying study was performed. The unique capabilities of the recently introduced CherryOne system, offering volumetric phase metering, were used to monitor the CCS operations. The collected fractions were analyzed using UHPLC and NMR/quantitative NMR. CCS was able to recover the analytes from the NADES matrix with quantitative recoveries of 95.7%, 94.6%, 97.0%, and 96.7% for rutin, quercetin, kaempferol, and daidzein respectively. The CCS strategy enables recovery of target metabolites from NADES-containing crude extracts as well as from other chemical mixtures, and moreover offers a means of using NADES as environmentally friendly extraction solvents. (C) 2016 Elsevier B.V. All rights reserved.
机译:自然深层共晶溶剂(NADES)是化学上简单但具有重要生理意义的植物成分,具有其他代谢物(包括生物活性成分)独特的增溶特性。 NADES的高极性对传统的基于固体支持物的色谱法回收潜在生物活性代谢物的能力提出了挑战。这使植物提取物中NADES功能的系统解释变得复杂。本研究利用逆流分离(CCS)方法来克服回收挑战。为了证明其可行性,将葡萄糖-氯化胆碱-水(GCWat,2:5:5,摩尔/摩尔)用作模型NADES,并使用了四种极性不同但广泛使用的标记黄酮(芦丁,槲皮素,山奈酚和黄豆苷元)。选择作为模型目标分析物。为了制备高浓度的GCWat,进行了水干燥研究。最近推出的CherryOne系统的独特功能(提供体积相位计量)被用来监视CCS操作。使用UHPLC和NMR /定量NMR分析收集的级分。 CCS能够从NADES基质中回收分析物,芦丁,槲皮素,山奈酚和黄豆苷元的定量回收率分别为95.7%,94.6%,97.0%和96.7%。 CCS策略可从含有NADES的原油提取物中以及从其他化学混合物中回收目标代谢物,而且还提供了将NADES用作环保提取溶剂的方法。 (C)2016 Elsevier B.V.保留所有权利。

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