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大鼠灌胃服用知母皂苷 B-II 后尿液中知母皂苷 B-II 的代谢轮廓分析:超高效液相色谱/四极杆飞行时间质谱法

Metabolism profile of timosaponin B-II in urine after oral administration to rats by ultrahigh-performance liquid chromatography/quadrupole-time-of-flight mass spectrometry.

机构信息

School of Pharmacy, Second Military Medical University, Shanghai 200433, China.

出版信息

Rapid Commun Mass Spectrom. 2012 Sep 15;26(17):1955-64. doi: 10.1002/rcm.6299.

Abstract

RATIONALE

Timosaponin B-II (TB-II) is one of the major bioactive steroid glycosides isolated from Anemarrhena asphodeloides Bge. (Fam. Liliaceae). It has been regarded as a potential lead compound, which may be further developed into a promising new drug for preventing dementia. To fully understand the action mechanism of TB-II, it is important to study the metabolism profile of this compound in vivo.

METHODS

Herein, a rapid and sensitive method based on ultrahigh-performance liquid chromatography (UHPLC)/quadrupole-time-of-flight mass spectrometry (QTOFMS) was established to comprehensively investigate the metabolism of TB-II in Sprague-Dawley rat urine following oral administration of a single dose of TB-II at 500.4 mg·kg(-1).

RESULTS

A total of twelve metabolites were detected and identified by means of comparing molecular mass, retention time and spectral pattern of the analytes with those of the parent drug. A possible metabolic pathway on the biotransformation of TB-II was also investigated and proposed.

CONCLUSIONS

Oxidation, deglycosylation and E-ring cleavage were found to be the major metabolic processes of the compound in rat. It is the first report on a mammalian metabolism study of timosaponin, a common member of steroid glycosides, in rat urine.

摘要

理由

知母皂苷 B-II(TB-II)是从知母(百合科)中分离得到的主要生物活性甾体糖苷之一。它已被视为一种有潜力的先导化合物,可能进一步开发成为预防痴呆的有前途的新药。为了全面了解 TB-II 的作用机制,研究该化合物在体内的代谢谱非常重要。

方法

本文建立了一种基于超高效液相色谱(UHPLC)/四极杆飞行时间质谱(QTOFMS)的快速灵敏方法,用于全面研究单次口服 500.4 mg·kg(-1)TB-II 后 TB-II 在 Sprague-Dawley 大鼠尿中的代谢情况。

结果

通过比较分析物的分子量、保留时间和光谱模式与母体药物的分子量、保留时间和光谱模式,共检测并鉴定出 12 种代谢物。还对 TB-II 的生物转化进行了可能的代谢途径研究并提出了假设。

结论

在大鼠中,氧化、去糖基化和 E 环裂解被发现是该化合物的主要代谢途径。这是首次在大鼠尿中报道知母皂苷这一甾体糖苷类常见成员的哺乳动物代谢研究。

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