Hyperoside is a natural flavonol glycoside, which has antioxidation, antitumor, and anticancer activities together with other healthy effects like improving cardiovascular function, protecting the liver, and regulating the immune system. It is a popular compound used in the traditional Chinese medicine and different studies on hyperoside are present in the literature. However, studies on the metabolism of hyperoside in vivo were not comprehensive. In this study, UPLC-Q-Exactive Orbitrap MS technology was used to establish a rapid and comprehensive analysis strategy to explore the metabolites and metabolic process of hyperoside in rats. The metabolites of hyperoside were systematically identified in rat plasma, urine, and feces. According to the hyperoside standard substance and relevant works of literature, a total of 33 metabolites were identified, including 16 in plasma, 31 in urine, and 14 in feces. Among them, the metabolites quercetin and dihydroquercetin were unambiguously confirmed by comparison with standard substances. In addition, 13 metabolites had not been reported in hyperoside metabolism-related articles at present. The metabolic reactions of hyperoside in vivo were further explored, including phase I metabolism (hydroxylation, dehydroxylation, glycoside hydrolysis, hydrogenation, and hydration) and phase II metabolism (methylation, acetylation, sulfation, and glucuronide conjugation). The fragment ions of hyperoside and its metabolites were usually produced by glucoside bond hydrolysis, the neutral loss of (CO + OH), COH, CO, O, and Retro-Diels Alder (RDA) cleavage. In conclusion, this study comprehensively characterized the metabolism of hyperoside in rats, providing a basis for exploring its various biological activities.
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机译:金丝桃苷是一种天然黄酮醇糖苷,具有抗氧化、抗肿瘤和抗癌活性,以及其他健康作用,如改善心血管功能、保护肝脏和调节免疫系统。它是传统中医中使用的一种流行化合物,文献中存在对金丝桃苷的不同研究。然而,关于金丝桃苷在体内代谢的研究并不全面。本研究采用 UPLC-Q-Exactive Orbitrap MS 技术建立快速、全面的分析策略,探讨大鼠金丝桃苷的代谢产物和代谢过程。在大鼠血浆、尿液和粪便中系统鉴定了金丝桃苷的代谢物。根据金丝桃苷标准物质及相关文献资料,共鉴定出 33 种代谢物,其中血浆中 16 种,尿液中 31 种,粪便中 14 种。其中,代谢物槲皮素和二氢槲皮素通过与标准物质的比对得到明确证实。此外,目前在金丝桃苷代谢相关文章中尚未报道 13 种代谢物。进一步探讨了金丝桃苷在体内的代谢反应,包括 I 期代谢 (羟基化、去羟基化、糖苷水解、氢化和水合) 和 II 期代谢 (甲基化、乙酰化、硫酸化和葡萄糖醛酸苷结合)。金丝桃苷及其代谢物的碎片离子通常由葡萄糖苷键水解、(CO + OH)、COH、CO、O 和 Retro-Diels Alder (RDA) 的中性丢失产生。综上所述,本研究全面表征了大鼠金丝桃苷的代谢情况,为探索其各种生物活性提供了依据。
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