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Metabolic Stability and Metabolite Characterization of Capilliposide B and Capilliposide C by LC–QTRAP–MS/MS

机译:LC-QTRAP-MS / MS对辣椒苷B和辣椒苷C的代谢稳定性和代谢物表征

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摘要

Capilliposide B (LC-B) and Capilliposide C (LC-C), two new triterpenoid saponins extracted from Lysimachia capillipes Hemsl, exhibit potential anticancer activity both in vitro and in vivo. However, their metabolic process remains unclear. In this study, the metabolic stability of LC-B, LC-C, and Capilliposide A (LC-A, a bioactive metabolite of LC-B and LC-C) was investigated in human, rat, and mouse liver microsomes, respectively. Thereafter, their metabolites were identified and characterized after oral administration in mice. As a result, species difference was found in the metabolic stability of LC-B and LC-C. All three compounds of interest were stable in human and rat liver microsomes, but LC-B and LC-C significantly degraded in mouse liver microsomes. The metabolic instability of LC-B and LC-C was mainly caused by esterolysis. Moreover, 19 metabolites were identified and characterized in mouse biological matrices. LC-B and LC-C mainly underwent deglycosylation and esterolysis, accompanied by dehydration, dehydrogenation, and hydroxylation as minor metabolic reactions. Finally, the metabolic pathway of LC-B and LC-C in mice was proposed. Our results updated the preclinical metabolism and disposition process of LC-B and LC-C, which provided additional information for better understanding efficacy and safety.
机译:Capilliposide B(LC-B)和Capilliposide C(LC-C),这两种提取自金钱草(Lysimachia capillipes Hemsl)的新三萜皂苷在体外和体内均具有潜在的抗癌活性。但是,它们的代谢过程仍然不清楚。在这项研究中,分别在人,大鼠和小鼠肝微粒体中研究了LC-B,LC-C和Capilliposide A(LC-A,LC-B和LC-C的生物活性代谢物)的代谢稳定性。此后,在小鼠中口服给药后,鉴定并鉴定了它们的代谢产物。结果,在LC-B和LC-C的代谢稳定性中发现了物种差异。所有这三种感兴趣的化合物在人和大鼠肝微粒体中均稳定,但LC-B和LC-C在小鼠肝微粒体中显着降解。 LC-B和LC-C的代谢不稳定主要是由酯解引起的。此外,在小鼠生物学基质中鉴定并鉴定了19种代谢物。 LC-B和LC-C主要进行去糖基化和酯解反应,伴随着脱水,脱氢和羟基化等次要代谢反应。最后,提出了小鼠LC-B和LC-C的代谢途径。我们的结果更新了LC-B和LC-C的临床前代谢和处置过程,为进一步了解疗效和安全性提供了更多信息。

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