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For: Shen H, Huang GJ, Gong YW. Effect of transforming growth factor beta and bone morphogenetic proteins on rat hepatic stellate cell proliferation and trans-differentiation. World J Gastroenterol 2003; 9(4): 784-787 [PMID: 12679932 DOI: 10.3748/wjg.v9.i4.784]
URL: https://www.wjgnet.com/1007-9327/full/v9/i4/784.htm
Number Citing Articles
1
Patricia Marañón, Carlos Ernesto Fernández-García, Stephania C. Isaza, Esther Rey, Rocío Gallego-Durán, Rocío Montero-Vallejo, Javier Rodríguez de Cía, Javier Ampuero, Manuel Romero-Gómez, Carmelo García-Monzón, Águeda González-Rodríguez. Bone morphogenetic protein 2 is a new molecular target linked to non-alcoholic fatty liver disease with potential value as non-invasive screening toolBiomarker Research 2022; 10(1) doi: 10.1186/s40364-022-00383-3
2
Ralf Jesnowski, Daniel Fürst, Jörg Ringel, Ying Chen, Andrea Schrödel, Jörg Kleeff, Armin Kolb, Wolfgang D Schareck, Matthias Löhr. Immortalization of pancreatic stellate cells as an in vitro model of pancreatic fibrosis: deactivation is induced by matrigel and N-acetylcysteineLaboratory Investigation 2005; 85(10): 1276 doi: 10.1038/labinvest.3700329
3
Ritesh K. Baboota, Matthias Blüher, Ulf Smith. Emerging Role of Bone Morphogenetic Protein 4 in Metabolic DisordersDiabetes 2021; 70(2): 303 doi: 10.2337/db20-0884
4
Michelle Chin Chia Lim, Gunter Maubach, Lang Zhuo. TGF-β1 down-regulates connexin 43 expression and gap junction intercellular communication in rat hepatic stellate cellsEuropean Journal of Cell Biology 2009; 88(12): 719 doi: 10.1016/j.ejcb.2009.08.003
5
Gina Valentino, Cristina Zivko, Florian Weber, Lorine Brülisauer, Paola Luciani. Synergy of Phospholipid—Drug Formulations Significantly Deactivates Profibrogenic Human Hepatic Stellate CellsPharmaceutics 2019; 11(12): 676 doi: 10.3390/pharmaceutics11120676
6
Hong Ji, Gerald Y. Minuk, Zhikang Peng, Yongping Chen, Chenwei Pan, Yuewen Gong. Active immunization against transforming growth factor beta1 prevents hepatic fibrosis in a rat model of liver diseaseCanadian Journal of Physiology and Pharmacology 2017; 95(6): 743 doi: 10.1139/cjpp-2016-0669
7
Seyed Fazel Nabavi, Maria Daglia, Akbar Hajizadeh Moghaddam, Solomon Habtemariam, Seyed Mohammad Nabavi. Curcumin and Liver Disease: from Chemistry to MedicineComprehensive Reviews in Food Science and Food Safety 2014; 13(1): 62 doi: 10.1111/1541-4337.12047
8
Sheng-Han Song, Xi-Sheng Leng, Tao Li, Zhi-Zhong Qin, Ji-Run Peng, Li Zhao, Yu-Hua Wei, Xin Yu. Expression of subtypes of somatostatin receptors in hepatic stellate cellsWorld Journal of Gastroenterology 2004; 10(11): 1663-1665 doi: 10.3748/wjg.v10.i11.1663
9
Refaat Omar, Jiaqi Yang, Haoyuan Liu, Neal M. Davies, Yuewen Gong. Reviews of Physiology, Biochemistry and Pharmacology, Vol. 172Reviews of Physiology, Biochemistry and Pharmacology 2016; 172: 1 doi: 10.1007/112_2016_6
10
Hong Shen, Manna Zhang, Kelly Kaita, Gerald Y. Minuk, Julia Rempel, Yuewen Gong. Expression of Fc Fragment Receptors of Immunoglobulin G (Fc?Rs) in Rat Hepatic Stellate CellsDigestive Diseases and Sciences 2005; 50(1): 181 doi: 10.1007/s10620-005-1298-5
11
Xiaodong Guo, Lu Xiong, Lin Zou, Jingmin Zhao. Upregulation of Bone Morphogenetic Protein 4 is Associated with Poor Prognosis in Patients with Hepatocellular CarcinomaPathology & Oncology Research 2012; 18(3): 635 doi: 10.1007/s12253-011-9488-2
12
Pei-Jie Chen, Cheng Huang, Xiao-Ming Meng, Jun Li. Epigenetic modifications by histone deacetylases: Biological implications and therapeutic potential in liver fibrosisBiochimie 2015; 116: 61 doi: 10.1016/j.biochi.2015.06.016
13
Miguel Á. Manzanares, Akihiro Usui, Deanna J. Campbell, Catherine I. Dumur, Gabrielle T. Maldonado, Michel Fausther, Jonathan A. Dranoff, Alphonse E. Sirica. Transforming Growth Factors α and β Are Essential for Modeling Cholangiocarcinoma Desmoplasia and Progression in a Three-Dimensional Organotypic Culture ModelThe American Journal of Pathology 2017; 187(5): 1068 doi: 10.1016/j.ajpath.2017.01.013
14
Imran H A Ali, Derek P Brazil. Bone morphogenetic proteins and their antagonists: current and emerging clinical usesBritish Journal of Pharmacology 2014; 171(15): 3620 doi: 10.1111/bph.12724
