Metabolomics- and systems toxicology-based hepatotoxicity mechanism of Sophorae Tonkinensis Radix et Rhizoma in rats

Drug-induced liver injury (DILI) is a major challenge to the development and clinical application of drugs, especially limits the global application of Chinese herbal medicines, because the material basis and mechanisms of some Chinese herbal medicines are not well clear. In this study, a comprehens...

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Main Authors: Dengxiang Yu (Author), Zhen Shao (Author), Yuemeng Fu (Author), Xiaohang Tang (Author), Qilong Chen (Author), Zhongping Deng (Author)
Format: Book
Published: Frontiers Media S.A., 2022-11-01T00:00:00Z.
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042 |a dc 
100 1 0 |a Dengxiang Yu  |e author 
700 1 0 |a Zhen Shao  |e author 
700 1 0 |a Yuemeng Fu  |e author 
700 1 0 |a Xiaohang Tang  |e author 
700 1 0 |a Qilong Chen  |e author 
700 1 0 |a Zhongping Deng  |e author 
245 0 0 |a Metabolomics- and systems toxicology-based hepatotoxicity mechanism of Sophorae Tonkinensis Radix et Rhizoma in rats 
260 |b Frontiers Media S.A.,   |c 2022-11-01T00:00:00Z. 
500 |a 1663-9812 
500 |a 10.3389/fphar.2022.1015008 
520 |a Drug-induced liver injury (DILI) is a major challenge to the development and clinical application of drugs, especially limits the global application of Chinese herbal medicines, because the material basis and mechanisms of some Chinese herbal medicines are not well clear. In this study, a comprehensive method integrating metabolomics and systems toxicology (SysT) was used to investigate how the main substances in Sophorae TonkinensisRadix et Rhizoma (STRER) influence the metabolic pathways and molecular mechanisms of hepatotoxicity. Through a 28-day continuous oral administration toxicity study combined with serum metabolomics analyses, the aqueous, ethanol-precipitation and dichloromethane extracts of STRER exhibited significant hepatotoxic effects. In addition, 19 differential metabolites with a time-dose-effect relationship were identified in rats. The primary bile acid biosynthesis pathway was significantly altered, which was consistent with the findings of the SysT analysis. Furthermore, through the quantification of bile acids in serum, 16 differential bile acids were identified as being significantly changed; moreover, 21 relevant targets which intersected with the hepatotoxic targets of STRER were identified. Molecular docking was used to confirm the validation of bindings between targets and corresponding compounds, and finally, six important compounds and 14 potential targets were identified to be involved in STRER-induced liver injury in relation to bile acid metabolism. 
546 |a EN 
690 |a sophorae tonkinensis radix et rhizoma 
690 |a alkaloids 
690 |a hepatotoxicity 
690 |a metabolomics 
690 |a systems toxicology 
690 |a bile acid metabolism 
690 |a Therapeutics. Pharmacology 
690 |a RM1-950 
655 7 |a article  |2 local 
786 0 |n Frontiers in Pharmacology, Vol 13 (2022) 
787 0 |n https://www.frontiersin.org/articles/10.3389/fphar.2022.1015008/full 
787 0 |n https://doaj.org/toc/1663-9812 
856 4 1 |u https://doaj.org/article/c67d0ad1c3f1440b98a86920fabd7848  |z Connect to this object online.