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基于标志物和代谢组学方法评估储存条件对金印草植物的影响的化学评价。

Chemical Evaluation of the Effects of Storage Conditions on the Botanical Goldenseal using Marker-based and Metabolomics Approaches.

机构信息

Department of Chemistry and Biochemistry, University of North Carolina at Greensboro, Greensboro, NC.

Huck Institute of the Life Sciences, Pennsylvania State University, University Park, PA.

出版信息

Yale J Biol Med. 2020 Jun 29;93(2):265-275. eCollection 2020 Jun.

Abstract

commonly known as goldenseal, is a botanical native to the southeastern United States that has been used for the treatment of infection. The activity of goldenseal is often attributed to the presence of alkaloids (cyclic, nitrogen-containing compounds) present within its roots. Chemical components of botanical supplements like goldenseal may face degradation if not stored properly. The purpose of the research was to analyze the stability of known and unknown metabolites of during exposure to different storage conditions using mass spectrometry. Three abundant metabolites of , berberine, canadine, and hydrastine, were chosen for targeted analysis, and the stability of unknown metabolites was evaluated using untargeted metabolomics. The analysis and evaluation of samples were performed utilizing LC-MS and Principal Component Analysis (PCA). The research project focused on identifying the chemical changes in the metabolite content of under different temperature conditions (40°C ± 5°C, 20°C ± 5°C , and 4°C ± 5°C), different light:dark (hr:hr) cycles (16:8, 12:12, and 0:24), and different sample conditions (powdered roots versus whole roots) over a six month period. The results of this 6-month study revealed that the storage conditions evaluated had no significant effects on the chemical composition of roots. Hence, as long as roots are stored within the storage conditions tested in the study, no significant changes in chemical compositions of metabolites are expected.

摘要

俗称白毛獐,是原产于美国东南部的一种植物,用于治疗感染。白毛獐的活性通常归因于其根部存在的生物碱(环状、含氮化合物)。如果植物补充剂(如白毛獐)的化学物质没有得到妥善储存,可能会面临降解。该研究的目的是使用质谱分析来分析在不同储存条件下暴露时 的已知和未知代谢物的稳定性。选择了 的三种丰富的代谢物,小檗碱、加拿大麻碱和盐酸小檗碱,进行靶向分析,并使用非靶向代谢组学评估未知代谢物的稳定性。利用 LC-MS 和主成分分析(PCA)对 样品进行分析和评估。该研究项目专注于在不同温度条件(40°C ± 5°C、20°C ± 5°C 和 4°C ± 5°C)、不同光照:黑暗(小时:小时)周期(16:8、12:12 和 0:24)和不同样品条件(粉末根与完整根)下,确定不同条件下 代谢物含量的化学变化,为期六个月。这项为期 6 个月的研究结果表明,评估的储存条件对 根的化学成分没有显著影响。因此,只要 根储存在研究中测试的储存条件内,预计代谢物化学成分不会发生显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ae8/7309669/cc0a24a84444/yjbm_93_2_265_g01.jpg

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