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Cited by in CrossRef
For: Sun K, Deng HJ, Lei ST, Dong JQ, Li GX. miRNA-338-3p suppresses cell growth of human colorectal carcinoma by targeting smoothened. World J Gastroenterol 2013; 19(14): 2197-2207 [PMID: 23599646 DOI: 10.3748/wjg.v19.i14.2197]
URL: https://www.wjgnet.com/1007-9327/full/v19/i14/2197.htm
Number Citing Articles
1
Zanyar HajiEsmailPoor, Peyman Tabnak, Behnam Ahmadzadeh, Seyedeh Sanaz Ebrahimi, Bahareh Faal, Noushin Mashatan. Role of hedgehog signaling related non-coding RNAs in developmental and pathological conditionsBiomedicine & Pharmacotherapy 2022; 153: 113507 doi: 10.1016/j.biopha.2022.113507
2
Qian Yi, Hanwei Cui, Yi Liao, Jianyi Xiong, Xiufeng Ye, Weichao Sun. A minor review of microRNA-338 exploring the insights of its function in tumorigenesisBiomedicine & Pharmacotherapy 2021; 139: 111720 doi: 10.1016/j.biopha.2021.111720
3
YING SHAN, XINGYU LI, BO YOU, SI SHI, QICHENG ZHANG, YIWEN YOU. MicroRNA-338 inhibits migration and proliferation by targeting hypoxia-induced factor 1α in nasopharyngeal carcinomaOncology Reports 2015; 34(4): 1943 doi: 10.3892/or.2015.4195
4
Riliang Cao, Jianli Shao, Yabin Hu, Liang Wang, Zhizhong Li, Guodong Sun, Xiaoliang Gao. microRNA-338-3p inhibits proliferation, migration, invasion, and EMT in osteosarcoma cells by targeting activator of 90 kDa heat shock protein ATPase homolog 1Cancer Cell International 2018; 18(1) doi: 10.1186/s12935-018-0551-x
5
Ulf Hammerling, Jonas Bergman Laurila, Roland Grafström, Nils-Gunnar Ilbäck. Consumption of Red/Processed Meat and Colorectal Carcinoma: Possible Mechanisms Underlying the Significant AssociationCritical Reviews in Food Science and Nutrition 2016; 56(4): 614 doi: 10.1080/10408398.2014.972498
6
Zhengwei Xu, Chen Huang, Dingjun Hao. MicroRNA-1271 inhibits proliferation and promotes apoptosis of multiple myeloma cells through inhibiting smoothened-mediated Hedgehog signaling pathwayOncology Reports 2017; 37(2): 1261 doi: 10.3892/or.2016.5304
7
Xiuning Sun, Lihong Shi, Haoyun Zhang, Ruifang Li, Ruiwen Liang, Zhijun Liu. Effects of toll-like receptor 3 on herpes simplex virus type-1-infected mouse neural stem cellsCanadian Journal of Microbiology 2015; 61(3): 201 doi: 10.1139/cjm-2014-0540
8
Wei Zhang, Bo Wang, Quan Wang, Zhen Zhang, Zhanlong Shen, Yingjiang Ye, Kewei Jiang, Shan Wang. Lnc-HSD17B11-1:1 Functions as a Competing Endogenous RNA to Promote Colorectal Cancer Progression by Sponging miR-338-3p to Upregulate MACC1Frontiers in Genetics 2020; 11 doi: 10.3389/fgene.2020.00628
9
Raheleh Amirkhah, Ulf Schmitz, Michael Linnebacher, Olaf Wolkenhauer, Ali Farazmand. MicroRNA–mRNA interactions in colorectal cancer and their role in tumor progressionGenes, Chromosomes and Cancer 2015; 54(3): 129 doi: 10.1002/gcc.22231
10
YING JIN, MIN ZHAO, QIAN XIE, HONGYAN ZHANG, QING WANG, QINGJIE MA. MicroRNA-338-3p functions as tumor suppressor in breast cancer by targeting SOX4International Journal of Oncology 2015; 47(4): 1594 doi: 10.3892/ijo.2015.3114
11
