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CYP450s-Activity Relations of Celastrol to Interact with Triptolide Reveal the Reasons of Hepatotoxicity of Tripterygium wilfordii

机译:CYP450s与Celastrol相互作用与雷公藤甲素的活性关系揭示雷公藤的肝毒性原因

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摘要

Celastrol and triptolide, as the two main bio-activity ingredients in Tripterygium wilfordii, have wide anticancer pharmacological potency, as well as anti-inflammatory and immunosuppression effects. However, they have potential hepatotoxicity and underlying mechanisms of them-induced toxicity mediated by hepatic CYP450s have not been well delineated. In the present study, we accessed the toxic effects and possible mechanism of celastrol and triptolide on primary rat hepatocytes. Models of subdued/enhanced activity of CYP450 enzymes in primary rat hepatocytes were also constructed to evaluate the relationship between the two ingredients and CYP450s. LC-MS/MS was used to establish a detection method of the amount of triptolide in rat hepatocytes. As the results, cell viability, biochemical index, and mitochondrial membrane potential indicated that celastrol and triptolide had toxic potencies on hepatocytes. Moreover, the toxic effects were enhanced when the compounds combined with 1-aminobenzotriazole (enzyme inhibitor) while they were mitigated when combined with phenobarbital (an enzyme inducer). Meanwhile, celastrol could affect the amount of triptolide in the cell. We therefore put forward that increase of triptolide in the cell might be one of the main causes of hepatotoxicity caused by Tripterygium wilfordii.
机译:Celastrol和雷公藤内酯醇是雷公藤的两种主要生物活性成分,具有广泛的抗癌药理作用,以及抗炎和免疫抑制作用。然而,它们具有潜在的肝毒性,并且尚未很好地描述它们由肝CYP450介导的毒性的潜在机制。在本研究中,我们获得了Celastrol和雷公藤内酯醇对原代大鼠肝细胞的毒性作用及其可能的机制。还构建了大鼠原代肝细胞中CYP450酶减弱/增强活性的模型,以评估这两种成分与CYP450之间的关系。 LC-MS / MS用于建立大鼠肝细胞中雷公藤甲素含量的检测方法。结果,细胞活力,生化指标和线粒体膜电位表明,Celastrol和雷公藤内酯醇对肝细胞具有毒性。此外,当化合物与1-氨基苯并三唑(酶抑制剂)组合使用时,其毒性作用增强,而与苯巴比妥(酶诱导剂)组合使用时,其毒性作用减弱。同时,celastrol可能会影响细胞中雷公藤甲素的含量。因此,我们提出雷公藤内酯醇在细胞中的增加可能是雷公藤引起的肝毒性的主要原因之一。

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