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黄连生物碱与 hOCT1 和 hOCT2 的相互作用。

The interaction of alkaloids in Coptis chinensis Franch -Tetradium ruticarpum (A. Juss.) T.G. Hartley with hOCT1 and hOCT2.

机构信息

State Key Laboratory of Component-based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, 10 Poyanghu Road, Jinghai, Tianjin, 301617, PR China.

Second Affiliated Hospital of Tianjin University of Traditional Chinese Medicine, Tianjin, 300250, PR China.

出版信息

J Ethnopharmacol. 2022 Sep 15;295:115395. doi: 10.1016/j.jep.2022.115395. Epub 2022 May 18.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Zuojin Pill, a traditional poly-herbal drug, comprises Coptis chinensis Franch - Tetradium ruticarpum (A. Juss.) T.G. Hartley (6:1). The significant quantity of alkaloids found in the participating herbs is a key aspect of the Zuojin Pill. According to traditional Chinese medicine (TCM), these numerous alkaloidal compounds within Zuojin Pill have various essential therapeutic effects.

AIM OF THE STUDY

The alkaloids in Tetradium are mainly indole alkaloids, while the alkaloids in Coptis are mostly isoquinoline alkaloids with low bioavailability. Alkaloids and their metabolites are nitrogen-containing compounds or weakly alkaline substances that can be partially ionized under physiological pH conditions. Fortunately, organic cation transporters (OCTs) play a crucial role in the cellular uptake of weakly alkaline compounds. Therefore, we speculated that the alkaloidal compounds might interact with liver cation transporters hOCT1 and kidney cation transporters hOCT2 to alter cell drug disposal. In order to clarify our hypothesis, a series of alkaloids-OCTs interaction experiments were conducted.

MATERIALS AND METHODS

HEK293 cells stably expressing hOCT1 and hOCT2 were modeled and evaluated. Afterward, high-content screening (HCS) was conducted to analyze whether the main alkaloids and their metabolites of Coptis - Tetradium were inhibitors of hOCT1 and hOCT2 transporters. Meanwhile, LC-MS/MS was used to investigate whether the alkaloidal compounds were substrates of hOCT1 and hOCT2 transporters. Finally, drug interactions at the cellular level were assessed by LC-MS/MS after co-administration of berberine and rutacorine.

RESULTS

Berberine, jateorhizine, coptisine, epiberberine, columbamine, demethyleneberberine, and berberrubine could significantly inhibit hOCT1 and hOCT2 activity. Isoquinoline alkaloids, including berberine, jateorhizine, coptisine, epiberberine, columbamine, and palmatine, were substrates of hOCT1 and hOCT2, but not the indole alkaloids evodiamine and rutaecarpine. Furthermore, evodiamine at a concentration of 20 μmol/L had a trivial effect on berberine accumulation in HEK293-hOCT2 cells.

CONCLUSIONS

These results support the idea that alkaloidal compounds within Coptis and Tetradium have hOCT1 and hOCT2 inhibitory activity or be their substrates, and the increased oral bioavailability of berberine in vivo was closely related to the potential interactions of small molecules in Coptis- Tetradium. Overall, our study provides a framework for investigating the potential interactions of small molecules in Coptis- Tetradium.

摘要

民族药理学相关性

左金丸是一种传统的多草药药物,由黄连 - 三角枫(A. Juss.)T.G.哈特利(6:1)组成。参与草药中发现的大量生物碱是左金丸的一个关键方面。根据中医(TCM)的说法,左金丸中的这些众多生物碱化合物具有各种重要的治疗作用。

研究目的

三角枫中的生物碱主要是吲哚生物碱,而黄连中的生物碱主要是异喹啉生物碱,生物利用度低。生物碱及其代谢物是含氮化合物或弱碱性物质,在生理 pH 条件下可以部分电离。幸运的是,有机阳离子转运体(OCTs)在弱碱性化合物的细胞摄取中发挥着关键作用。因此,我们推测生物碱化合物可能与肝脏阳离子转运体 hOCT1 和肾脏阳离子转运体 hOCT2 相互作用,改变细胞药物处置。为了阐明我们的假设,进行了一系列生物碱-OCT 相互作用实验。

材料和方法

构建并评估了稳定表达 hOCT1 和 hOCT2 的 HEK293 细胞。然后,通过高内涵筛选(HCS)分析黄连-三角枫中的主要生物碱及其代谢物是否为 hOCT1 和 hOCT2 转运体的抑制剂。同时,LC-MS/MS 用于研究生物碱化合物是否为 hOCT1 和 hOCT2 转运体的底物。最后,通过 LC-MS/MS 评估共同给予小檗碱和鲁特考林后细胞水平的药物相互作用。

结果

小檗碱、金雀花碱、黄连碱、表小檗碱、巴马汀、去甲小檗碱和小檗红碱可显著抑制 hOCT1 和 hOCT2 活性。异喹啉生物碱,包括小檗碱、金雀花碱、黄连碱、表小檗碱、巴马汀和掌叶防己碱,是 hOCT1 和 hOCT2 的底物,但吲哚生物碱吴茱萸碱和乌头碱不是。此外,浓度为 20 μmol/L 的吴茱萸碱对 HEK293-hOCT2 细胞中小檗碱积累的影响微不足道。

结论

这些结果支持以下观点,即黄连和三角枫中的生物碱化合物具有 hOCT1 和 hOCT2 抑制活性或成为其底物,并且体内小檗碱口服生物利用度的增加与黄连-三角枫中小分子的潜在相互作用密切相关。总的来说,我们的研究为研究黄连-三角枫中小分子的潜在相互作用提供了框架。

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