Bone morphogenetic protein-7 represses hepatic stellate cell activation and liver fibrosis via regulation of TGF-β/Smad signaling pathway

被引:0
作者
Gao-Liang Zou [1 ]
Shi Zuo [2 ]
Shuang Lu [1 ]
Rui-Han Hu [1 ]
Yin-Ying Lu [3 ]
Jing Yang [1 ]
Kai-Sheng Deng [1 ]
Ye-Ting Wu [1 ]
Mao Mu [1 ]
Juan-Juan Zhu [1 ]
Jing-Zhang Zeng [1 ]
Bao-Fang Zhang [1 ]
Xian Wu [1 ]
Xue-Ke Zhao [1 ]
Hai-Yang Li [2 ]
机构
[1] Department of Infectious Diseases, Affiliated Hospital of Guizhou Medical University
[2] Department of Hepatobiliary Surgery, Affiliated Hospital of Guizhou Medical University
[3] Comprehensive Liver Cancer Center, 302 Hospital
基金
中国国家自然科学基金;
关键词
Liver fibrosis; Bone morphogenetic protein; Transforming growth factor; Hepatic stellate cells;
D O I
暂无
中图分类号
R575.2 [肝硬变];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND Liver fibrosis is a refractory disease whose persistence can eventually induce cirrhosis or even liver cancer.Early liver fibrosis is reversible by intervention.As a member of the transforming growth factor-beta(TGF-β) superfamily, bone morphogenetic protein 7(BMP7) has anti-liver fibrosis functions.However, little is known about BMP7 expression changes and its potential regulatory mechanism as well as the relationship between BMP7 and TGF-β during liver fibrosis.In addition, the mechanism underlying the anti-liver fibrosis function of BMP7 needs to be further explored.AIM To investigate changes in the dynamic expression of BMP7 during liver fibrosis,interactions between BMP7 and TGF-β1, and possible mechanisms underlying the anti-liver fibrosis function of BMP7.METHODS Changes in BMP7 expression during liver fibrosis and the interaction between BMP7 and TGF-β1 in mice were observed.Exogenous BMP7 was used to treat mouse primary hepatic stellate cells(HSCs) to observe its effect on activation,migration, and proliferation of HSCs and explore the possible mechanism underlying the anti-liver fibrosis function of BMP7.Mice with liver fibrosis received exogenous BMP7 intervention to observe improvement of liver fibrosis by using Masson’s trichrome staining and detecting the expression of the HSC activation indicator alpha-smooth muscle actin(α-SMA) and the collagen formation associated protein type Ⅰ collagen(Col Ⅰ).Changes in the dynamic expression of BMP7 during liver fibrosis in the human body were further observed.RESULTS In the process of liver fibrosis induced by carbon tetrachloride(CCl4) in mice,BMP7 protein expression first increased, followed by a decrease; there was a similar trend in the human body.This process was accompanied by a sustained increase in TGF-β1 protein expression.In vitro experiment results showed that TGF-β1 inhibited BMP7 expression in a time-and dose-dependent manner.In contrast, high doses of exogenous BMP7 inhibited TGF-β1-induced activation,migration, and proliferation of HSCs; this inhibitory effect was associated with upregulation of pSmad1/5/8 and downregulation of phosphorylation of Smad3 and p38 by BMP7.In vivo experiment results showed that exogenous BMP7 improved liver fibrosis in mice.CONCLUSION During liver fibrosis, BMP7 protein expression first increases and then decreases.This changing trend is associated with inhibition of BMP7 expression by sustained upregulation of TGF-β1 in a time-and dose-dependent manner.Exogenous BMP7 could selectively regulate TGF-β/Smad pathway-associated factors to inhibit activation, migration, and proliferation of HSCs and exert antiliver fibrosis functions.Exogenous BMP7 has the potential to be used as an antiliver fibrosis drug.