De-Zhi Liu, Hui Zhao, Qin-Guang Zou, Qing-Jie Ma. MiR-338 suppresses cell proliferation and invasion by targeting CTBP2 in gliomaCancer Biomarkers 2017; 20(3): 289 doi: 10.3233/CBM-170128
12
Narutoshi Hibino, Cameron A. Best, Alyson Engle, Svetlana Ghimbovschi, Susan Knoblach, Dilip S. Nath, Nobuyuki Ishibashi, Richard A. Jonas. Novel Association of miR-451 with the Incidence of TEVG Stenosis in a Murine ModelTissue Engineering Part A 2016; 22(1-2): 75 doi: 10.1089/ten.tea.2014.0664
13
CHUNYAN WEN, XIAOJUN LIU, HONGXI MA, WENJIE ZHANG, HAIFENG LI. miR-338-3p suppresses tumor growth of ovarian epithelial carcinoma by targeting Runx2International Journal of Oncology 2015; 46(5): 2277 doi: 10.3892/ijo.2015.2929
14
Floryne O. Buishand, Eric Cardin, Yue Hu, Thomas Ried. Trichostatin A preferentially reverses the upregulation of gene‐expression levels induced by gain of chromosome 7 in colorectal cancer cell linesGenes, Chromosomes and Cancer 2018; 57(1): 35 doi: 10.1002/gcc.22505
15
Ashleigh Pulkoski-Gross, Xi E. Zheng, Deborah Kim, Jillian Cathcart, Jian Cao. Intestinal Tumorigenesis2015; : 309 doi: 10.1007/978-3-319-19986-3_11
16
Tian Yang, Bo-Zan Chen, Dan-Feng Li, Huai-Ming Wang, Xiao-Sheng Lin, Hong-Fa Wei, Yong-Ming Zeng. Reduced NM23 Protein Level Correlates With Worse Clinicopathologic Features in Colorectal CancersMedicine 2016; 95(4): e2589 doi: 10.1097/MD.0000000000002589
17
Geqiong Xiao, Qiong Wang, Bo Li, Xiaohui Wu, Hui Liao, Yili Ren, Ning Ai. MicroRNA-338-3p Suppresses Proliferation of Human Liver Cancer Cells by Targeting SphK2Oncology Research Featuring Preclinical and Clinical Cancer Therapeutics 2018; 26(8): 1183 doi: 10.3727/096504018X15151495109394
18
Ashraf Bakkar, Mohammed Alshalalfa, Lars F. Petersen, Hatem Abou-Ouf, Amal Al-Mami, Samar A. Hegazy, Felix Feng, Reda Alhajj, Krikor Bijian, Moulay A. Alaoui-Jamali, Tarek A. Bismar. microRNA 338-3p exhibits tumor suppressor role and its down-regulation is associated with adverse clinical outcome in prostate cancer patientsMolecular Biology Reports 2016; 43(4): 229 doi: 10.1007/s11033-016-3948-4
19
Ammad Ahmad Farooqi, Giuseppe De Rosa. TRAIL and microRNAs in the treatment of prostate cancer: therapeutic potential and role of nanotechnologyApplied Microbiology and Biotechnology 2013; 97(20): 8849 doi: 10.1007/s00253-013-5227-9
20
Bensong Duan, Jiangfeng Hu, Tongyangzi Zhang, Xu Luo, Yi Zhou, Shun Liu, Liang Zhu, Cheng Wu, Wenxiang Liu, Chao Chen, Hengjun Gao. miRNA-338-3p/CDK4 signaling pathway suppressed hepatic stellate cell activation and proliferationBMC Gastroenterology 2017; 17(1) doi: 10.1186/s12876-017-0571-3
21
Guowei Zhang, Hao Zheng, Guojun Zhang, Ruirui Cheng, Chunya Lu, Yijie Guo, Guoqiang Zhao. MicroRNA-338-3p suppresses cell proliferation and induces apoptosis of non-small-cell lung cancer by targeting sphingosine kinase 2Cancer Cell International 2017; 17(1) doi: 10.1186/s12935-017-0415-9
22
Fuxing Tang, Xiaohong Jiang, Shijie Liao, Yun Liu, Maolin He. Construction of a transcription factor-miRNA-mRNA interactive network elucidates underlying pathogenesis for osteosarcoma and validation by qRT-PCRMedicine 2022; 101(41): e31049 doi: 10.1097/MD.0000000000031049
