For: | Xiong WJ, Hu LJ, Jian YC, Wang LJ, Jiang M, Li W, He Y. Wnt5a participates in hepatic stellate cell activation observed by gene expression profile and functional assays. World J Gastroenterol 2012; 18(15): 1745-1752 [PMID: 22553398 DOI: 10.3748/wjg.v18.i15.1745] |
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URL: | https://www.wjgnet.com/1007-9327/full/v18/i15/1745.htm |
Number | Citing Articles |
1 |
Matthew D. Carson, Kari Nejak-Bowen. Wnt/β-Catenin Signaling in Liver Pathobiology.
Annual Review of Pathology: Mechanisms of Disease
2025; 20(1): 59 doi: 10.1146/annurev-pathmechdis-111523-023535
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2 |
Ji-nian Wang, Li Li, Liang-yun Li, Qi Yan, Jun Li, Tao Xu. Emerging role and therapeutic implication of Wnt signaling pathways in liver fibrosis. Gene 2018; 674: 57 doi: 10.1016/j.gene.2018.06.053
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3 |
Anupama Rani, Chiahsuan Chin, Ross Bremner, Thalachallour Mohanakumar, Sureshbabu Angara. Targeting chromatin dysregulation in organ fibrosis. Cytokine & Growth Factor Reviews 2021; 57: 64 doi: 10.1016/j.cytogfr.2020.08.004
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4 |
Satdarshan Pal Monga. β-Catenin Signaling and Roles in Liver Homeostasis, Injury, and Tumorigenesis. Gastroenterology 2015; 148(7): 1294 doi: 10.1053/j.gastro.2015.02.056
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5 |
Marina Barcena-Varela, Leticia Colyn, Maite G. Fernandez-Barrena. Epigenetic Mechanisms in Hepatic Stellate Cell Activation During Liver Fibrosis and Carcinogenesis. International Journal of Molecular Sciences 2019; 20(10): 2507 doi: 10.3390/ijms20102507
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6 |
Maria J. Perugorria, Paula Olaizola, Ibone Labiano, Aitor Esparza-Baquer, Marco Marzioni, Jose J. G. Marin, Luis Bujanda, Jesus M. Banales. Wnt–β-catenin signalling in liver development, health and disease. Nature Reviews Gastroenterology & Hepatology 2019; 16(2): 121 doi: 10.1038/s41575-018-0075-9
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7 |
Qi Liu, Hongda Zhu, Karthik Tiruthani, Limei Shen, Fengqian Chen, Keliang Gao, Xueqiong Zhang, Lin Hou, Degeng Wang, Rihe Liu, Leaf Huang. Nanoparticle-Mediated Trapping of Wnt Family Member 5A in Tumor Microenvironments Enhances Immunotherapy for B-Raf Proto-Oncogene Mutant Melanoma. ACS Nano 2018; 12(2): 1250 doi: 10.1021/acsnano.7b07384
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8 |
Cheng-gui Miao, Ying-ying Yang, Xu He, Cheng Huang, Yan Huang, Lei Zhang, Xiong-Wen Lv, Yong Jin, Jun Li. Wnt signaling in liver fibrosis: Progress, challenges and potential directions. Biochimie 2013; 95(12): 2326 doi: 10.1016/j.biochi.2013.09.003
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9 |
Karthik Shree Harini, Devaraj Ezhilarasan. Wnt/beta‐catenin signaling and its modulators in nonalcoholic fatty liver diseases. Hepatobiliary & Pancreatic Diseases International 2023; 22(4): 333 doi: 10.1016/j.hbpd.2022.10.003
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10 |
Aya Badeea Ismail, Marwan ’Mohammad Saeed’ Naji, İnci Nebih, Gulten Tuncel, Burcu Ozbakir, Sehime Gulsun Temel, Pinar Tulay, Gamze Mocan, Mahmut Cerkez Ergoren. The expression profile of WNT/β-catanin signalling genes in human oocytes obtained from polycystic ovarian syndrome (PCOS) patients. Zygote 2022; 30(4): 536 doi: 10.1017/S0967199422000028
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11 |
Hanghang Wu, Chaobo Chen, Siham Ziani, Leonard J. Nelson, Matías A. Ávila, Yulia A. Nevzorova, Francisco Javier Cubero. Fibrotic Events in the Progression of Cholestatic Liver Disease. Cells 2021; 10(5): 1107 doi: 10.3390/cells10051107
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12 |
Yu-Zhou Wang, Yu-Song Han, Yu-Shui Ma, Jun-Jian Jiang, Zi-Xian Chen, Yi-Chao Wang, Wu Che, Feng Zhang, Qing Xia, Xiao-Feng Wang. Differential gene expression of Wnt signaling pathway in benign, premalignant, and malignant human breast epithelial cells. Tumor Biology 2012; 33(6): 2317 doi: 10.1007/s13277-012-0494-0
