首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Metabolic study of paeoniflorin and total paeony glucosides from Paeoniae Radix Rubra in rats by high‐performance liquid chromatography coupled with sequential mass spectrometry
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Metabolic study of paeoniflorin and total paeony glucosides from Paeoniae Radix Rubra in rats by high‐performance liquid chromatography coupled with sequential mass spectrometry

机译:高效液相色谱耦合促型质谱法从大鼠芍药植物和芍药葡萄糖苷的代谢研究

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摘要

Abstract A clear understanding of the metabolism of Traditional Chinese Medicines is extremely important in their rational clinical application and effective material foundation research. A novel and reliable strategy was performed to find more metabolites of paeoniflorin, determine the metabolites of total paeony glucosides (TPG) by means of determining those metabolites of paeoniflorin, and compare the metabolism differences between paeoniflorin and TPG by intragastric administration. This strategy was characterized as follows. Firstly, the rats were divided into two groups (the paeoniflorin group and the TPG group) to find differences in metabolism mechanisms between paeoniflorin and TPG. Secondly, UPLC‐FT‐ICR MS and UPLC‐Q‐TOF MS 2 were applied to obtain accurate molecular weight and structural information, respectively. Thirdly, the metabolites were tentatively identified by a combination of data‐processing methods including mass defect screening, characteristic neutral loss screening and product ion screening. Finally, a comparative study was employed in the metabolism of paeoniflorin and TPG. Based on the strategy, 18 metabolites of paeoniflorin (including four new compounds) and 11 metabolites of TPG (including two new compounds) were identified. In all of the identified metabolites of paeoniflorin, two metabolites in rat plasma, four metabolites in rat urine and six metabolites in rat feces were found for the first time after paeoniflorin administration. The results indicate that hydrolyzation of the ester bond and glucosidic band and conjugation with glucuronide were the major metabolic pathways of paeoniflorin. The metabolites of paeoniflorin and TPG in rat plasma, urine and feces have been detected for the first time after intragastric administration. The results may contribute to a better understanding of the metabolism mechanism and provide a scientific rationale for researching the material basis of paeoniflorin and TPG in vivo .
机译:摘要清楚地了解中药代谢在合理的临床应用和有效材料基础研究中非常重要。进行了一种新颖且可靠的策略来寻找芍药蛋白的更多代谢物,通过确定芍药蛋白的那些代谢物来确定总古藻属葡糖苷(TPG)的代谢物,并通过胃内给药比较芍药素和TPG之间的代谢差异。这种策略的特点是如下。首先,将大鼠分成两组(芍药蛋白基团和TPG组),以发现Paeoniflorin和TPG之间的代谢机制差异。其次,施加UPLC-FT-ICR MS和UPLC-Q-TOF MS 2以分别获得精确的分子量和结构信息。第三,通过数据处理方法的组合暂时鉴定代谢物,包括质量缺陷筛选,特征中性损失筛选和产物离子筛选。最后,在Paeoniflorin和TPG的代谢中使用了比较研究。基于该策略,鉴定了18种芍药蛋白的代谢物(包括四种新化合物)和11种TPG(包括两种新化合物)的11代谢物。在芍药苷的所有鉴定的代谢物中,大鼠血浆中的两种代谢物,在PaeoNiflorin给药后的第一次发现大鼠尿液中的四种代谢物和大鼠粪便中的六种代谢物。结果表明,酯键和葡糖苷带的水解和与葡糖醛糖苷的缀合是PaeoNiflorin的主要代谢途径。在胃内给药后第一次检测到大鼠血浆,尿液和粪便中PaeOniflorin和TPG的代谢物。结果可能有助于更好地了解新陈代谢机制,并提供科学理论,用于研究芍药蛋白和TPG体内的物质基础。

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