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Exercise changes the intrahepatic immune cell profile and inhibits the progression of nonalcoholic steatohepatitis in a mouse model

脂肪变性 炎症 纤维化 脂肪性肝炎 内科学 内分泌学 医学 肝硬化 骨髓 非酒精性脂肪肝 脂肪组织 脂肪肝 慢性肝病 疾病
作者
Yuji Tsutsui,Taizo Mori,Sachiyo Yoshio,Mitsumasa Sato,Toshihiro Sakata,Yuichi Yoshida,Hironari Kawai,Shiori Yoshikawa,Taiji Yamazoe,Michitaka Matsuda,Eiji Kakazu,Yosuke Osawa,Chinatsu Oyama,Miwa Tamura‐Nakano,Takumi Kawaguchi,Tomoharu Yoshizumi,Tatsuya Kanto
出处
期刊:Hepatology communications [Wiley]
卷期号:7 (10)
标识
DOI:10.1097/hc9.0000000000000236
摘要

Background: NASH is an increasingly common cause of chronic liver disease and can progress to cirrhosis and HCC. Although exercise suppresses inflammation during acute hepatitis, its impact on the progression of chronic liver disease remains unclear. Here, we investigated the effects of exercise on disease progression and intrahepatic immune cell composition in a mouse model of NASH. Method: Mice were assigned to 4 groups: 2 control groups (normal diet) and 2 NASH groups (western diet and low-dose carbon tetrachloride injection). One of each group remained sedentary and one was exercised on a treadmill for 12 weeks (60 min/d, 5 times/wk). All mice were then analyzed for liver histomorphology, steatosis, inflammation, and fibrosis; liver, adipose tissue, and skeletal muscle expression of genes related to metabolism and inflammation; and intrahepatic immune cell composition. Result: Compared with the normal diet mice, NASH mice exhibited enhanced liver steatosis, inflammation, and fibrosis; upregulated expression of liver lipogenesis-related and inflammation-related genes; and increased frequencies of intrahepatic F4/80 int CD11b hi bone marrow-derived macrophages and programmed death receptor-1 (PD-1) + CD8 + T cells. Expression of inflammatory cytokines and the frequencies of bone marrow-derived macrophages and PD-1 + CD8 + T cells correlated positively with liver steatosis, inflammation, and fibrosis. Exercise was shown to reduce NASH-induced hepatic steatosis, liver inflammation, and fibrosis; induce alterations in metabolism-related genes and inflammatory cytokines in the liver; and suppress accumulation of liver bone marrow-derived macrophages and PD-1 + CD8 + T cells. In addition, we showed that exercise induced increased expression of IL-15 in muscle and its deficiency exacerbated the pathology of NASH. Conclusions: Exercise alters the intrahepatic immune cell profile and protects against disease progression in a mouse model of NASH.
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