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Liquiritigenin protects against arsenic trioxide-induced liver injury by inhibiting oxidative stress and enhancing mTOR-mediated autophagy.

Authors :
Zhang, Muqing
Xue, Yucong
Zheng, Bin
Li, Li
Chu, Xi
Zhao, Yang
Wu, Yongchao
Zhang, Jianping
Han, Xue
Wu, Zhonglin
Chu, Li
Source :
Biomedicine & Pharmacotherapy. Nov2021, Vol. 143, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Liquiritigenin (LQ) has protective effects against various hepatotoxicities. However, its specific role on arsenic trioxide (ATO)-induced hepatotoxicity and the related biomolecular mechanisms remain unclear. The purpose of this study is to explore the protective actions of LQ on ATO-induced hepatotoxicity and its biomolecular mechanisms in mice. LQ was administered orally at 20 and 40 mg/kg per day for seven consecutive days with an intraperitoneal injection of ATO (5 mg/kg). Liver injury was induced by ATO and was alleviated by treatment with LQ as reflected by reduced histopathological damage of liver and decreased serum ALT, AST, and ALP levels. The generation of intracellular ROS induced by ATO was attenuated after LQ treatment. The levels of SOD, CAT, and GSH were elevated with LQ administration while MDA levels decreased. LQ mitigated elevated TNF-α and IL-6 levels as well as the hepatic mitochondrial damage caused by ATO. Moreover, LQ upregulated the expression of LC3-II and enhanced autophagy in the liver of ATO-induced mice. Further studies indicated that LQ significantly suppressed the expression of p-PI3K, p-AKT, and p-mTOR in ATO-induced mice. In conclusion, our findings show that LQ protects against ATO-induced hepatotoxicity due to its antioxidant and anti-inflammatory activities and enhancement of autophagy mediated by the PI3K/AKT/mTOR signaling pathway in mice. [Display omitted] • Liquiritigenin has protective effects on arsenic trioxide-induced hepatotoxicity. • Liquiritigenin mitigates arsenic trioxide-induced hepatic oxidative stress, inflammation and enhances autophagy in mice. • Liquiritigenin regulates autophagy by inhibiting PI3K/AKT/mTOR pathway. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07533322
Volume :
143
Database :
Academic Search Index
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
152922362
Full Text :
https://doi.org/10.1016/j.biopha.2021.112167