For: | Yu LZ, Wang HY, Yang SP, Yuan ZP, Xu FY, Sun C, Shi RH. Expression of interleukin-22/STAT3 signaling pathway in ulcerative colitis and related carcinogenesis. World J Gastroenterol 2013; 19(17): 2638-2649 [PMID: 23674871 DOI: 10.3748/wjg.v19.i17.2638] |
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URL: | https://www.wjgnet.com/1007-9327/full/v19/i17/2638.htm |
Number | Citing Articles |
1 |
Ashwin N. Ananthakrishnan, Charles N. Bernstein, Dimitrios Iliopoulos, Andrew Macpherson, Markus F. Neurath, Raja A. Raja Ali, Stephan R. Vavricka, Claudio Fiocchi. Environmental triggers in IBD: a review of progress and evidence. Nature Reviews Gastroenterology & Hepatology 2018; 15(1): 39 doi: 10.1038/nrgastro.2017.136
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2 |
Wenqian Li, Tiantian Zhao, Dacheng Wu, Jiajia Li, Mei Wang, Yunyun Sun, Sicong Hou. Colorectal Cancer in Ulcerative Colitis: Mechanisms, Surveillance and Chemoprevention. Current Oncology 2022; 29(9): 6091 doi: 10.3390/curroncol29090479
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3 |
Esmeralda C. Marginean, Joanna Gotfrit, Horia Marginean, Daniel W. Yokom, Justin J. Bateman, Manijeh Daneshmand, Shelly Sud, Allen M. Gown, Derek Jonker, Timothy Asmis, Rachel A. Goodwin. Phosphorylated transducer and activator of transcription-3 (pSTAT3) immunohistochemical expression in paired primary and metastatic colorectal cancer. Translational Oncology 2021; 14(2): 100996 doi: 10.1016/j.tranon.2020.100996
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4 |
Xiyue Wen, Jinyue Hu. Targeting STAT3 signaling pathway in the treatment of Alzheimer’s disease with compounds from natural products. International Immunopharmacology 2024; 141: 112936 doi: 10.1016/j.intimp.2024.112936
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5 |
Mi-Ra Lee, Bohye Kim, Hee-Jun Kim, Yongjun Lee. Anti-inflammatory Effect of Pyrus calleryana var. fauriei on Dextran Sulfate Sodium-induced Acute Colitis in Mice and Lipopolysaccharide-treated RAW 264.7 cells. Korean Journal of Medicinal Crop Science 2024; 32(6): 393 doi: 10.7783/KJMCS.2024.32.6.393
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6 |
Sofía Frigerio, Dalia A. Lartey, Geert R. D’Haens, Joep Grootjans. The Role of the Immune System in IBD-Associated Colorectal Cancer: From Pro to Anti-Tumorigenic Mechanisms. International Journal of Molecular Sciences 2021; 22(23): 12739 doi: 10.3390/ijms222312739
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7 |
Mirna Perusina Lanfranca, Yanwei Lin, Jingyuan Fang, Weiping Zou, Timothy Frankel. Biological and pathological activities of interleukin-22. Journal of Molecular Medicine 2016; 94(5): 523 doi: 10.1007/s00109-016-1391-6
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8 |
Sajida Maryam, Katarzyna Krukiewicz, Ihtisham Ul Haq, Awal Ayaz Khan, Galal Yahya, Simona Cavalu. Interleukins (Cytokines) as Biomarkers in Colorectal Cancer: Progression, Detection, and Monitoring. Journal of Clinical Medicine 2023; 12(9): 3127 doi: 10.3390/jcm12093127
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9 |
Jia Zhang, Zhou Liu, Lingpeng Liu, Mingwen Huang, Yong Huang. Th22/IL-22 mediates the progression of HBV-related hepatocellular carcinoma via STAT3. Cytotechnology 2022; 74(2): 203 doi: 10.1007/s10616-021-00517-9
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10 |
Ye Yao, Xubin Pan, Yuanyuan Dai, Yinghan Chen, Zepeng Chang, Zhangming Pei, Yue Xiao, Hongchao Wang, Wenwei Lu, Jianxin Zhao. D-serine alleviates colitis by regulating intestinal α1,2-fucosylation. Food Bioscience 2024; 62: 105057 doi: 10.1016/j.fbio.2024.105057
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11 |
Guanglin Cui. TH9, TH17, and TH22 Cell Subsets and Their Main Cytokine Products in the Pathogenesis of Colorectal Cancer. Frontiers in Oncology 2019; 9 doi: 10.3389/fonc.2019.01002
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12 |
