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Cited by in CrossRef
For: Huang YH, Cao YF, Jiang ZY, Zhang S, Gao F. Th22 cell accumulation is associated with colorectal cancer development. World J Gastroenterol 2015; 21(14): 4216-4224 [PMID: 25892871 DOI: 10.3748/wjg.v21.i14.4216]
URL: https://www.wjgnet.com/1007-9327/full/v21/i14/4216.htm
Number Citing Articles
1
Jeremy Goc, Matthew R. Hepworth, Gregory F. Sonnenberg. Group 3 innate lymphoid cells: regulating host–commensal bacteria interactions in inflammation and cancerInternational Immunology 2016; 28(1): 43 doi: 10.1093/intimm/dxv056
2
Nisha Nagarsheth, Max S. Wicha, Weiping Zou. Chemokines in the cancer microenvironment and their relevance in cancer immunotherapyNature Reviews Immunology 2017; 17(9): 559 doi: 10.1038/nri.2017.49
3
Florian Guisier, Mateus Camargo Barros-Filho, Leigha D. Rock, Megan Strachan-Whaley, Erin A. Marshall, Graham Dellaire, Wan L. Lam. Tumor MicroenvironmentAdvances in Experimental Medicine and Biology 2020; 1224: 35 doi: 10.1007/978-3-030-35723-8_3
4
Hufei Wang, Kangjia Luo, Zilong Guan, Zhi Li, Jun Xiang, Suwen Ou, Yangbao Tao, Songlin Ran, Jinhua Ye, Tianyi Ma, Tianyu Qiao, Zhiming Zhang, Yinghu Jin, Yanni Song, Rui Huang. Identification of the Crucial Role of CCL22 in F. nucleatum-Related Colorectal Tumorigenesis that Correlates With Tumor Microenvironment and Immune Checkpoint TherapyFrontiers in Genetics 2022; 13 doi: 10.3389/fgene.2022.811900
5
Xuehua Chen, Yanfu Wang, Jiali Wang, Jinhui Wen, Xuzhao Jia, Xiaojun Wang, Hua Zhang. Accumulation of T‑helper 22 cells, interleukin‑22 and myeloid‑derived suppressor cells promotes gastric cancer progression in elderly patientsOncology Letters 2018;  doi: 10.3892/ol.2018.8612
6
Yi Xiao, Ye Zhang, Yuzhang Li, Nanyin Peng, Qin Liu, Danyang Qiu, Justin Cho, Cesario V. Borlongan, Guolong Yu. Exosomes Derived From Mesenchymal Stem Cells Pretreated With Ischemic Rat Heart Extracts Promote Angiogenesis via the Delivery of DMBT1Cell Transplantation 2022; 31: 096368972211028 doi: 10.1177/09636897221102898
7
Guanglin Cui. TH9, TH17, and TH22 Cell Subsets and Their Main Cytokine Products in the Pathogenesis of Colorectal CancerFrontiers in Oncology 2019; 9 doi: 10.3389/fonc.2019.01002
8
Soheil Tavakolpour, Mohammad Darvishi. Cancer Immunology2020; : 63 doi: 10.1007/978-3-030-30845-2_5
9
Shannon M. Liudahl, Lisa M. Coussens. Immunology2018; : 97 doi: 10.1016/B978-0-12-809819-6.00008-3
10
S. Haleh Hosseini, Nadia Sharafkandi, Narges Seyfizadeh, Maryam Hemmatzadeh, Faroogh Marofi, Navid Shomali, Mohammad Karimi, Hamed Mohammadi. Progression or suppression: Two sides of the innate lymphoid cells in cancerJournal of Cellular Biochemistry 2020; 121(4): 2739 doi: 10.1002/jcb.29503
11
Hassan Doulabi, Elham Masoumi, Maryam Rastin, Afsaneh Foolady Azarnaminy, Seyed-Alireza Esmaeili, Mahmoud Mahmoudi. The role of Th22 cells, from tissue repair to cancer progressionCytokine 2022; 149: 155749 doi: 10.1016/j.cyto.2021.155749
12