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13 |
Thuong Trinh-Minh, Chih-Wei Chen, Cuong Tran Manh, Yi-Nan Li, Honglin Zhu, Xiang Zhou, Debomita Chakraborty, Yun Zhang, Simon Rauber, Clara Dees, Neng-Yu Lin, Delf Kah, Richard Gerum, Christina Bergmann, Alexander Kreuter, Christiane Reuter, Florian Groeber-Becker, Beate Eckes, Oliver Distler, Ben Fabry, Andreas Ramming, Alexandra Schambony, Georg Schett, Jörg H.W. Distler. Noncanonical WNT5A controls the activation of latent TGF-β to drive fibroblast activation and tissue fibrosis. Journal of Clinical Investigation 2024; 134(10) doi: 10.1172/JCI159884
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14 |
Rong Zhang, Alexander T. Kikuchi, Toshimasa Nakao, Jacquelyn O. Russell, Morgan E. Preziosi, Minakshi Poddar, Sucha Singh, Aaron W. Bell, Steven G. England, Satdarshan P. Monga. Elimination of Wnt Secretion From Stellate Cells Is Dispensable for Zonation and Development of Liver Fibrosis Following Hepatobiliary Injury. Gene Expression 2019; 19(2): 121 doi: 10.3727/105221618X15373858350141
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15 |
Kohtaro Kikuchi, Hidekazu Tsukamoto. Stearoyl-CoA desaturase and tumorigenesis. Chemico-Biological Interactions 2020; 316: 108917 doi: 10.1016/j.cbi.2019.108917
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16 |
Glenn S. Gerhard, Bethany Davis, Xiumei Wu, Amanda Hanson, Danielle Wilhelmsen, Ignazio S. Piras, Christopher D. Still, Xin Chu, Anthony T. Petrick, Johanna K. DiStefano. Differentially expressed mRNAs and lncRNAs shared between activated human hepatic stellate cells and nash fibrosis. Biochemistry and Biophysics Reports 2020; 22: 100753 doi: 10.1016/j.bbrep.2020.100753
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17 |
Edward J. Jarman, Luke Boulter. Targeting the Wnt signaling pathway: the challenge of reducing scarring without affecting repair. Expert Opinion on Investigational Drugs 2020; 29(2): 179 doi: 10.1080/13543784.2020.1718105
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18 |
Current World Literature. Current Opinion in Rheumatology 2013; 25(1): 145 doi: 10.1097/BOR.0b013e32835c12b6
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19 |
Diamanto Koutaki, Athanasios Michos, Flora Bacopoulou, Evangelia Charmandari. The Emerging Role of Sfrp5 and Wnt5a in the Pathogenesis of Obesity: Implications for a Healthy Diet and Lifestyle. Nutrients 2021; 13(7): 2459 doi: 10.3390/nu13072459
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20 |
Jun Li, Yahui Wang, Mingze Ma, Shuheng Jiang, Xueli Zhang, Yanli Zhang, Xiaomei Yang, Chunjie Xu, Guangang Tian, Qing Li, Yang Wang, Lei Zhu, Huizhen Nie, Mingxuan Feng, Qiang Xia, Jianren Gu, Qing Xu, Zhigang Zhang. Autocrine CTHRC1 activates hepatic stellate cells and promotes liver fibrosis by activating TGF-β signaling. EBioMedicine 2019; 40: 43 doi: 10.1016/j.ebiom.2019.01.009
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21 |
P. Manka, J.D. Coombes, R. Boosman, K. Gauthier, S. Papa, W.K. Syn. Thyroid hormone in the regulation of hepatocellular carcinoma and its microenvironment. Cancer Letters 2018; 419: 175 doi: 10.1016/j.canlet.2018.01.055
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22 |
Takefumi Kimura, Simran Singh, Naoki Tanaka, Takeji Umemura. Role of G Protein-Coupled Receptors in Hepatic Stellate Cells and Approaches to Anti-Fibrotic Treatment of Non-Alcoholic Fatty Liver Disease. Frontiers in Endocrinology 2021; 12 doi: 10.3389/fendo.2021.773432
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23 |
Anna Prats-Puig, Pilar Soriano-Rodríguez, Gemma Carreras-Badosa, Elena Riera-Pérez, Monserrat Ros-Miquel, Antoni Gomila-Borja, Francis de Zegher, Lourdes Ibáñez, Judit Bassols, Abel López-Bermejo. Balanced duo of anti-inflammatory SFRP5 and proinflammatory WNT5A in children. Pediatric Research 2014; 75(6): 793 doi: 10.1038/pr.2014.29
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24 |
