4.5 Article

Sphingosine 1-phosphate receptor-1 specific agonist SEW2871 ameliorates ANIT-induced dysregulation of bile acid homeostasis in mice plasma and liver

期刊

TOXICOLOGY LETTERS
卷 331, 期 -, 页码 242-253

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.toxlet.2020.06.018

关键词

Cholestasis; Bile acid profiles; SEW2871; Sphingosine-1-phosphate receptor 1; TCA; NRs

资金

  1. National Natural Science Foundation of China [81573514, 81773827, 81320108029, 81773995]
  2. National Major Scientific and Technological Special Project for Significant New Drugs project [2015ZX09501004-002-004]
  3. Specific Fund for Public Interest Research of Traditional Chinese Medicine, Ministry of finance [201507004-002]
  4. Double First-Class University project [CPU2018 GY 33]

向作者/读者索取更多资源

Dysregulated bile acid (BA) homeostasis is an extremely significant pathological phenomenon of intrahepatic cholestasis, and the accumulated BA could further trigger hepatocyte injury. Here, we showed that the expression of sphingosine-1 -phosphate receptor 1 (S1PR1) was down-regulated by alpha-naphthylisothiocyanate (ANIT) in vivo and in vitro. The up-regulated S1PR1 induced by SEW2871 (a specific agonist of S1PR1) could improve ANIT-induced deficiency of hepatocyte tight junctions (TJs), cholestatic liver injury and the disrupted BA homeostasis in mice. BA metabolic profiles showed that SEW2871 not only reversed the disruption of plasma BA homeostasis, but also alleviated BA accumulation in the liver of ANIT-treated mice. Further quantitative analysis of 19 BAs showed that ANIT increased almost all BAs in mice plasma and liver, all of which were restored by SEW2871. Our data demonstrated that the top performing BAs were taurine conjugated bile acids (T), especially taurocholic acid (TCA). Molecular mechanism studies indicated that BA transporters, synthetase, and BAs nuclear receptors (NRs) might be the important factors that maintained BA homeostasis by SEW2871 in ANIT-induced cholestasis. In conclusion, these results demonstrated that S1PR1 selective agonists might be the novel and potential effective agents for the treatment of intrahepatic cholestasis by recovering dysregulated BA homeostasis.

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