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通过体外顺序代谢和异构体聚焦鉴定研究熊去氧胆酸与其他胆酸物种的代谢相关性。

Characterization of Metabolic Correlations of Ursodeoxycholic Acid with Other Bile Acid Species through In Vitro Sequential Metabolism and Isomer-Focused Identification.

机构信息

Modern Research Center for Traditional Chinese Medicine, Beijing Research Institute of Chinese Medicine, Beijing University of Chinese Medicine, Beijing 100029, China.

Zhangzhou Pien Tze Huang Pharmaceutical Co., Ltd., Zhangzhou 363000, China.

出版信息

Molecules. 2023 Jun 16;28(12):4801. doi: 10.3390/molecules28124801.

Abstract

As a first-line agent for cholestasis treatment in a clinic, ursodeoxycholic acid rectifies the perturbed bile acids (BAs) submetabolome in a holistic manner. Considering the endogenous distribution of ursodeoxycholic acid and extensive occurrences of isomeric metabolites, it is challenging to point out whether a given bile acid species is impacted by ursodeoxycholic acid in a direct or indirect manner, thus hindering the therapeutic mechanism clarification. Here, an in-depth exploration of the metabolism pattern of ursodeoxycholic acid was attempted. Sequential metabolism in vitro with enzyme-enriched liver microsomes was implemented to simulate the step-wise metabolism and to capture the metabolically labile intermediates in the absence of endogenous BAs. Squared energy-resolved mass spectrometry (ER-MS) was utilized to achieve isomeric identification of the conjugated metabolites. As a result, metabolites (-) in total were observed and confirmatively identified. Of those, eight metabolites were generated by hydroxylation, oxidation, and epimerization, which were further metabolized to nine glucuronides and three sulfates by uridine diphosphate-glycosyltransferases and sulfotransferases, respectively. Regarding a given phase II metabolite, the conjugation sites were correlated with first-generation breakdown graphs corresponding to the linkage fission mediated by collision-induced dissociation, and the structural nuclei were identified by matching second-generation breakdown graphs with the known structures. Together, except for intestinal-bacteria-involved biotransformation, the current study characterized BA species directly influenced by ursodeoxycholic acid administration. Moreover, sequential metabolism in vitro should be a meaningful way of characterizing the metabolic pathways of endogenous substances, and squared energy-resolved mass spectrometry is a legitimate tool for structurally identifying phase II metabolites.

摘要

作为临床胆汁淤积治疗的一线药物,熊去氧胆酸以整体方式纠正扰动的胆汁酸(BAs)亚代谢组。考虑到熊去氧胆酸的内部分布和广泛存在的异构代谢物,很难指出给定的胆汁酸种类是直接还是间接受到熊去氧胆酸的影响,从而阻碍了治疗机制的阐明。在这里,我们尝试深入探讨熊去氧胆酸的代谢模式。通过酶富集的肝微粒体进行体外顺序代谢,以模拟逐步代谢,并在没有内源性 BAs 的情况下捕获代谢不稳定的中间产物。平方能量分辨质谱(ER-MS)用于实现共轭代谢物的异构鉴定。结果共观察到并确认了 种代谢物。其中,八种代谢物通过羟化、氧化和差向异构化生成,进一步通过尿苷二磷酸-糖基转移酶和磺基转移酶代谢为九种葡萄糖醛酸和三种硫酸盐。对于给定的第二代代谢物,结合部位与通过碰撞诱导解离介导的键断裂的第一代降解图相关联,通过将第二代降解图与已知结构相匹配,确定结构核心。总的来说,除了肠道细菌参与的生物转化,本研究还直接描述了熊去氧胆酸给药直接影响的 BA 种类。此外,体外顺序代谢应该是描述内源性物质代谢途径的有意义的方法,平方能量分辨质谱是鉴定第二代代谢物结构的合法工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51c5/10300935/c698eccbb214/molecules-28-04801-g001.jpg

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