23
Xiaoqian Zhang, Chunxia Wang, Hui Li, Xiaobin Niu, Xinwei Liu, Dongxu Pei, Xiaolan Guo, Xiaona Xu, Yongwei Li. miR-338-3p inhibits the invasion of renal cell carcinoma by downregulation of ALK5Oncotarget 2017; 8(38): 64106 doi: 10.18632/oncotarget.19329
24
Kai-Min Xiang, Xiao-Rong Li. MiR-133b Acts as a Tumor Suppressor and Negatively Regulates TBPL1 in Colorectal Cancer CellsAsian Pacific Journal of Cancer Prevention 2014; 15(8): 3767 doi: 10.7314/APJCP.2014.15.8.3767
25
Zhigang Tong, Xianfeng Meng, Jinsong Wang, Lixin Wang. MicroRNA‑338‑3p targets SOX4 and inhibits cell proliferation and invasion of renal cell carcinomaExperimental and Therapeutic Medicine 2017;  doi: 10.3892/etm.2017.5169
26
Zenghai Lin, Jianwei Lin. Circ_0004585 Facilitates Tumorigenesis of Colorectal Cancer Via Modulating the miR-338-3p/ZFX Axis and Activating the MEK/ERK PathwayCellular and Molecular Bioengineering 2023; 16(2): 159 doi: 10.1007/s12195-022-00756-6
27
Jian Li, Yunshi Zhong, Shilun Cai, Pinghong Zhou, Liqing Yao. MicroRNA expression profiling in the colorectal normal‑adenoma‑carcinoma transitionOncology Letters 2019;  doi: 10.3892/ol.2019.10464
28
Zeeshan Javed, Muhammad Javed Iqbal, Amna Rasheed, Haleema Sadia, Shahid Raza, Asma Irshad, Wojciech Koch, Wirginia Kukula-Koch, Anna Głowniak-Lipa, William C. Cho, Javad Sharifi-Rad. Regulation of Hedgehog Signaling by miRNAs and Nanoformulations: A Possible Therapeutic Solution for Colorectal CancerFrontiers in Oncology 2021; 10 doi: 10.3389/fonc.2020.607607
29
JIANGTAO SUN, XIAOSHANG FENG, SHEGAN GAO, ZHONGYUE XIAO. microRNA-338-3p functions as a tumor suppressor in human non-small-cell lung carcinoma and targets Ras-related protein 14Molecular Medicine Reports 2015; 11(2): 1400 doi: 10.3892/mmr.2014.2880
30
XINYU LI, ZHIHONG LI, GUIYUN YANG, ZHENXIANG PAN. MicroRNA-338-3p suppresses tumor growth of esophageal squamous cell carcinoma in vitro and in vivoMolecular Medicine Reports 2015; 12(3): 3951 doi: 10.3892/mmr.2015.3820
31
James R. Howe, Emily S. Li, Sarah E. Streeter, Gilbert J. Rahme, Edmond Chipumuro, Grace B. Russo, Julia F. Litzky, L. Benjamin Hills, Kyla R. Rodgers, Patrick D. Skelton, Bryan W. Luikart, Wenhui Hu. MiR-338-3p regulates neuronal maturation and suppresses glioblastoma proliferationPLOS ONE 2017; 12(5): e0177661 doi: 10.1371/journal.pone.0177661
32
Bo Han, Xiangqi Meng, Hui Chen, Lingchao Chen, Xing Liu, Hongjun Wang, Daming Liu, Fei Gao, Lin Lin, Jianguang Ming, Bo Sun, Shi Yin, Ruijia Wang, Pengfei Wu, Jinquan Cai, Chuanlu Jiang. Epigenetic silencing of miR-338 facilitates glioblastoma progression by de-repressing the pyruvate kinase M2-β-catenin axisAging 2017; 9(8): 1885 doi: 10.18632/aging.101271
33
Paolo Magistri, Cecilia Battistelli, Raffaele Strippoli, Niccolò Petrucciani, Teijo Pellinen, Lucia Rossi, Livia Mangogna, Paolo Aurello, Francesco D'Angelo, Marco Tripodi, Giovanni Ramacciato, Giuseppe Nigri. SMO Inhibition Modulates Cellular Plasticity and Invasiveness in Colorectal CancerFrontiers in Pharmacology 2018; 8 doi: 10.3389/fphar.2017.00956
