鸢尾属植物:超临界二氧化碳萃取和串联质谱法

M. Razgonova, Andrey Shamilevich Sabitov, Yulia N Zinchenko, T. Senotrusova, Natalya Gavroshevna Li, Ekaterina Anatolyevna Vitomskova, K. Golokhvast
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引用次数: 0

摘要

采用超临界流体技术从 Ribes fragrans Pallas 的叶片中提取生物活性物质。事实证明,超临界流体技术是最有效的萃取方法,能获得最高的香叶提取物代谢组成分。研究了几种实验条件,压力范围为 50-300 巴,液相中助溶剂乙醇的用量为 2.5%,温度范围为 31-70 °C。对于香叶来说,最有效的萃取条件是:压力 200 巴,温度 55 °C。香叶的二氧化碳萃取物中含有各种多酚化合物和其他具有重要生物活性的化学组化合物。本研究首次对香叶超临界萃取物的代谢组进行了研究。采用串联质谱法(HPLC-ESI-离子阱)检测目标分析物。采用四级离子分离模式,在香叶提取物中鉴定出 79 种不同的生物活性成分。在 Ribes 属植物中首次鉴定出了 20 种多酚类化合物和 12 种其他化学类化合物。
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RIBES FRAGRANS PALLAS: SUPERCRITICAL CO2 EXTRACTION AND TANDEM MASS SPECTROMETRY
Supercritical fluid technology was used to obtain bioactive substances from leaves of Ribes fragrans Pallas. The supercritical fluid technology proved to be the most effective type of extraction, giving the highest yield of metabolome composition of R. fragrans. Several experimental conditions were investigated in the pressure range 50–300 bar, with the used volume of co-solvent ethanol in the amount of 2.5% in the liquid phase at a temperature in the range of 31–70 °C. The most effective extraction conditions are: pressure 200 Bar and temperature 55 °C for leaves of R. fragrans. The CO2-extract of leaves of R. fragrans contain various polyphenolic compounds and compounds of other chemical groups with valuable biological activity. For the first time, the metabolome of supercritical extracts of R. fragrans leaves was studied in this research. Tandem mass-spectrometry (HPLC-ESI – ion trap) was applied to detect target analytes. The four-stage ion separation mode was implemented 79 different bioactive components have been identified in R. fragrans extracts. Twenty chemical compounds from polyphenol group and twelve chemical compounds from other chemical groups were identified for the first time in genus Ribes.
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