首页> 外文期刊>Metabolites >Compound Characterization and Metabolic Profile Elucidation after In Vitro Gastrointestinal and Hepatic Biotransformation of an Herniaria hirsuta Extract Using Unbiased Dynamic Metabolomic Data Analysis
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Compound Characterization and Metabolic Profile Elucidation after In Vitro Gastrointestinal and Hepatic Biotransformation of an Herniaria hirsuta Extract Using Unbiased Dynamic Metabolomic Data Analysis

机译:使用无偏见的动态代谢组数据分析在体外胃肠道和肝脏生物转化后的复合表征和代谢曲线阐明

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Herniaria hirsuta L. (Caryophyllaceae) is used for treatment of urinary stones and as a diuretic. Little is known about the active compounds and the mechanism of action. The phytochemical composition of H. hirsuta was comprehensively characterized using UHPLC-UV-HRMS (Ultrahigh-Performance Liquid Chromatography-Ultraviolet-High Resolution Mass Spectrometry) data. An in vitro gastrointestinal model was used to simulate biotransformation, which allowed the monitoring of the relative abundances of individual compounds over time. To analyze the longitudinal multiclass LC–MS data, XCMS, a platform that enables online metabolomics data processing and interpretation, and EDGE, a statistical method for time series data, were used to extract significant differential profiles from the raw data. An interactive Shiny app in R was used to rate the quality of the resulting features. These ratings were used to train a random forest model. The most abundant aglycone after gastrointestinal biotransformation was subjected to hepatic biotransformation using human S9 fractions. A diversity of compounds was detected, mainly saponins and flavonoids. Besides the known saponins, 15 new saponins were tentatively identified as glycosides of medicagenic acid, acetylated medicagenic acid and zanhic acid. It is suggested that metabolites of phytochemicals present in H. hirsuta , most likely saponins, are responsible for the pharmaceutical effects. It was observed that the relative abundance of saponin aglycones increased, indicating loss of sugar moieties during colonic biotransformation, with medicagenic acid as the most abundant aglycone. Hepatic biotransformation of this aglycone resulted in different metabolites formed by phase I and II reactions.
机译:Herniaria hirsuta L.(蛛网苜蓿)用于治疗泌尿系统和一种利尿剂。对活性化合物和作用机制令人着眼熟。使用UHPLC-UV-HRMS(超高效液相色谱 - 紫外 - 高分辨率质谱)数据综合表征H. hirsuta的植物化学组合物。使用体外胃肠道模型来模拟生物转化,其允许监测各个化合物的相对丰度。为了分析纵向多种多组LC-MS数据,XCMS,一个能够实现在线代谢组数据的平台,以及时间序列数据的统计方法,用于从原始数据中提取显着的差异配置。 R中的一个交互式闪亮应用程序用于评估结果功能的质量。这些评级用于培训随机林模型。使用人的S9级分对胃肠道生物转化后的最丰富的糖苷酮进行肝脏生物转化。检测到多样化的化合物,主要是皂苷和黄酮类化合物。除了已知的皂甙,暂时鉴定为25个新的皂苷作为药物酸,乙酰化药物酸和Zanhic酸的糖苷。建议,H. hirsuta中存在的植物化学品的代谢产物最有可能皂苷,负责药物效应。观察到皂苷糖酮的相对丰度增加,表明结肠生物转化期间的糖部分丧失,用药物酸作为最丰富的糖苷酮。该糖苷酮的肝脏生物转化导致通过相I和II反应形成的不同代谢物。

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