Jia Zhang, Zhou Liu, Lingpeng Liu, Mingwen Huang, Yong Huang. Th22/IL-22 mediates the progression of HBV-related hepatocellular carcinoma via STAT3Cytotechnology 2022; 74(2): 203 doi: 10.1007/s10616-021-00517-9
13
Soheil Tavakolpour, Fatemeh Karami. Cancer Immunology2021; : 465 doi: 10.1007/978-3-030-50287-4_26
14
Lukas F. Mager, Marie-Hélène Wasmer, Tilman T. Rau, Philippe Krebs. Cytokine-Induced Modulation of Colorectal CancerFrontiers in Oncology 2016; 6 doi: 10.3389/fonc.2016.00096
15
Jöran Lücke, Ahmad Mustafa Shiri, Tao Zhang, Jan Kempski, Anastasios D. Giannou, Samuel Huber. Rationalizing heptadecaphobia: TH17 cells and associated cytokines in cancer and metastasisThe FEBS Journal 2021; 288(24): 6942 doi: 10.1111/febs.15711
16
Yu Chen, Maud Vandereyken, Ian P. Newton, Ignacio Moraga, Inke S. Näthke, Mahima Swamy, Connie J. Eaves. Loss of adenomatous polyposis coli function renders intestinal epithelial cells resistant to the cytokine IL-22PLOS Biology 2019; 17(11): e3000540 doi: 10.1371/journal.pbio.3000540
17
Blanca E. Callejas, Graham A. D. Blyth, Nicholas Jendzjowsky, Arthur Wang, Anshu Babbar, Konstantin Koro, Richard J. A. Wilson, Margaret M. Kelly, Eduardo R. Cobo, Derek M. McKay. Interleukin-4 Programmed Macrophages Suppress Colitis and Do Not Enhance Infectious-Colitis, Inflammation-Associated Colon Cancer or Airway HypersensitivityFrontiers in Immunology 2021; 12 doi: 10.3389/fimmu.2021.744738
18
Jiuheng Yin, Baifa Sheng, Yuan Qiu, Kunqiu Yang, Weidong Xiao, Hua Yang. Role of AhR in positive regulation of cell proliferation and survivalCell Proliferation 2016; 49(5): 554 doi: 10.1111/cpr.12282
19
Pranav Seth, Shweta Dubey. IL-22 as a target for therapeutic intervention: Current knowledge on its role in various diseasesCytokine 2023; 169: 156293 doi: 10.1016/j.cyto.2023.156293
20
U. M. Zissler, J. Esser-von Bieren, C. A. Jakwerth, A. M. Chaker, C. B. Schmidt-Weber. Current and future biomarkers in allergic asthmaAllergy 2016; 71(4): 475 doi: 10.1111/all.12828
21
Hassan Doulabi, Maryam Rastin, Hossein Shabahangh, Ghodratollah Maddah, Abbas Abdollahi, Reza Nosratabadi, Seyed-Alireza Esmaeili, Mahmoud Mahmoudi. Analysis of Th22, Th17 and CD4+cells co-producing IL-17/IL-22 at different stages of human colon cancerBiomedicine & Pharmacotherapy 2018; 103: 1101 doi: 10.1016/j.biopha.2018.04.147
22
Pedro Hernandez, Konrad Gronke, Andreas Diefenbach. A catch‐22: Interleukin‐22 and cancerEuropean Journal of Immunology 2018; 48(1): 15 doi: 10.1002/eji.201747183
23
Minkyo Song, Shizuka Sasazuki, M. Constanza Camargo, Taichi Shimazu, Hadrien Charvat, Taiki Yamaji, Norie Sawada, Troy J. Kemp, Ruth M. Pfeiffer, Allan Hildesheim, Ligia A. Pinto, Charles S. Rabkin, Shoichiro Tsugane. Circulating inflammatory markers and colorectal cancer risk: A prospective case‐cohort study in JapanInternational Journal of Cancer 2018; 143(11): 2767 doi: 10.1002/ijc.31821
24
Steven F. Gameiro, Farhad Ghasemi, John W. Barrett, James Koropatnick, Anthony C. Nichols, Joe S. Mymryk, Saman Maleki Vareki. Tumor Immunology and Immunotherapy – Integrated Methods Part BMethods in Enzymology 2020; 636: 49 doi: 10.1016/bs.mie.2019.05.040
