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首页> 外文期刊>Analytical methods >Optimizing the supercritical carbon dioxide extraction of sweet cherry (Prunus aviumL.) leaves and UPLC-MS/MS analysis
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Optimizing the supercritical carbon dioxide extraction of sweet cherry (Prunus aviumL.) leaves and UPLC-MS/MS analysis

机译:优化甜樱桃(Prunus Aviuml。)叶和UPLC-MS / MS分析的超临界二氧化碳提取

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To study the application value of sweet cherry leaves before abscission, a supercritical carbon dioxide (SFE-CO2) extraction method was established for sweet cherry (Prunus aviumL.) leaves. The extraction temperature, pressure and time were optimized with a Box-Behnken design, and the optimal conditions were 43 degrees C, 30 MPa, and 120 min, resulting in a yield of 2.52 +/- 0.261% (w/w), which agrees well with the predicted value. The yield of the sweet cherry leaf extracts obtained by methanol solvent extraction is 2.03% (w/w); the SFE-CO(2)extraction method was more efficient and had a higher yield than the methanol solvent extraction method, and the adverse effects of organic solvent residues and high temperatures on the product during traditional solvent extraction were avoided, resulting in a higher quality product. UPLC-MS/MS in negative ion mode provided 56 identifiable chromatographic peaks, including those of 31 acids (13.25%), 5 sugars (15.94%), 2 alcohols (6.19%), and 18 other compounds (3.86%). The fragmentation pathways of the 7 main components in the sweet cherry leaf extract were identified. The carbohydrates and bioactive substances in the extracts obtained from sweet cherry leaves suggested the potential use of sweet cherry leaves in the food and medical industries.
机译:为了在脱落前研究甜樱桃叶的施用价值,为甜樱桃(Prunus Aviuml)建立了一种超临界二氧化碳(SFE-CO2)提取方法。用盒-Behnken设计进行了优化的提取温度,压力和时间,最佳条件为43℃,30MPa和120分钟,产生2.52 +/- 0.261%(W / W)的产率,与预测值吻合很好。通过甲醇溶剂萃取获得的甜樱桃叶提取物的产率为2.03%(w / w); SFE-CO(2)萃取方法更有效并且具有比甲醇溶剂萃取方法更高的产率,避免了在传统溶剂萃取过程中产物对产品的不利影响,得到更高的质量产品。负离子模式中的UPLC-MS / MS提供56个可识别的色谱峰,包括31个酸(13.25%),5糖(15.94%),2醇(6.19%)和18个其他化合物(3.86%)。鉴定了甜樱桃叶提取物中的7个主要成分的碎片途径。从甜樱桃叶中获得的萃取液中的碳水化合物和生物活性物质表明,甜樱桃叶在食品和医疗行业中的潜在使用。

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