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植物药的化学鉴定与物种形成:利用气相色谱/四极杆飞行时间质谱联用仪和化学计量学的研究

Chemical Authentication and Speciation of Botanicals: An Investigation Utilizing GC/Q-ToF and Chemometrics.

作者信息

Lee Joseph, Wang Mei, Zhao Jianping, Avula Bharathi, Chittiboyina Amar G, Li Jing, Wu Charles, Khan Ikhlas A

机构信息

National Center for Natural Products Research, School of Pharmacy, University of Mississippi, University City, MS 38677, USA.

Natural Products Utilization Research Unit, Agricultural Research Service, United States Department of Agriculture, University City, MS 38677, USA.

出版信息

Foods. 2022 Jul 19;11(14):2132. doi: 10.3390/foods11142132.

Abstract

Members of the genus are used as culinary herbs and are prized for their purported medicinal attributes. Since physiological effects can vary widely between species of , it is of great importance to accurately identify botanical material to ensure safety for consumers. In the present study, an in-depth chemical investigation is performed utilizing GC/Q-ToF combined with chemometrics. Twenty-four authentic plant samples representing five commonly used species, . , , , , and , are analyzed using a GC/Q-ToF technique. High-resolution spectral data are employed to construct a sample class prediction (SCP) model followed by principal component analysis (PCA) and partial least square discriminant analysis (PLS-DA). This model demonstrates 100% accuracy for both prediction and recognition abilities. Additionally, the marker compounds present in each species are identified. Furthermore, to reduce the time required and increase the confidence level for compound identification and the classification of different species, a personal compound database and library (PCDL) containing marker and characteristic compounds is constructed. By combining GC/Q-ToF, chemometrics, and PCDL, the unambiguous identification of botanicals is achieved. This high-throughput method can be utilized for species specificity and to probe the overall quality of various -based products.

摘要

该属的成员被用作烹饪香草,并因其所谓的药用特性而备受珍视。由于该属不同物种之间的生理效应差异很大,准确识别植物材料以确保消费者安全至关重要。在本研究中,利用气相色谱/四极杆飞行时间质谱联用(GC/Q-ToF)结合化学计量学进行了深入的化学研究。使用GC/Q-ToF技术分析了代表五种常用该属物种(即[物种名称1]、[物种名称2]、[物种名称3]、[物种名称4]和[物种名称5])的24个真实植物样本。利用高分辨率光谱数据构建样本类别预测(SCP)模型,随后进行主成分分析(PCA)和偏最小二乘判别分析(PLS-DA)。该模型在预测和识别能力方面均显示出100%的准确率。此外,还鉴定了每个物种中存在的标记化合物。此外,为了减少所需时间并提高化合物鉴定和不同该属物种分类的置信度,构建了一个包含标记和特征化合物的个人化合物数据库和库(PCDL)。通过结合GC/Q-ToF、化学计量学和PCDL,实现了对该属植物的明确鉴定。这种高通量方法可用于物种特异性研究,并探究各种基于该属植物的产品的整体质量。

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