15
Natasha McCormack, Shirley O'Dea. Regulation of epithelial to mesenchymal transition by bone morphogenetic proteinsCellular Signalling 2013; 25(12): 2856 doi: 10.1016/j.cellsig.2013.09.012
16
Ling Yang, Chi-Zhi Zhang, Qing-Jing Zhu. Kangxian ruangan keli inhibits hepatic stellate cell proliferation mediated by PDGFWorld Journal of Gastroenterology 2003; 9(9): 2050-2053 doi: 10.3748/wjg.v9.i9.2050
17
Li Li, Xin-Yan Zhao, Bao-En Wang. Down-regulation of transforming growth factor β1/activin receptor-like kinase 1 pathway gene expression by herbal compound 861 is related to deactivation of LX-2 cellsWorld Journal of Gastroenterology 2008; 14(18): 2894-2899 doi: 10.3748/wjg.14.2894
18
Hideaki Shimada, Nicholas R. Staten, Lakshman E. Rajagopalan. TGF-β1 mediated activation of Rho kinase induces TGF-β2 and endothelin-1 expression in human hepatic stellate cellsJournal of Hepatology 2011; 54(3): 521 doi: 10.1016/j.jhep.2010.07.026
19
PING LI, JING YAN, YU SUN, FRANK J BURCZYNSKI, YUEWEN GONG. Chinese herbal formula Qilong‐Lishui granule improves puromycin aminonucleoside‐induced renal injury through regulation of bone morphogenetic proteinsNephrology 2007; 12(5): 466 doi: 10.1111/j.1440-1797.2007.00828.x
20
Jianghong Fan, Hong Shen, Yu Sun, Ping Li, Frank Burczynski, Mike Namaka, Yuewen Gong. Bone morphogenetic protein 4 mediates bile duct ligation induced liver fibrosis through activation of Smad1 and ERK1/2 in rat hepatic stellate cellsJournal of Cellular Physiology 2006; 207(2): 499 doi: 10.1002/jcp.20593
21
Alexander Hodge, Dinushka Lourensz, Vijesh Vaghjiani, Huyen Nguyen, Jorge Tchongue, Bo Wang, Padma Murthi, William Sievert, Ursula Manuelpillai. Soluble factors derived from human amniotic epithelial cells suppress collagen production in human hepatic stellate cellsCytotherapy 2014; 16(8): 1132 doi: 10.1016/j.jcyt.2014.01.005
22
Cui-Ping Xu, Wen-Min Ji, Gijs R van den Brink, Maikel P Peppelenbosch. Bone morphogenetic protein-2 is a negative regulator of hepatocyte proliferation downregulated in the regenerating liverWorld Journal of Gastroenterology 2006; 12(47): 7621-7625 doi: 10.3748/wjg.v12.i47.7621
23
Hong Shen, Jianghong Fan, Frank Burczynski, Gerald Y. Minuk, Peter Cattini, Yuewen Gong. Increased Smad1 expression and transcriptional activity enhances trans‐differentiation of hepatic stellate cellsJournal of Cellular Physiology 2007; 212(3): 764 doi: 10.1002/jcp.21074
24
Pei-Jie Chen, Shuang-Peng Cai, Yang Yang, Wan-Xia Li, Cheng Huang, Xiao-Ming Meng, Jun Li. PTP1B confers liver fibrosis by regulating the activation of hepatic stellate cellsToxicology and Applied Pharmacology 2016; 292: 8 doi: 10.1016/j.taap.2015.12.021
25
Xiaotong Wang, Qingguo Wang, Frank J. Burczynski, Weisi Kong, Yuewen Gong. Saikosaponin A of Bupleurum chinense (Chaihu) elevates bone morphogenetic protein 4 (BMP-4) during hepatic stellate cell activationPhytomedicine 2013; 20(14): 1330 doi: 10.1016/j.phymed.2013.07.010
26
Simona Simone, Carmela Cosola, Antonia Loverre, Marica Cariello, Fabio Sallustio, Federica Rascio, Loreto Gesualdo, Francesco Paolo Schena, Giuseppe Grandaliano, Giovanni Pertosa. BMP-2 induces a profibrotic phenotype in adult renal progenitor cells through Nox4 activationAmerican Journal of Physiology-Renal Physiology 2012; 303(1): F23 doi: 10.1152/ajprenal.00328.2011
27
Jing Zhao, Yun Zhu, Zhuojin Li, Jiawei Liang, Yin Zhang, Siqi Zhou, Yixuan Zhang, Zhiwen Fan, Yonghua Shen, Yifeng Liu, Feng Zhang, Shanshan Shen, Guifang Xu, Lei Wang, Ying Lv, Shu Zhang, Xiaoping Zou. Pirfenidone-loaded exosomes derived from pancreatic ductal adenocarcinoma cells alleviate fibrosis of premetastatic niches to inhibit liver metastasisBiomaterials Science 2022; 10(22): 6614 doi: 10.1039/D2BM00770C
28
Nouf Mohamed Al-Rasheed, Laila Mohamed Fadda, Hanaa Mahmoud Ali, Nayira A. Abdel Baky, Naglaa F. El-Orabi, Nawal Mohamed Al-Rasheed, Hazar Ibrahim Yacoub. New mechanism in the modulation of carbon tetrachloride hepatotoxicity in rats using different natural antioxidantsToxicology Mechanisms and Methods 2016; 26(4): 243 doi: 10.3109/15376516.2016.1159769