Aims Increasing nicotinamide adenine dinucleotide (NAD+) by Nicotinamide riboside (NR) provides protective benefits in multiple disorders. However, the role of NR on liver fibrosis is unclear. We performed in vivo and in vitro experiments to test the hepatic protective effects of NR against liver fibrosis and the underlying mechanisms. Materials and methods Mice were injected with CCl4 to establish liver fibrosis model. NR was given by gavage to explore the hepatic protection of NR. LX‐2 cells were given a TGF‐&bgr; stimulation ± NR, the activation of LX‐2 cells and the acetylation of Smads were analyzed. To further confirm the role of Sirt1 on the protective pathway of NR, we knockdown Sirt1 in LX‐2 cells. Key findings We found NR could prevent liver fibrosis and reverse the existing liver fibrosis. NR inhibited the activation of LX‐2 cells induced by TGF‐&bgr;, activated Sirt1 and deacetylated Smad2/3. Sirt1 knockdown diminished the inhibiting effect of NR on LX‐2 cells activation, and increased expressions of acetylated Smads. In conclusion, NR could prevent liver fibrosis via suppressing activation of hepatic stellate cells (HSCs). This protective effect was mediated by regulating the acetylation of Smads signaling pathway. Significance NR protected mice against liver fibrosis induced by CCl4. NR suppressed activation of hepatic stellate cells induced by TGF‐&bgr;. NR protects liver fibrosis via increasing the activity of Sirt1 and decreasing the expression of P300, resulting in the deacetylation of Smads in stellate cells. Graphical abstract Figure. No Caption available.
Nicotinamide riboside protects against liver fibrosis induced by CCl4 via regulating the acetylation of Smads signaling pathway
Rui Jiang,Yujia Zhou,Sufan Wang,Nengzhi Pang,Yuanling Huang,Mingtong Ye,Ting Wan,Yun Qiu,Lei Pei,Xuye Jiang,Yufeng Huang,Hainan Yang,W. Ling,Xufeng Li,Zhenfeng Zhang,Lili Yang
Published 2019 in Life Science
ABSTRACT
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- Publication year
2019
- Venue
Life Science
- Publication date
2019-05-01
- Fields of study
Medicine, Chemistry, Environmental Science
- Identifiers
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- Source metadata
Semantic Scholar, PubMed
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