Wan-Ru Dong, Xue Gao, Chen-Xue Li, Yan Song, J. Chai, Jun Liang
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引用次数: 0
Abstract
We previously conducted a systematic study on the metabolic process and products of hederasaponin B in rats. We hypothesized that the sugar chain structures play a key role in the metabolism of triterpenoid saponins. To verify this hypothesis, we conducted metabolic research on ciwujianoside B ascribed to the same sugar chains and a distinct aglycone and compared it with hederasaponin B. Specifically, we collected feces, urine, and plasma of rats after gavage with ciwujianoside B and identified 42 metabolites by UPLC-Fusion Lumos Orbitrap mass spectrometry. Finally, ciwujianoside B metabolism and hederasaponin B metabolism were compared, reaching the following conclusions: (i) more than 40 metabolites were identified in both, with the majority of metabolites identified in feces; (ii) the corresponding metabolic pathways in vivo were basically similar, including deglycosylation, acetylation, hydroxylation, glucuronidation, oxidation, and glycosylation; and (iii) deglycosylation was considered the main metabolic reaction, and its metabolites accounted for approximately 50% of all metabolites. Overall, this study provides a foundation for further research on the metabolism of triterpenoid saponins.
基于 UPLC-Fusion Lumos Orbitrap 质谱法的大鼠体内 Ciwujianoside B 代谢物的检测与表征研究
此前,我们对大鼠体内七叶皂苷 B 的代谢过程和产物进行了系统研究。我们假设糖链结构在三萜皂苷的代谢过程中起着关键作用。为了验证这一假设,我们对具有相同糖链和不同苷元的刺五加皂苷 B 进行了代谢研究,并将其与红豆杉皂苷 B 进行了比较。具体而言,我们收集了大鼠灌胃刺五加皂苷 B 后的粪便、尿液和血浆,并通过 UPLC-Fusion Lumos Orbitrap 质谱法鉴定了 42 种代谢产物。最后,将刺五加皂苷 B 的代谢与海达皂苷 B 的代谢进行了比较,得出以下结论:(i)两者均鉴定出 40 多种代谢物,其中大部分代谢物在粪便中鉴定出;(ii)体内相应的代谢途径基本相似,包括脱糖基化、乙酰化、羟基化、葡萄糖醛酸化、氧化和糖基化;(iii)脱糖基化被认为是主要的代谢反应,其代谢物约占所有代谢物的 50%。总之,这项研究为进一步研究三萜类皂苷的代谢提供了基础。
期刊介绍:
Journal of Analytical Methods in Chemistry publishes papers reporting methods and instrumentation for chemical analysis, and their application to real-world problems. Articles may be either practical or theoretical.
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Separation
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Mass spectrometry
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As well as original research, Journal of Analytical Methods in Chemistry also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.