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薄层色谱法与共晶流动相——初步结果。

Thin-layer chromatography with eutectic mobile phases-preliminary results.

机构信息

Department of Pharmacognosy and Herbal Medicines, Wroclaw Medical University, Borowska 211a, 50-556, Wrocław, Poland.

出版信息

J Chromatogr A. 2020 Jun 21;1621:461044. doi: 10.1016/j.chroma.2020.461044. Epub 2020 Mar 14.

Abstract

The presented paper is the first to show thin layer chromatography (TLC) analysis based on eutectic mobile phases (Deep Eutectic Solvents - DES). During the experiment 25 eutectic mixtures were investigated for their chromatographic properties. Most of them belong to the natural deep eutectic solvents (NADES) group. Also, new eutectic liquids based on phenolics and terpenes, not previously employed in analytical practice, were tested. The eutectic liquids were investigated as pure or diluted with solvents used in chromatographic routine: methanol, water, acetone, chloroform or diethyl ether. The analyses were carried out using classic and high performance silica gel plates. The working solution was a mixture of five alkaloids found in genus Chelidonium, namely sanguinarine, coptisine, chelerythrine, chelidonine, and berberine, with UV light detection of 366 nm. This report proves that eutectic TLC is possible and that the eutectic interactions play a crucial role in the separation process. In most of the tested modifications at least partial separation was achieved. The most successful mobile phase, which enabled separation of all the tested alkaloids, was the equimolar mixture of menthol and phenol with a 35% addition of methanol. The system was also effective in separating alkaloids in the real Chelidonium maius extract sample.

摘要

本文首次展示了基于共晶流动相(深共晶溶剂 - DES)的薄层色谱(TLC)分析。在实验中,研究了 25 种共晶混合物的色谱性质。其中大多数属于天然深共晶溶剂(NADES)组。此外,还测试了以前未在分析实践中使用的基于酚类和萜烯的新共晶液体。共晶液体被用作纯溶剂或用色谱常规中使用的溶剂稀释:甲醇、水、丙酮、氯仿或乙醚。使用经典和高性能硅胶板进行分析。工作溶液是五种存在于Chelidonium 属中的生物碱的混合物,即血根碱、黄连碱、白屈菜红碱、白屈菜定和小檗碱,用 366nm 的紫外光检测。本报告证明了共晶 TLC 是可行的,并且共晶相互作用在分离过程中起着至关重要的作用。在大多数测试的变体中,至少实现了部分分离。最成功的流动相是薄荷醇和苯酚的等摩尔混合物,其中添加了 35%的甲醇,它能够分离所有测试的生物碱。该系统在分离真实的 Chelidonium maius 提取物样品中的生物碱方面也非常有效。

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