34
He-mei Song, Dan Meng, Jin-ping Wang, Xiao-yan Zhang, Zhongqiu Xie. circRNA hsa_circ_0005909 Predicts Poor Prognosis and Promotes the Growth, Metastasis, and Drug Resistance of Non-Small-Cell Lung Cancer via the miRNA-338-3p/SOX4 PathwayDisease Markers 2021; 2021: 1 doi: 10.1155/2021/8388512
35
Jia Song, Yuexin Ge, Xiaoyu Sun, Qiutong Guan, Shiqiang Gong, Minjie Wei, Jumin Niu, Lin Zhao. Noncoding RNAs related to the hedgehog pathway in cancer: clinical implications and future perspectivesMolecular Cancer 2022; 21(1) doi: 10.1186/s12943-022-01591-z
36
Q. Xue, K. Sun, H.-J. Deng, S.-T. Lei, J.-Q. Dong, G.-X. Li. MicroRNA-338-3p Inhibits Colorectal Carcinoma Cell Invasion and Migration by Targeting SmoothenedJapanese Journal of Clinical Oncology 2014; 44(1): 13 doi: 10.1093/jjco/hyt181
37
Tong Zhang, Wei Liu, Xian-cheng Zeng, Nan Jiang, Bin-sheng Fu, Y. Guo, Hui-ming Yi, Hua Li, Qi Zhang, Wen-jie Chen, Gui-hua Chen. Down-regulation of microRNA-338-3p promoted angiogenesis in hepatocellular carcinomaBiomedicine & Pharmacotherapy 2016; 84: 583 doi: 10.1016/j.biopha.2016.09.056
38
Ping Zhang, Yan Wang, Xue‑Rong Liu, Shi‑Ru Hong, Jian Yao. Downregulated Tim‑3 expression is responsible for the incidence and development of colorectal cancerOncology Letters 2018;  doi: 10.3892/ol.2018.8697
39
Li-Hong Peng, Jun Yin, Liqian Zhou, Ming-Xi Liu, Yan Zhao. Human Microbe-Disease Association Prediction Based on Adaptive BoostingFrontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.02440
40
Qianwen Ni, Min An, Shi Luo, Xiaocui Li, Guijun He, Manru Shen, Linfang Xu, Jiying Huang, Meizhu Yan, Yu Fan, Zhenjun Gao. Pseudogene TDGF1P3 regulates the proliferation and metastasis of colorectal cancer cells via the miR-338-3p–PKM2 axisBiochemical and Biophysical Research Communications 2023; 638: 7 doi: 10.1016/j.bbrc.2022.11.054
41
Xiaoxiao Wang, Chao Zhang, Huangqin Song, Junlong Yuan, Lei Zhang, Jiefeng He. CircCCDC66: Emerging roles and potential clinical values in malignant tumorsFrontiers in Oncology 2023; 12 doi: 10.3389/fonc.2022.1061007
42
Xin Chen, Min Pan, Lulu Han, Hongting Lu, Xiwei Hao, Qian Dong. miR‐338‐3p suppresses neuroblastoma proliferation, invasion and migration through targeting PREX2aFEBS Letters 2013; 587(22): 3729 doi: 10.1016/j.febslet.2013.09.044
43
Zhen-Ru Liu, Yi Song, Li-Hong Wan, Yuan-Yuan Zhang, Li-Mimg Zhou. Over-expression of miR-451a can enhance the sensitivity of breast cancer cells to tamoxifen by regulating 14-3-3ζ, estrogen receptor α, and autophagyLife Sciences 2016; 149: 104 doi: 10.1016/j.lfs.2016.02.059
44
Bo Guo, Liying Liu, Jiayi Yao, Ruili Ma, Dongmin Chang, Zongfang Li, Tusheng Song, Chen Huang. miR-338-3p Suppresses Gastric Cancer Progression through a PTEN-AKT Axis by Targeting P-REX2aMolecular Cancer Research 2014; 12(3): 313 doi: 10.1158/1541-7786.MCR-13-0507
45
Suoning Liu, Jian Suo, Chunxi Wang, Xuan Sun, Daguang Wang, Liang He, Yang Zhang, Wei Li. Downregulation of tissue miR-338-3p predicts unfavorable prognosis of gastric cancerCancer Biomarkers 2017; 21(1): 117 doi: 10.3233/CBM-170339