25
Miguel Martínez-Rodríguez, Carlos Monteagudo. Tumor MicroenvironmentAdvances in Experimental Medicine and Biology 2021; 1302: 113 doi: 10.1007/978-3-030-62658-7_9
26
Sheng-Nan Jia, Ying-Bo Han, Rui Yang, Ze-Cheng Yang. Chemokines in colon cancer progressionSeminars in Cancer Biology 2022; 86: 400 doi: 10.1016/j.semcancer.2022.02.007
27
Noha Mousaad Elemam, Azzam A. Maghazachi. Handbook of Cancer and Immunology2023; : 1 doi: 10.1007/978-3-030-80962-1_26-1
28
Xun Che, Wei Dai. Aryl Hydrocarbon Receptor: Its Regulation and Roles in Transformation and TumorigenesisCurrent Drug Targets 2019; 20(6): 625 doi: 10.2174/1389450120666181109092225
29
Sajida Maryam, Katarzyna Krukiewicz, Ihtisham Ul Haq, Awal Ayaz Khan, Galal Yahya, Simona Cavalu. Interleukins (Cytokines) as Biomarkers in Colorectal Cancer: Progression, Detection, and MonitoringJournal of Clinical Medicine 2023; 12(9): 3127 doi: 10.3390/jcm12093127
30
Susan Costantini, Elena Di Gennaro, Francesca Capone, Alfonso De Stefano, Guglielmo Nasti, Carlo Vitagliano, Sergio Venanzio Setola, Fabiana Tatangelo, Paolo Delrio, Francesco Izzo, Antonio Avallone, Alfredo Budillon. Plasma metabolomics, lipidomics and cytokinomics profiling predict disease recurrence in metastatic colorectal cancer patients undergoing liver resectionFrontiers in Oncology 2023; 12 doi: 10.3389/fonc.2022.1110104
31
Carsten B. Schmidt-Weber. Implementing Precision Medicine in Best Practices of Chronic Airway Diseases2019; : 91 doi: 10.1016/B978-0-12-813471-9.00008-6
32
Mirna Perusina Lanfranca, Yanwei Lin, Jingyuan Fang, Weiping Zou, Timothy Frankel. Biological and pathological activities of interleukin-22Journal of Molecular Medicine 2016; 94(5): 523 doi: 10.1007/s00109-016-1391-6
33
Joseph W. Dean, Liang Zhou. Cell-intrinsic view of the aryl hydrocarbon receptor in tumor immunityTrends in Immunology 2022; 43(3): 245 doi: 10.1016/j.it.2022.01.008
34
Xian‑Wen Yang, Hai‑Xing Jiang, Ronge Lei, Wei‑Shun Lu, Shi‑Hui Tan, Shan‑Yu Qin. Recruitment and significance of Th22 cells and Th17 cells in malignant ascitesOncology Letters 2018;  doi: 10.3892/ol.2018.9316
35
Jan Korbecki, Szymon Grochans, Izabela Gutowska, Katarzyna Barczak, Irena Baranowska-Bosiacka. CC Chemokines in a Tumor: A Review of Pro-Cancer and Anti-Cancer Properties of Receptors CCR5, CCR6, CCR7, CCR8, CCR9, and CCR10 LigandsInternational Journal of Molecular Sciences 2020; 21(20): 7619 doi: 10.3390/ijms21207619
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 malignanciesScandinavian Journal of Immunology 2021; 93(5) doi: 10.1111/sji.13030
37
Peiying Wang, Wing Keung Chan, Jiming Wang, Zhouxin Yang, Youwei Wang. Role of IL-22 in intestinal microenvironment and potential targeted therapy through dietImmunologic Research 2023; 71(2): 121 doi: 10.1007/s12026-022-09325-5
38
