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离子液体在微波辅助提取主要地衣酚类化合物中的效率和选择性:一种可规模化的离子液体回收工艺。

Efficiency and selectivity of ionic liquids in microwave-assisted extraction of major lichen phenolic compounds: a scalable process with recycling of ionic liquids.

机构信息

CNRS, ISCR UMR 6226, University of Rennes, Rennes, France.

KAUST Catalysis Center (KCC), King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Phytochem Anal. 2021 Jul;32(4):592-600. doi: 10.1002/pca.3008. Epub 2020 Nov 4.

Abstract

INTRODUCTION

Pseudevernia furfuracea, a lichen used classically for cosmetic applications, contains interesting metabolites possessing antimicrobial and anti-inflammatory or antioxidant properties.

OBJECTIVES

Ionic liquid combined to microwave-assisted extraction (IL-MAE) was successfully applied for metabolites extraction from Pseudevernia furfuracea.

MATERIALS AND METHODS

Three imidazolium and pyridinium-based ionic liquids (ILs): 1,3-dimethylimidazolium methylsulphate [C C Im][MeSO ], 1-ethyl-3-methylimidazolium ethylsulphate [C C Im][EtSO ], and N-ethylpyridinium ethylsulphate [C Py][EtSO ] were assessed for this process. The efficiency of the extraction method was evaluated using thin-layer chromatography (TLC) coupled to a Camag® spectrophotodensitometer and using high-performance liquid chromatography (HPLC) analysis.

RESULTS

ILs under MAE showed extraction time efficiency (15 min vs. 24 h for conventional heating) and high selectivity in extracting the targeted metabolites: atranorin (AT), methyl-β-orcinol carboxylate (MOC), fumarprotocetraric acid (Fum. Ac.), and physodic acid (Phys. Ac.) despite the increased degradation of AT under MAE. We showed a tunable selectivity of ILs towards extracting metabolites by changing anion or cation due to the modification of the interaction between the IL and the metabolites. While [C Py][EtSO ] was the most efficient IL and could extract all the targeted metabolites, [C C Im][EtSO ] was the most selective. It fully extracted AT and partially Fum. Ac. Moreover, the lichen prepared by mixing procedure provided AT and Fum. Ac. more than the milled one. A 100 times scale-up extraction was successfully performed on mixed samples with full IL recycling after back extraction.

CONCLUSION

IL-MAE is reliable for lichen metabolites extraction. The method is reproducible, scalable, with possible IL recycling, opening the door for potential industrial applications.

摘要

简介

石黄皮,一种经典的用于化妆品应用的地衣,含有具有抗菌、抗炎或抗氧化特性的有趣代谢物。

目的

成功地将离子液体与微波辅助提取(IL-MAE)结合用于从地衣 Pseudevernia furfuracea 中提取代谢物。

材料和方法

评估了三种基于咪唑啉和吡啶鎓的离子液体(ILs):1,3-二甲基咪唑鎓甲基硫酸盐 [CC Im][MeSO4]、1-乙基-3-甲基咪唑鎓乙基硫酸盐 [CC Im][EtSO4]和 N-乙基吡啶鎓乙基硫酸盐 [CPy][EtSO4]。使用薄层色谱(TLC)与 Camag®分光光度计联用和高效液相色谱(HPLC)分析评估提取方法的效率。

结果

在 MAE 下,IL 表现出提取时间效率(15 分钟与传统加热 24 小时相比)和对目标代谢物的高选择性:对映酮(AT)、甲基-β-岩白菜素羧酸酯(MOC)、富马酸原塔酸(Fum. Ac.)和 physodic 酸(Phys. Ac.),尽管 MAE 下 AT 的降解增加。我们表明,通过改变阴离子或阳离子,IL 对提取代谢物的选择性是可调的,这是由于 IL 与代谢物之间相互作用的改变。虽然 [CPy][EtSO4]是最有效的 IL,可以提取所有目标代谢物,但 [CC Im][EtSO4]是最具选择性的。它完全提取 AT 并部分提取 Fum. Ac.。此外,混合程序制备的地衣比研磨的地衣提供更多的 AT 和 Fum. Ac.。混合样品的 100 倍放大提取成功完成,IL 完全回收后进行反萃取。

结论

IL-MAE 是可靠的地衣代谢物提取方法。该方法可重复使用,具有可扩展性,可能进行 IL 回收,为潜在的工业应用开辟了道路。

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