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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Identification of the metabolites after oral administration of extract of ziziphi spinosae semen to rats or dogs by high-performance liquid chromatography/linear ion trap FTICR hybrid mass spectrometry
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Identification of the metabolites after oral administration of extract of ziziphi spinosae semen to rats or dogs by high-performance liquid chromatography/linear ion trap FTICR hybrid mass spectrometry

机译:通过高效液相色谱/线性离子阱FTICR混合质谱法对大鼠或狗口服五味子精子提取物后的代谢物鉴定

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摘要

Ziziphi spinosae semen (ZSS) is a traditional Chinese medicine that has been widely used to treat insomnia and anxiety. Modern pharmacological studies have demonstrated that flavonoids are the main active compounds in ZSS. However, the metabolites and the metabolic pathways of flavonoids in ZSS have not been investigated thoroughly. In this study, a method based on high-performance liquid chromatography coupled with Fourier transform ion cyclotron resonance mass spectrometry (HPLC/FTICR-MS) was established to identify the metabolites of flavonoids after oral administration of extract of ZSS to rats or dogs, using parent mass list-triggered data-dependent multiple-stage mass analysis at a resolving power of 50,000 in the external calibration mode. The mass accuracies obtained for all full-scan analyses were less than 4ppm (<2ppm in most cases). A total of 15 compounds were detected in biological samples of rats and dogs, and nine compounds were identified. The metabolic pathways of flavonoids of ZSS in rats and dogs were proposed. The results may help better understand the material basis and pharmacological mechanism of ZSS.
机译:菠菜酸枣仁(ZSS)是一种传统中药,已被广泛用于治疗失眠和焦虑症。现代药理研究表明,类黄酮是ZSS中的主要活性化合物。但是,尚未对ZSS中黄酮类化合物的代谢物和代谢途径进行深入研究。在这项研究中,建立了一种基于高效液相色谱结合傅里叶变换离子回旋共振质谱(HPLC / FTICR-MS)的方法,以鉴定使用ZSS提取物对大鼠或狗口服给药后黄酮类化合物的代谢物,方法是使用父质量列表触发的数据相关的多阶段质量分析,在外部校准模式下的分辨力为50,000。所有全扫描分析的质量准确度均小于4ppm(大多数情况下<2ppm)。在大鼠和狗的生物样品中共检测到15种化合物,并鉴定出9种化合物。提出了大鼠和犬ZSS类黄酮的代谢途径。结果可能有助于更好地了解ZSS的物质基础和药理机制。

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