首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Development of a systematic approach to identify metabolites for herbal homologs based on liquid chromatography hybrid ion trap time-of-flight mass spectrometry: gender-related difference in metabolism of Schisandra lignans in rats.
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Development of a systematic approach to identify metabolites for herbal homologs based on liquid chromatography hybrid ion trap time-of-flight mass spectrometry: gender-related difference in metabolism of Schisandra lignans in rats.

机译:基于液相色谱混合离子阱飞行时间质谱的系统鉴定草药同源物代谢物的系统方法的开发:五味子木脂素在大鼠体内代谢的性别相关差异。

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摘要

Metabolic research for herbal medicine (HM) is a formidable task, which is still in its infancy due to complicated components in HM, complex metabolic pathways, and lack of authentic standards. The present work contributes to the development of a powerful technical platform to rapidly identify and classify metabolites of herbal components based on a liquid chromatography hybrid ion trap time-of-flight mass spectrometry. Taking Schisandra lignans extract as an example, the metabolic studies were completed both in vitro and in vivo. In the in vitro study, metabolites for five representative Schisandra lignans were identified and structurally characterized. The major metabolic pathways were summed as demethylation, hydroxylation, and demethylation and hydroxylation. In the in vivo study, 44 metabolites were detected in rat urine. These metabolites were identified and classified rapidly according to the metabolic rules obtained in the in vitro studies, and hydroxylation was confirmed as the primacy metabolic pathway for lignans in rat urine. In addition, "relative cumulative excretion" (RCE) for the metabolites in female and male rats were calculated according to their relative intensities in the urine samples collected at 0 to 12, 12 to 24, and 24 to 36 h. As a result, great gender-related difference on RCE was observed. For most metabolites, RCE in female rats was significantly lower than that in male rats. In conclusion, the presently developed methodology and approach on metabolic research for Schisandra lignans will find its wide use in metabolic studies for herbal medicines.
机译:草药(HM)的代谢研究是一项艰巨的任务,由于HM中的复杂成分,复杂的代谢途径和缺乏可靠的标准,该研究仍处于起步阶段。本工作为基于液相色谱混合离子阱飞行时间质谱技术快速鉴定和分类草药成分代谢物的强大技术平台的开发做出了贡献。以五味子木脂素提取物为例,在体内外均完成了代谢研究。在体外研究中,鉴定了五种代表性五味子木脂素的代谢物并进行了结构表征。主要的代谢途径概括为脱甲基,羟化以及脱甲基和羟化。在体内研究中,在大鼠尿液中检测到44种代谢产物。根据在体外研究中获得的代谢规则,对这些代谢物进行了鉴定和快速分类,并且羟基化被证实是大鼠尿液中木脂素的主要代谢途径。另外,根据在0至12、12至24和24至36小时收集的尿液样品中的相对强度,计算雌性和雄性大鼠中代谢物的“相对累积排泄”(RCE)。结果,在RCE上观察到与性别相关的巨大差异。对于大多数代谢物,雌性大鼠的RCE显着低于雄性大鼠。总之,目前开发的五味子木脂素代谢研究方法和方法将在草药的代谢研究中广泛使用。

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