Epigallocatechin-3-gallate prevents triptolide-induced hepatic injury by restoring the Th17/T(reg) balance in mice Journal Article


Authors: Yu, S. J.; Jiang, R.; Mazzu, Y. Z.; Wei, C. B.; Sun, Z. L.; Zhang, Y. Z.; Zhou, L. D.; Zhang, Q. H.
Article Title: Epigallocatechin-3-gallate prevents triptolide-induced hepatic injury by restoring the Th17/T(reg) balance in mice
Abstract: Drug-induced liver injury (DILI) is the most common cause of acute liver failure. Disruption of the Th17/Treg balance can lead to hepatic inflammation, which causes the main symptoms of DILI. Here we investigate the protective mechanisms of (-)-Epigallocatechin-3-gallate (EGCG) on triptolide (TP)-induced DILI that shows the Th17/Treg imbalance. Pretreatment with EGCG (5mg/kg) for 10 days before TP (0.5mg/kg) administration in mice significantly reduced the increased alanine aminotransferase (ALT) level (P<0.05) induced by TP treatment. The hepatic histology analysis further proved that EGCG protected mice from TP-induced liver injury. The imbalance of Th17/Treg was induced by TP treatment, as shown by the upregulation of TLR4 and downregulation of Tim3 expression. EGCG pretreatment can maintain the expression of TLR4 and Tim3 at normal levels to restore the Th17/Treg imbalance. In addition, EGCG can block the TP-induced expression of the downstream targets of TLR4, including MyD88, NFkB, and retinoid related orphan receptor (ROR-γt), while EGCG can restore the TP inhibition of forkhead/winged-helix family transcriptional repressor p3 (FoxP3) that is the downstream target of Tim3. Consequently, EGCG pretreatment can effectively inhibit the Th17-related pro-inflammatory cytokine (e.g. IL-17 and IL-6) upregulation induced by TP treatment. However, TP inhibition of Treg-related anti-inflammatory cytokine IL-10 production was restored by EGCG pretreatment. Taken together, these results suggest that EGCG possesses significant protective properties against TP-induced hepatic inflammatory injury, and that these properties are carried out via the restoration of the Th17/Treg imbalance by the inhibition of the TLR4 signaling pathway and the enhanced activation of the Tim3 signaling pathway. © 2016 World Scientific Publishing Company.
Keywords: egcg; th17; treg; tim-3; tlr4; triptolide
Journal Title: American Journal of Chinese Medicine
Volume: 44
Issue: 6
ISSN: 0192-415X
Publisher: World Scientific Publishing Company  
Date Published: 2016-01-01
Start Page: 1221
End Page: 1236
Language: English
DOI: 10.1142/s0192415x16500683
PROVIDER: scopus
PUBMED: 27744729
DOI/URL:
Notes: Article -- Export Date: 2 November 2016 -- Source: Scopus
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  1. Ying Zhang Mazzu
    34 Mazzu