Jack P. Carson, Mark W. Robinson, Grant A. Ramm, Geoffrey N. Gobert. RNA sequencing of LX-2 cells treated with TGF-β1 identifies genes associated with hepatic stellate cell activation. Molecular Biology Reports 2021; 48(12): 7677 doi: 10.1007/s11033-021-06774-3
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25 |
He-He Hu, Gang Cao, Xia-Qing Wu, Nosratola D. Vaziri, Ying-Yong Zhao. Wnt signaling pathway in aging-related tissue fibrosis and therapies. Ageing Research Reviews 2020; 60: 101063 doi: 10.1016/j.arr.2020.101063
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26 |
Leonie Beljaars, Sara Daliri, Christa Dijkhuizen, Klaas Poelstra, Reinoud Gosens. WNT-5A regulates TGF-β-related activities in liver fibrosis. American Journal of Physiology-Gastrointestinal and Liver Physiology 2017; 312(3): G219 doi: 10.1152/ajpgi.00160.2016
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27 |
Zhi-Gang Ma, Xiao-Dan Lv, Ling-Ling Zhan, Lan Chen, Qi-Yuan Zou, Ji-Qiao Xiang, Jiao-Li Qin, Wei-Wei Zhang, Zhao-Jing Zeng, Hui Jin, Hai-Xing Jiang, Xiao-Ping Lv. Human urokinase-type plasminogen activator gene-modified bone marrow-derived mesenchymal stem cells attenuate liver fibrosis in rats by down-regulating the Wnt signaling pathway. World Journal of Gastroenterology 2016; 22(6): 2092-2103 doi: 10.3748/wjg.v22.i6.2092
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28 |
Jinghua Du, Xuemin Niu, Yang Wang, Lingbo Kong, Rongqi Wang, Yuguo Zhang, Suxian Zhao, Yuemin Nan. MiR-146a-5p suppresses activation and proliferation of hepatic stellate cells in nonalcoholic fibrosing steatohepatitis through directly targeting Wnt1 and Wnt5a. Scientific Reports 2015; 5(1) doi: 10.1038/srep16163
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29 |
Lauren N. Rutt, David J. Orlicky, Rebecca L. McCullough. Investigating the role of Wnt3a and Wnt5a as critical factors of hepatic stellate cell activation in acute toxicant-induced liver injury. Cell Biology and Toxicology 2024; 41(1) doi: 10.1007/s10565-024-09956-4
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30 |
Kuldeep Kumawat, Mark H. Menzen, Ralph M. Slegtenhorst, Andrew J. Halayko, Martina Schmidt, Reinoud Gosens, Wenhui Hu. TGF-β-Activated Kinase 1 (TAK1) Signaling Regulates TGF-β-Induced WNT-5A Expression in Airway Smooth Muscle Cells via Sp1 and β-Catenin. PLoS ONE 2014; 9(4): e94801 doi: 10.1371/journal.pone.0094801
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31 |
Junpei Zhang, Yin Chen, Yi Tian, Shiyao Chen, Hailing Liu. Knockdown of TRIM15 inhibits the activation of hepatic stellate cells. Journal of Molecular Histology 2021; 52(4): 839 doi: 10.1007/s10735-021-09997-7
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32 |
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33 |
Kerstin Abshagen, Moritz Senne, Berit Genz, Maria Thomas, Brigitte Vollmar. Differential Effects of Axin2 Deficiency on the Fibrogenic and Regenerative Response in Livers of Bile Duct-Ligated Mice. European Surgical Research 2015; 55(4): 328 doi: 10.1159/000441278
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34 |
Luke Boulter, Wei-Yu Lu, Stuart J. Forbes. Differentiation of progenitors in the liver: a matter of local choice. Journal of Clinical Investigation 2013; 123(5): 1867 doi: 10.1172/JCI66026
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35 |
Kuldeep Kumawat, Reinoud Gosens. WNT-5A: signaling and functions in health and disease. Cellular and Molecular Life Sciences 2016; 73(3): 567 doi: 10.1007/s00018-015-2076-y
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36 |
Alex Claveria-Cabello, Leticia Colyn, Iker Uriarte, Maria Ujue Latasa, Maria Arechederra, Jose M. Herranz, Laura Alvarez, Jesus M. Urman, Maria L. Martinez-Chantar, Jesus M. Banales, Bruno Sangro, Krista Rombouts, Julen Oyarzabal, Jose J. G. Marin, Carmen Berasain, Matias A. Avila, Maite G. Fernandez-Barrena. Dual Pharmacological Targeting of HDACs and PDE5 Inhibits Liver Disease Progression in a Mouse Model of Biliary Inflammation and Fibrosis. Cancers 2020; 12(12): 3748 doi: 10.3390/cancers12123748
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