Nan Zhao, Chuanguo Liu, Ning Li, Shuang Zhou, Yuting Guo, Shihua Yang, Huimin Liu. Role of Interleukin-22 in ulcerative colitis. Biomedicine & Pharmacotherapy 2023; 159: 114273 doi: 10.1016/j.biopha.2023.114273
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13 |
Dahae Lee, Hyejung Jo, Cheolhyeon Go, Yoojin Jang, Naghyung Chu, Suhyun Bae, Dongmin Kang, Yejin Kim, Jae Seung Kang. The Roles of IL-22 and Its Receptor in the Regulation of Inflammatory Responses in the Brain. International Journal of Molecular Sciences 2022; 23(2): 757 doi: 10.3390/ijms23020757
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14 |
Hong Gang Chi, Xue Bao Zheng, Zhu Guo Wu, Shi Xue Dai, Zheng Wan, Ying Zou. Association of the interleukin-22 genetic polymorphisms with ulcerative colitis. Diagnostic Pathology 2014; 9(1) doi: 10.1186/s13000-014-0183-y
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15 |
Wenjing Zhu, Zhengjie Zhang, Xinyuan Wang. Network pharmacology analysis of Lanatoside C: molecular targets and mechanisms in the treatment of ulcerative colitis. Frontiers in Molecular Biosciences 2025; 12 doi: 10.3389/fmolb.2025.1552360
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16 |
Daren Low, Mari Mino-Kenudson, Emiko Mizoguchi. Recent Advancement in Understanding Colitis-associated Tumorigenesis. Inflammatory Bowel Diseases 2014; 20(11): 2115 doi: 10.1097/MIB.0000000000000094
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17 |
Ahmad Ismail Khaled Abdo, Gee Jun Tye. Interleukin 23 and autoimmune diseases: current and possible future therapies. Inflammation Research 2020; 69(5): 463 doi: 10.1007/s00011-020-01339-9
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18 |
Mairi H. McLean, Markus F. Neurath, Scott K. Durum. Targeting Interleukins for the Treatment of Inflammatory Bowel Disease—What Lies Beyond Anti-TNF Therapy?. Inflammatory Bowel Diseases 2014; 20(2): 389 doi: 10.1097/01.MIB.0000437616.37000.41
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19 |
Tina Guina, Fiorella Biasi, Simone Calfapietra, Mario Nano, Giuseppe Poli. Inflammatory and redox reactions in colorectal carcinogenesis. Annals of the New York Academy of Sciences 2015; 1340(1): 95 doi: 10.1111/nyas.12734
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20 |
Xiaoting Wang, Kit Wong, Wenjun Ouyang, Sascha Rutz. Targeting IL-10 Family Cytokines for the Treatment of Human Diseases. Cold Spring Harbor Perspectives in Biology 2019; 11(2): a028548 doi: 10.1101/cshperspect.a028548
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21 |
Asli Semiz, Ozden Ozgun Acar, Hulya Cetin, Gurkan Semiz, Alaattin Sen. Suppression of inflammatory cytokines expression with bitter melon (Momordica charantia) in TNBS-instigated ulcerative colitis. Journal of Translational Internal Medicine 2020; 8(3): 177 doi: 10.2478/jtim-2020-0027
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22 |
Kepeng Wang, Michael Karin. Immunotherapy of Cancer. Advances in Cancer Research 2015; 128: 173 doi: 10.1016/bs.acr.2015.04.014
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23 |
Heba A. Mahmoud, Wesam M. Salama, Reham A. Mariah, Asmaa M. Eid. Ameliorative effect of Leiurus quinquestriatus venom on acetic acid-induced colitis in mice. Scientific African 2021; 14: e01009 doi: 10.1016/j.sciaf.2021.e01009
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24 |
Fizzah Mansur, Tanzeela Arshad, Vaclav Liska, Sobia Manzoor. Interleukin-22 promotes the proliferation and migration of hepatocellular carcinoma cells via the phosphoinositide 3-kinase (PI3K/AKT) signaling pathway. Molecular Biology Reports 2023; 50(7): 5957 doi: 10.1007/s11033-023-08542-x
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25 |
Yu Zhi Lian, Chun-Chao Chang, Yu-Shan Chen, Alexey A. Tinkov, Anatoly V. Skalny, Jane C.-J. Chao. <i>Lycium barbarum</i> polysaccharides and capsaicin modulate inflammatory cytokines and colonic microbiota in colitis rats induced by dextran sulfate sodium. Journal of Clinical Biochemistry and Nutrition 2022; 71(3): 229 doi: 10.3164/jcbn.21-174
