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二氧化碳膨胀液体:从南非药用植物中提取槲皮素的有效溶剂。

Carbon dioxide expanded liquid: an effective solvent for the extraction of quercetin from South African medicinal plants.

作者信息

Pilařová Veronika, Kuda Lukáš, Vlčková Hana Kočová, Nováková Lucie, Gupta Shubhpriya, Kulkarni Manoj, Švec František, Van Staden Johannes, Doležal Karel

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Heyrovského 1203, 50005, Hradec Králové, Czech Republic.

Research Centre for Plant Growth and Development, School of Life Sciences, University of KwaZulu-Natal, Pietermaritzburg, South Africa.

出版信息

Plant Methods. 2022 Jun 23;18(1):87. doi: 10.1186/s13007-022-00919-6.

Abstract

BACKGROUND

Quercetin is one of the most important bioflavonoids having positive effects on the biological processes and human health. Typically, it is extracted from plant matrices using conventional methods such as maceration, sonication, infusion, and Soxhlet extraction with high solvent consumption. Our study aimed to optimize the environmentally friendly carbon dioxide-based method for the extraction of quercetin from quince fruit with an emphasis on extraction yield, repeatability, and short extraction time.

RESULTS

A two-step design of experiments was used for the optimization of the key parameters affecting physicochemical properties, including CO/co-solvent ratio, co-solvent type, temperature, and pressure. Finally, gas expanded liquid combining CO/ethanol/HO in a ratio of 10/81/9 (v/v/v) provided the best extraction yield. Extraction temperature 66 °C and pressure 22.3 MPa were the most suitable conditions after careful optimization, although both parameters did not significantly affect the process. It was confirmed by experiments in various pressure and temperature conditions and statistical comparison of obtained data. The optimized extraction procedure at a flow rate of 3 mL/min took 30 min. The repeatability of the extraction method exhibited an RSD of 20.8%.

CONCLUSIONS

The optimized procedure enabled very fast extraction in 30 min using environmentally friendly solvents and it was successfully applied to 16 different plant samples, including 14 bulbs and 2 fruits from South Africa. The quercetin content in extracts was quantified using ultra-high performance liquid chromatography (UHPLC) with tandem mass spectrometry. UHPLC hyphenated with high-resolution mass spectrometry was used to confirm chemical identity of quercetin in the analyzed samples. We quantified quercetin in 11 samples of all 16 tested plants. The quercetin was found in Agapanthus praecox from the Amaryllidaceae family and its presence in this specie was reported for the first time.

摘要

背景

槲皮素是最重要的生物类黄酮之一,对生物过程和人类健康具有积极影响。通常,它是使用诸如浸渍、超声处理、浸泡和索氏提取等传统方法从植物基质中提取的,这些方法溶剂消耗量大。我们的研究旨在优化基于二氧化碳的环保方法,从温柏果实中提取槲皮素,重点关注提取率、重复性和较短的提取时间。

结果

采用两步实验设计来优化影响物理化学性质的关键参数,包括二氧化碳/共溶剂比例、共溶剂类型、温度和压力。最后,二氧化碳、乙醇和水以10/81/9(体积/体积/体积)的比例组合形成的气体膨胀液体提供了最佳提取率。经过仔细优化,提取温度66°C和压力22.3MPa是最合适的条件,尽管这两个参数对该过程的影响并不显著。通过在各种压力和温度条件下的实验以及对所得数据的统计比较得到了证实。在流速为3mL/min时,优化后的提取过程耗时30分钟。该提取方法的重复性相对标准偏差为20.8%。

结论

优化后的方法使用环保溶剂在30分钟内实现了非常快速的提取,并且成功应用于16种不同的植物样品,包括来自南非的14种球茎植物和2种果实。提取物中的槲皮素含量使用超高效液相色谱(UHPLC)与串联质谱法进行定量。UHPLC与高分辨率质谱联用用于确认分析样品中槲皮素的化学特性。我们对所有16种测试植物中的11个样品进行了槲皮素定量。在石蒜科的白花紫露草中发现了槲皮素,并且首次报道了该物种中存在槲皮素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94c5/9219150/e23df05469c9/13007_2022_919_Fig1_HTML.jpg

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