School of Traditional Chinese Materia Medica, Shenyang Pharmaceutical University, Shengyang, China.
National and Local Joint Engineering Laboratory for Key Technology of Chinese Material Medica Quality Control, Shenyang Pharmaceutical University, Shenyang, China.
J Sep Sci. 2018 Jul;41(13):2846-2853. doi: 10.1002/jssc.201800012. Epub 2018 May 29.
An integrated strategy based on high-resolution mass spectrometry coupled with multiple data mining techniques was developed to screen the metabolites in rat biological fluids after the oral administration of Xanthoceras sorbifolia Bunge husks. Mass defect filtering, product ion filtering, and neutral loss filtering were applied to detect metabolites from the complex matrix. As a result, 55 metabolites were tentatively identified, among which 45 barrigenol-type triterpenoid metabolites were detected in the feces, and six flavonoids and four coumarins metabolites were in the urine. Moreover, eight prototype constituents in plasma, 36 in urine and 23 in feces were also discovered. Due to the poor bioavailability of barrigenol type triterpenoids, most of them were metabolized by intestinal flora. Phase I metabolic reactions such as deglycosylation, oxidation, demethylation, dehydrogenation, and internal hydrolysis were supposed to be their principal metabolic pathways. Coumarins were found in all the biosamples, whereas flavonoids were mainly in the urine. Unlike the saponins, they were mainly metabolized through phase II metabolic reactions like glucuronidation and sulfonation, which made them eliminated more easily by urine. This work suggested the metabolic profile of X. sorbifolia husks for the first time, which will be very valuable for its further development.
建立了一种基于高分辨质谱结合多种数据挖掘技术的整合策略,用于筛选口服文冠果种皮后大鼠生物体液中的代谢产物。采用质量亏损过滤、产物离子过滤和中性丢失过滤来检测复杂基质中的代谢产物。结果,共推测出 55 种代谢产物,其中在粪便中检测到 45 种柏拉苷型三萜类代谢产物,在尿液中检测到 6 种黄酮类和 4 种香豆素类代谢产物。此外,还在血浆中发现了 8 种原型成分,在尿液中发现了 36 种,在粪便中发现了 23 种。由于柏拉苷型三萜类化合物的生物利用度较差,大多数被肠道菌群代谢。推测其主要代谢途径为去糖基化、氧化、去甲基化、脱氢和内部水解等 I 相代谢反应。香豆素在所有生物样本中均有发现,而黄酮类主要在尿液中。与皂苷不同,它们主要通过 II 相代谢反应(如葡萄糖醛酸化和磺化)代谢,从而更容易通过尿液排出。这项工作首次揭示了文冠果种皮的代谢特征,这对于其进一步开发将具有重要意义。