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26 |
Abdullah Alattar, Reem Alshaman, Mohammed M. H. Al-Gayyar. Therapeutic effects of sulforaphane in ulcerative colitis: effect on antioxidant activity, mitochondrial biogenesis and DNA polymerization. Redox Report 2022; 27(1): 128 doi: 10.1080/13510002.2022.2092378
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27 |
Danfeng Sun, Yanwei Lin, Jie Hong, Haoyan Chen, Nisha Nagarsheth, Dongjun Peng, Shuang Wei, Emina Huang, Jingyuan Fang, Ilona Kryczek, Weiping Zou. Th22 cells control colon tumorigenesis through STAT3 and Polycomb Repression complex 2 signaling. OncoImmunology 2016; 5(8): e1082704 doi: 10.1080/2162402X.2015.1082704
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28 |
Daniela Rossin, Simone Calfapietra, Barbara Sottero, Giuseppe Poli, Fiorella Biasi. HNE and cholesterol oxidation products in colorectal inflammation and carcinogenesis. Free Radical Biology and Medicine 2017; 111: 186 doi: 10.1016/j.freeradbiomed.2017.01.017
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29 |
Andrew V Nguyen, Yuan-Yuan Wu, Elaine Y Lin. STAT3 and sphingosine-1-phosphate in inflammation-associated colorectal cancer. World Journal of Gastroenterology 2014; 20(30): 10279-10287 doi: 10.3748/wjg.v20.i30.10279
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30 |
Ju Chen, Elise Pitmon, Kepeng Wang. Microbiome, inflammation and colorectal cancer. Seminars in Immunology 2017; 32: 43 doi: 10.1016/j.smim.2017.09.006
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31 |
Jiajin Li, Zhen Wu, Yuxin Wu, XinYu Hu, Jun Yang, Dacheng Zhu, Mingyue Wu, Xin Li, Lutterodt Bentum-Ennin, Hu Wanglai. IL-22, a vital cytokine in autoimmune diseases. Clinical and Experimental Immunology 2024; 218(3): 242 doi: 10.1093/cei/uxae035
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32 |
Yong-Hong Huang, Yun-Fei Cao, Zhi-Yuan Jiang, Sen Zhang, Feng Gao. Th22 cell accumulation is associated with colorectal cancer development. World Journal of Gastroenterology 2015; 21(14): 4216-4224 doi: 10.3748/wjg.v21.i14.4216
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33 |
Kazuhiko Uchiyama, Tomohisa Takagi, Katsura Mizushima, Yasuko Hirai, Eiki Murakami, Kohei Asaeda, Mariko Kajiwara-Kubota, Saori Kashiwagi, Yuki Minagawa, Yuma Hotta, Makoto Tanaka, Ken Inoue, Kazuhiro Katada, Kazuhiro Kamada, Takeshi Ishikawa, Hideyuki Konishi, Mitsuo Kishimoto, Yuji Naito, Yoshito Itoh. Mucosal Cytokine Expression Associated With Deep Endoscopic Mucosal Healing in Ulcerative Colitis. Journal of Crohn's and Colitis 2025; 19(3) doi: 10.1093/ecco-jcc/jjae158
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34 |
Marie Muller, Franck Hansmannel, Djesia Arnone, Myriam Choukour, Ndeye Coumba Ndiaye, Tunay Kokten, Rémi Houlgatte, Laurent Peyrin‐Biroulet. Genomic and molecular alterations in human inflammatory bowel disease‐associated colorectal cancer. United European Gastroenterology Journal 2020; 8(6): 675 doi: 10.1177/2050640620919254
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35 |
Zhichen Pu, Yuan Che, Weiwei Zhang, Hui Sun, Tuo Meng, Haitang Xie, Lijuan Cao, Haiping Hao. Dual roles of IL-18 in colitis through regulation of the function and quantity of goblet cells. International Journal of Molecular Medicine 2019; doi: 10.3892/ijmm.2019.4156
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36 |
Nikoo Hossein‐Khannazer, Zeineb Zian, Joaira Bakkach, Ali N. Kamali, Ramin Hosseinzadeh, Abubakar Umar Anka, Reza Yazdani, Gholamreza Azizi. Features and roles of T helper 22 cells in immunological diseases and malignancies. Scandinavian Journal of Immunology 2021; 93(5) doi: 10.1111/sji.13030
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37 |
Sara Shafieipour, Mohammadjavad Mohammadtaghizadeh. Evaluation of common genes and molecular pathways between atherosclerosis and inflammatory bowel disease: A systems biology approach. Human Gene 2024; 40: 201277 doi: 10.1016/j.humgen.2024.201277
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