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Quality Analysis of American Ginseng Cultivated in Heilongjiang Using UPLC-ESI−-MRM-MS with Chemometric Methods

机译:UPLC-ESI--MRM-MS-化学计量法在黑龙江省栽培的西洋参质量分析

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摘要

American ginseng (Panax quinquefolium) has long been cultivated in China for the function food and medicine. Here, ultra-high performance liquid chromatography was coupled with electrospray ionization and triple quadrupole mass spectrometry (UPLC-ESI-TQ-MS) for simultaneous detection of 22 ginsenosides in American ginseng cultivated in Mudanjiang district of Heilongjiang. The extraction conditions also were optimized by a Box Behnken design experiment. The optimized result was 31.8 mL/g as ratio of liquid to raw materials, 20.3 min of extraction time, and 235.0 W of extraction powers. The quantitative MS parameters for these 22 compounds were rapidly optimized by single factor experiments employing UPLC-ESI-multiple reaction monitoring or multiple ion monitoring (MRM/MIM) scans. Furthermore, the established UPLC-ESI-MRM-MS method showed good linear relationships (R2 > 0.99), repeatability (RSD < 3.86%), precision (RSD < 2.74%), and recovery (94–104%). This method determined 22 bioactive ginsenosides in different parts of the plant (main roots, hairy roots, rhizomes, leaves, and stems) and growth years (one year to four years) of P. quinquefolium. The highest total content of the 22 analytes was in the hairy roots (1.3 × 105 µg/g) followed by rhizomes (7.1 × 104 µg/g), main roots (6.5 × 104 µg/g), leaves (4.2 × 104 µg/g), and stems (2.4 × 104 µg/g). Finally, chemometric methods, hierarchical clustering analysis (HCA) and partial least squares discrimination analysis (PLS-DA), were successfully used to classify and differentiate American ginseng attributed to different growth years. The proposed UPLC-ESI-MRM-MS coupled with HCA and PLS-DA methods was elucidated to be a simple and reliable method for quality evaluation of American ginseng.
机译:西洋参(Panax quinquefolium)早已在中国种植,用于食品和药品的功能。在这里,超高效液相色谱结合电喷雾电离和三重四极杆质谱(UPLC-ESI - -TQ-MS)可以同时检测黑龙江牡丹江地区种植的西洋参中的22种人参皂苷。 。提取条件也通过Box Behnken设计实验进行了优化。优化的结果是:液体与原料的比例为31.8 mL / g,萃取时间为20.3分钟,萃取功率为235.0W。通过使用UPLC-ESI --多反应监测或多离子监测(MRM / MIM)扫描的单因素实验,快速优化了这22种化合物的定量MS参数。此外,已建立的UPLC-ESI - -MRM-MS方法显示出良好的线性关系(R 2 5 µg / g),其次是根茎(7.1×10 4 µg / g),主要根(6.5×10 4 µg / g),叶(4.2×10 4 µg / g)和茎(2.4×10 4 µg / g)。最后,化学计量学方法,层次聚类分析(HCA)和偏最小二乘判别分析(PLS-DA)已成功用于分类和区分归因于不同生长年的西洋参。提出的UPLC-ESI - -MRM-MS结合HCA和PLS-DA方法被阐明是一种简单而可靠的西洋参质量评估方法。

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