Qi Jiang, Guocan Yang, Fan Xiao, Jue Xie, Shengjun Wang, Liwei Lu, Dawei Cui. Role of Th22 Cells in the Pathogenesis of Autoimmune DiseasesFrontiers in Immunology 2021; 12 doi: 10.3389/fimmu.2021.688066
39
Mingli Yue, Meng-Meng Chen, Bingqiang Zhang, Yin Wang, Peifeng Li, Yi Zhao. The functional roles of chemokines and chemokine receptors in colorectal cancer progressionBiomedicine & Pharmacotherapy 2024; 170: 116040 doi: 10.1016/j.biopha.2023.116040
40
Xu Wang, Shixin Chan, Jiajie Chen, Yuanmin Xu, Longfei Dai, Qijun Han, Zhenglin Wang, Xiaomin Zuo, Yang Yang, Hu Zhao, Ming Wang, Chen Wang, Zichen Li, Huabing Zhang, Wei Chen. Robust machine−learning based prognostic index using cytotoxic T lymphocyte evasion genes highlights potential therapeutic targets in colorectal cancerCancer Cell International 2024; 24(1) doi: 10.1186/s12935-024-03239-y
41
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 signalingOncoImmunology 2016; 5(8): e1082704 doi: 10.1080/2162402X.2015.1082704
42
Beilei Wu, Lijun Tao, Daqing Yang, Wei Li, Hongbo Xu, Qianggui He. Development of an Immune Infiltration-Related Eight-Gene Prognostic Signature in Colorectal Cancer MicroenvironmentBioMed Research International 2020; 2020: 1 doi: 10.1155/2020/2719739
43
Anastasios D. Giannou, Jöran Lücke, Dörte Kleinschmidt, Ahmad Mustafa Shiri, Babett Steglich, Mikolaj Nawrocki, Tao Zhang, Dimitra E. Zazara, Jan Kempski, Lilan Zhao, Olympia Giannou, Theodora Agalioti, Leonie Brockmann, Franziska Bertram, Morsal Sabihi, Marius Böttcher, Florian Ewald, Kornelius Schulze, Johann von Felden, Andres Machicote, Ioannis C. Maroulis, Petra C. Arck, Julia-Kristin Graß, Baris Mercanoglu, Matthias Reeh, Stefan Wolter, Michael Tachezy, Hannes Seese, Myrto Theodorakopoulou, Panagis M. Lykoudis, Asmus Heumann, Faik G. Uzunoglu, Tarik Ghadban, Oliver Mann, Jakob R. Izbicki, Jun Li, Anna Duprée, Nathaniel Melling, Nicola Gagliani, Samuel Huber. A Critical Role of the IL-22–IL-22 Binding Protein Axis in Hepatocellular CarcinomaCancers 2022; 14(24): 6019 doi: 10.3390/cancers14246019
44
Varun Sasidharan Nair, Reem Saleh, Rowaida Z Taha, Salman M Toor, Khaled Murshed, Ayman A Ahmed, Mohamed A Kurer, Mohamed Abu Nada, Fares Al Ejeh, Eyad Elkord. Differential gene expression of tumor-infiltrating CD4 + T cells in advanced versus early stage colorectal cancer and identification of a gene signature of poor prognosis OncoImmunology 2020; 9(1) doi: 10.1080/2162402X.2020.1825178
45
Martina Karasová, Jiřina Procházková, Zuzana Tylichová, Radek Fedr, Miroslav Ciganek, Miroslav Machala, Zdeněk Dvořák, Barbora Vyhlídalová, Iveta Zůvalová, Jiří Ehrmann, Jan Bouchal, Zdeněk Andrysík, Jan Vondráček. Inhibition of Aryl Hydrocarbon Receptor (AhR) Expression Disrupts Cell Proliferation and Alters Energy Metabolism and Fatty Acid Synthesis in Colon Cancer CellsCancers 2022; 14(17): 4245 doi: 10.3390/cancers14174245
46
Saleh Y Alabbas, Jakob Begun, Timothy H Florin, Iulia Oancea. The role of IL‐22 in the resolution of sterile and nonsterile inflammationClinical & Translational Immunology 2018; 7(4) doi: 10.1002/cti2.1017