引用
收藏
页码:4222 / 4234
页数:13
相关论文
共 12 条
[1]   Liver fibrosis and hepatic stellate cells: Etiology, pathological hallmarks and therapeutic targets [J].
Chong-Yang Zhang ;
Wei-Gang Yuan ;
Pei He ;
Jia-Hui Lei ;
Chun-Xu Wang .
World Journal of Gastroenterology, 2016, (48) :10512-10522
[2]  
Exogenous bone morphogenetic protein-7 reduces hepatic fibrosis inSchistosoma japonicum-infected micevia transforming growth factor-β/Smad signaling[J]. Bo-Lin Chen,Jie Peng,Qing-Fu Li,Min Yang,Yuan Wang,Wei Chen.World Journal of Gastroenterology. 2013(09)
[3]   BMP7-induced-Pten inhibits Akt and prevents renal fibrosis [J].
Higgins, Debra F. ;
Ewart, Leah M. ;
Masterson, Enda ;
Tennant, Sadhbh ;
Grebnev, Gleb ;
Prunotto, Marco ;
Pomposiello, Sylvia ;
Conde-Knape, Karin ;
Martin, Finian M. ;
Godson, Catherine .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2017, 1863 (12) :3095-3104
[4]   Adenoviral-bone morphogenetic protein-7 and/or doxazosin therapies promote the reversion of fibrosis/cirrhosis in a cirrhotic hamster model [J].
Cervantes-Garcia, Daniel ;
Guadalupe Cuellar-Juarez, Adriana ;
Borrego-Soto, Gissela ;
Rojas-Martinez, Augusto ;
Rubi Aldaba-Muruato, Liseth ;
Salinas, Eva ;
Ventura-Juarez, Javier ;
Humberto Munoz-Ortega, Martin .
MOLECULAR MEDICINE REPORTS, 2017, 16 (06) :9431-9440
[5]   BMP-7 suppresses excessive scar formation by activating the BMP-7/Smad1/5/8 signaling pathway [J].
Guo, Jingdong ;
Lin, Quan ;
Shao, Ying ;
Rong, Li ;
Zhang, Duo .
MOLECULAR MEDICINE REPORTS, 2017, 16 (02) :1957-1963
[6]   Regression of Liver Fibrosis [J].
Campana, Lara ;
Iredale, John P. .
SEMINARS IN LIVER DISEASE, 2017, 37 (01) :1-10
[7]  
S100A4 promotes liver fibrosis via activation of hepatic stellate cells[J] . Lin Chen,Jie Li,Jinhua Zhang,Chengliang Dai,Xiaoman Liu,Jun Wang,Zhitao Gao,Hongyan Guo,Rui Wang,Shichun Lu,Fusheng Wang,Henghui Zhang,Hongsong Chen,Xiaolong Fan,Shengdian Wang,Zhihai Qin.Journal of Hepatology . 2014
[8]   Downregulation of FAK-related non-kinase mediates the migratory phenotype of human fibrotic lung fibroblasts [J].
Cai, Guo-qiang ;
Zheng, Anni ;
Tang, Qingjiu ;
White, Eric S. ;
Chou, Chu-Fang ;
Gladson, Candece L. ;
Olman, Mitchell A. ;
Ding, Qiang .
EXPERIMENTAL CELL RESEARCH, 2010, 316 (09) :1600-1609
[9]   Senescence of activated stellate cells limits liver fibrosis [J].
Krizhanovsky, Valery ;
Yon, Monica ;
Dickins, Ross A. ;
Hearn, Stephen ;
Simon, Janelle ;
Miething, Cornelius ;
Yee, Herman ;
Zender, Lars ;
Lowe, Scott W. .
CELL, 2008, 134 (04) :657-667
[10]   BMP7 signaling in renal development and disease [J].
Patel, SR ;
Dressler, GR .
TRENDS IN MOLECULAR MEDICINE, 2005, 11 (11) :512-518