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在体和在大鼠中对强效天然神经保护剂石斛碱的代谢特征进行研究。

Metabolic characterization of a potent natural neuroprotective agent dendrobine in vitro and in rats.

机构信息

Hongqiao International Institute of Medicine, Tongren Hospital and State Key Laboratory of Oncogenes and Related Genes, Department of Pharmacology and Chemical Biology, Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, China.

Key Laboratory of Basic Pharmacology of Ministry of Education & Joint International Research Laboratory of Ethnomedicine of Ministry of Education, Zunyi Medical University, Zunyi, 563003, China.

出版信息

Acta Pharmacol Sin. 2022 Apr;43(4):1059-1071. doi: 10.1038/s41401-021-00690-9. Epub 2021 Jun 28.

Abstract

Dendrobine is the main sesquiterpene alkaloid of Dendrobium nobile Lindl, which exhibits potent neuroprotective activity. However, its metabolism and disposition are little known. In this study, we investigated the metabolic characteristics of dendrobine in vitro and in rats. The metabolic stability and temporal profile of metabolites formation of dendrobine were assayed in human/rat liver microsomal and S9 fractions. Dendrobine metabolites were separated and identified mainly by UPLC-Q/Orbitrap MS. After oral administration of dendrobine (50 mg/kg) to rats, the accumulative excretion rate of dendrobine in feces, urine, and bile was 0.27%, 0.52%, and 0.031%, respectively, and low systematic exposure of dendrobine (AUC = 629.2 ± 56.4 ng·h/mL) was observed. We demonstrated that the elimination of dendrobine was very rapid in liver microsomal incubation (the in vitro elimination t in rat and human liver microsomes was 1.35 and 5.61 min, respectively). Dendrobine underwent rapid and extensive metabolism; cytochrome P450, especially CYP3A4, CYP2B6, and CYP2C19, were mainly responsible for its metabolism. Aldehyde dehydrogenase, alcohol dehydrogenase and aldehyde oxidase were involved in the formation of carboxylic acid metabolites. By the aid of in-source fragmentation screening, hydrogen/deuterium exchange experiment, post-acquisition processing software, and available reference standards, 50 metabolites were identified and characterized in liver microsomal incubation and in rats. The major metabolic pathways of dendrobine were N-demethylation, N-oxidation, and dehydrogenation, followed by hydroxylation and glucuronidation. Collectively, the metabolic fate of dendrobine elucidated in this study not only yields benefits for its subsequent metabolism study but also facilitates to better understanding the mode of action of dendrobine and evaluating the pharmacologic efficiency of the high exposure metabolites.

摘要

石斛碱是兰科石斛属植物铁皮石斛中的主要倍半萜生物碱,具有很强的神经保护活性。然而,其代谢和处置方式知之甚少。在这项研究中,我们研究了石斛碱在体外和大鼠体内的代谢特征。在人/大鼠肝微粒体和 S9 级分中测定了石斛碱的代谢稳定性和代谢产物形成的时程。主要通过 UPLC-Q/Orbitrap MS 分离和鉴定石斛碱代谢产物。大鼠口服石斛碱(50mg/kg)后,石斛碱在粪便、尿液和胆汁中的累积排泄率分别为 0.27%、0.52%和 0.031%,系统暴露量低(AUC=629.2±56.4ng·h/mL)。我们证明了石斛碱在肝微粒体孵育中消除非常迅速(大鼠和人肝微粒体中的体外消除 t 分别为 1.35 和 5.61 分钟)。石斛碱迅速广泛代谢;细胞色素 P450,特别是 CYP3A4、CYP2B6 和 CYP2C19,是其代谢的主要负责者。醛脱氢酶、醇脱氢酶和醛氧化酶参与羧酸代谢产物的形成。通过源内碎裂筛选、氘氢交换实验、后获取处理软件和可用的参比标准,在肝微粒体孵育和大鼠中鉴定和表征了 50 种代谢产物。石斛碱的主要代谢途径为 N-去甲基化、N-氧化和脱氢,随后是羟化和葡萄糖醛酸化。总的来说,本研究阐明的石斛碱代谢命运不仅为其后续代谢研究提供了益处,而且有助于更好地了解石斛碱的作用模式和评估高暴露代谢产物的药效效率。

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