4.7 Article

5-Aza-2-deoxycytidine alleviates the progression of primary biliary cholangitis by suppressing the FoxP3 methylation and promoting the Treg/Th17 balance

Journal

INTERNATIONAL IMMUNOPHARMACOLOGY
Volume 96, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.intimp.2021.107820

Keywords

Primary biliary cholangitis; Forkhead box protein 3; Methylation; T helper 17 cells; Regulatory T cells

Funding

  1. Scientific research fund project of Yunnan Provincial Department of Education [2020Y0127]
  2. National Natural Science Foundation of China [81760107, 82060385, 81760383]

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The study found an imbalance of the Treg/Th17 axis in PBC patients, with weakened Treg function being a potential reason for disease progression. The imbalance of the Treg/Th17 axis in PBC is likely influenced by FoxP3 hypermethylation, and treatment with DAC can suppress FoxP3 methylation to restore balance and alleviate liver lesions and inflammation in PBC.
Primary biliary cholangitis (PBC) is a common autoimmune liver disease manifested by the infiltration of CD4+ T cells, and the subsequent targeted injury of biliary epithelial cells (BECs). As important components of CD4 subsets, the Treg/Th17 axis maintains an immunological balance between self-tolerance and inflammation in the liver microenvironment. However, the role and regulatory mechanism of the Treg/Th17 axis in PBC remain unclear. In this study, we examined the Treg/Th17 axis in PBC patients and found that the Treg/Th17 axis was imbalanced in PBC at both the transcriptional and cellular levels, with Treg being a weak candidate, which correlates with the PBC progression. This imbalanced Treg/Th17 axis was likely to be affected by the FoxP3 hypermethylation, which was related to the increase of DNA methyltransferase. Furthermore, the effect of 5-Aza2-deoxycytidine (DAC)-mediated FoxP3 demethylation on PBC mice was investigated. We verified that DAC significantly suppressed the FoxP3 methylation and rebuilt the Treg/Th17 balance, resulting in the alleviation of liver lesions and inflammation. Taken together, our data indicate that DAC plays a positive role in alleviating the progression of PBC through the inhibition of DNA methylation of FoxP3 to rebuild the balanced Treg/Th17 axis. DAC could be considered as a potential candidate for the development of new anti-inflammation strategies in the treatment of PBC.

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