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采用超高效液相色谱-高分辨率LTQ-轨道阱质谱联用技术分析栀子在人血浆和尿液中的代谢谱。

Metabolic profile of Fructus Gardeniae in human plasma and urine using ultra high-performance liquid chromatography coupled with high-resolution LTQ-orbitrap mass spectrometry.

作者信息

Wang Gao-Wa, Bao Burenbatu, Han Zhi-Qiang, Han Qing-Yu, Yang Xiu-Lan

机构信息

a Affiliated Hospital of Inner Mongolia University for the Nationalities , Tongliao , China and.

b Medical Institution Conducting Clinical Trials for Human Used Drug of Affliated Hospital of Inner Mongolia University for the Nationalities , Tongliao , China.

出版信息

Xenobiotica. 2016 Oct;46(10):901-12. doi: 10.3109/00498254.2015.1132793. Epub 2016 Jan 10.

Abstract
  1. In China, Fructus Gardeniae was used as a traditional Chinese medicine (TCM) with a wide array of biological activities. The bioactive components identified in Fructus Gardeniae mainly included iridoids, flavonids, pigments, and so on. Among them, iridoids were regarded as important compounds in Fructus Gardeniae. Though analyses of the constituents in biological samples after oral administration of Fructus Gardeniae effective fraction or its active compounds have been reported, few efforts have been made to investigate the metabolic profile of Fructus Gardeniae in humans. In this study, the constituents and metabolites of Fructus Gardeniae in human blood and urine after oral administration of Fructus Gardeniae were investigated using ultra high-performance liquid chromatography (UHPLC) coupled with high-resolution LTQ-Orbitrap mass spectrometery. 2. Totally, 14 constituents (two parent compounds and 12 metabolites) of Fructus Gardeniae were identified in human plasma and urine either by comparing the retention time and mass spectrometry data with that of reference compounds or by the accurate high-resolution MS/MS data of the chemicals. The compounds identified were mainly iridoid glycosides such as geniposide and the derivatives of genipin-O-glucuronide. Among them, 11 metabolites were detected in human plasma and urine while the other three metabolites including geniposidic acid (M1), demethylation derivative of genipin-O-glucuronide (M2), and dehydration product of mono-hydroxylated genipin-O-glucuronide (M9) were only discovered in human urine. Further, the possible metabolic pathways of Fructus Gardeniae in vivo were proposed and the peak area-time curve of the most abundant metabolite genipin-O-glucuronide (M13) in human plasma after oral administration of Fructus Gardeniae was depicted. The results suggested that a metabolic difference existed between rats and humans. 3. The results obtained in the present research would provide basic information to understand the metabolic profile of Fructus Gardeniae in humans and explore the chemicals responsible for the hepatotoxicity of Fructus Gardeniae in vivo. Moreover, it would be beneficial for us to further study the pharmacokinetic behavior of Fructus Gardeniae in humans systematically.
摘要
  1. 在中国,栀子作为一种具有多种生物活性的传统中药被使用。栀子中鉴定出的生物活性成分主要包括环烯醚萜类、黄酮类、色素等。其中,环烯醚萜类被认为是栀子中的重要化合物。虽然已有关于口服栀子有效部位或其活性化合物后生物样品中成分分析的报道,但对栀子在人体内的代谢概况研究较少。在本研究中,采用超高效液相色谱(UHPLC)结合高分辨率LTQ - Orbitrap质谱法,对口服栀子后人体血液和尿液中栀子的成分及代谢产物进行了研究。2. 通过将保留时间和质谱数据与参考化合物进行比较,或根据化学物质精确的高分辨率MS/MS数据,共在人体血浆和尿液中鉴定出14种栀子成分(两种母体化合物和12种代谢产物)。鉴定出的化合物主要是环烯醚萜苷类,如栀子苷和京尼平 - O - 葡萄糖醛酸苷的衍生物。其中,11种代谢产物在人体血浆和尿液中被检测到,而另外三种代谢产物,包括栀子酸(M1)、京尼平 - O - 葡萄糖醛酸苷的去甲基化衍生物(M2)和单羟基化京尼平 - O - 葡萄糖醛酸苷的脱水产物(M9)仅在人体尿液中被发现。此外,还提出了栀子在体内可能的代谢途径,并描绘了口服栀子后人体血浆中最丰富的代谢产物京尼平 - O - 葡萄糖醛酸苷(M13)的峰面积 - 时间曲线。结果表明大鼠和人类之间存在代谢差异。3. 本研究获得的结果将为了解栀子在人体内的代谢概况以及探索栀子体内肝毒性的化学物质提供基础信息。此外,这将有助于我们进一步系统地研究栀子在人体内的药代动力学行为。

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