Succinate dehydrogenase inhibitor dimethyl malonate alleviates LPS/d-galactosamine-induced acute hepatic damage in mice

被引:15
作者
Yang, Yongqiang [1 ]
Shao, Ruyue [2 ,3 ]
Tang, Li [1 ]
Li, Longjiang [1 ]
Zhu, Min [4 ]
Huang, Jiayi [1 ]
Shen, Yi [1 ]
Zhang, Li [1 ]
机构
[1] Chongqing Med Univ, Dept Pathophysiol, 1 Yixueyuan Rd, Chongqing 400016, Peoples R China
[2] Chongqing Med & Pharmaceut Coll, Clin Med Sch, Chongqing, Peoples R China
[3] Chongqing Engn Res Ctr Pharmaceut Sci, Chongqing, Peoples R China
[4] Karamay Cent Hosp, Dept Pathol, Chongqing, Peoples R China
关键词
Dimethyl malonate; succinate dehydrogenase; hepatic injury; lipopolysaccharide; apoptosis; NF-KAPPA-B; LIVER-INJURY; TNF-ALPHA; MITOCHONDRIAL ROS; FAILURE; INFLAMMATION;
D O I
10.1177/1753425919873042
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In addition to its energy-supplying function, increasing evidence suggests that mitochondria also play crucial roles in the regulation of inflammation. Succinate dehydrogenase is also known as mitochondrial complex II, and inhibition of succinate dehydrogenase by dimethyl malonate has been reported to suppress the production of pro-inflammatory cytokines. In the present study, the potential anti-inflammatory benefits of dimethyl malonate were investigated in a mouse model with LPS/d-galactosamine-induced acute hepatic damage. Male BALB/c mice were injected i.p. with LPS and d-galactosamine to cause liver injury. The degree of liver injury, inflammatory response and oxidative stress and the survival of the experimental animals were determined. The results indicated dimethyl malonate decreased the level of aminotransferases in plasma, alleviated histological abnormalities in liver, inhibited the induction of TNF-alpha and IL-6 in plasma, suppressed hepatocyte apoptosis and improved the survival of LPS/d-galactosamine-exposed mice. Therefore, inhibition of succinate dehydrogenase by dimethyl malonate significantly alleviated LPS/d-galactosamine-induced hepatic damage, which suggests that succinate dehydrogenase might become a novel target for the intervention of inflammation-based hepatic disorders.
引用
收藏
页码:522 / 529
页数:8
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