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Classification of Cultivation Locations of Panax quinquefolius L Samples using High Performance Liquid Chromatography–Electrospray Ionization Mass Spectrometry and Chemometric Analysis

机译:采用高效液相色谱 - 电喷雾质谱法和化学计量学分析西洋参L个样本的栽培场所的分类

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摘要

Panax quinquefolius L (P. quinquefolius L) samples grown in the United States and China were analyzed with high performance liquid chromatography–mass spectrometry (HPLC–MS). Prior to classification, the two-way data sets were subjected to pretreatment including baseline correction and retention time (RT) alignment. Principal component analysis (PCA) and projected difference resolution (PDR) metrics were used to evaluate the data quality and the pretreatment effects. A fuzzy rule-building expert system (FuRES) classifier was used to classify the P. quinquefolius L samples grown in the United States and China with the optimized partial least-squares (o-PLS) classifier as the positively biased control method. A classification rate as high as 98 ± 3% with FuRES was obtained after baseline correction and RT alignment, which is equivalent to the result obtained by using the positively biased o-PLS control method (98 ± 3%). RT alignment improved the classification rates for both FuRES and o-PLS classifiers (18% improvement for the FuRES classification rate and 10% improvement for the o-PLS classification rate with baseline correction). From the rule obtained to classify the P. quinquefolius L samples grown in the United States and China, peaks were identified that can be prospective biomarkers for differentiating samples from different growth regions. HPLC–MS with chemometric analysis has the potential to be used as an authentication method for P. quinquefolius L grown in China and the United States.
机译:用高效液相色谱 - 质谱(HPLC-MS)分析美国和中国的SPAX Quinquefolius L(P. Quinquefolius L)样品。在分类之前,对双向数据集进行预处理,包括基线校正和保留时间(RT)对齐。主要成分分析(PCA)和投影差分分辨率(PDR)指标用于评估数据质量和预处理效果。模糊的规则建设专家系统(Fures)分类器用于对美国和中国种植的P. Quinquefolius L样品进行分类,利用优化的部分最小二乘(O-PLS)分类器作为正偏置的控制方法。基线校正和RT对准后获得高达98±3%的分类率,这相当于通过使用正偏置的O-PLS控制方法获得的结果(98±3%)。 RT对准改善了两个Fures和O-PLS分类器的分类速率(对于Fures分类率的18%改善,对基线校正的O-PLS分类率的10%改进)。从获得的规则中分类在美国和中国生长的P.奎因喹啉升样品中,鉴定了峰,这可以是用于区分来自不同生长区域的样品的前瞻性生物标志物。具有化学计量率分析的HPLC-MS具有在中国和美国成长的P. Quinquefolius L的验证方法的可能性。

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