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For: Schimanski CC, Frerichs K, Rahman F, Berger M, Lang H, Galle PR, Moehler M, Gockel I. High miR-196a levels promote the oncogenic phenotype of colorectal cancer cells. World J Gastroenterol 2009; 15(17): 2089-2096 [PMID: 19418581 DOI: 10.3748/wjg.15.2089]
URL: https://www.wjgnet.com/1007-9327/full/v15/i17/2089.htm
Number Citing Articles
1
Mao Liu, Huiping Chen. The role of microRNAs in colorectal cancerJournal of Genetics and Genomics 2010; 37(6): 347 doi: 10.1016/S1673-8527(09)60053-9
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XIAOJUAN XIE, JINGJING PAN, LIQIANG WEI, SHOUZHEN WU, HUILIAN HOU, XU LI, WEI CHEN. Gene expression profiling of microRNAs associated with UCA1 in bladder cancer cellsInternational Journal of Oncology 2016; 48(4): 1617 doi: 10.3892/ijo.2016.3357
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Patrick Ying-Kit Yue, Wai-Yan Ha, Chi-Chiu Lau, Florence Man-Fung Cheung, Anne Wing-Mui Lee, Wai-Tong Ng, Roger Kai-Cheong Ngan, Chun-Chung Yau, Dora Lai-Wan Kwong, Hong-Lok Lung, Nai-Ki Mak, Maria Li Lung, Ricky Ngok-Shun Wong. MicroRNA profiling study reveals miR-150 in association with metastasis in nasopharyngeal carcinomaScientific Reports 2017; 7(1) doi: 10.1038/s41598-017-10695-2
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Mingkun Xie, Yating Li, Jing Wu, Jin Wu. A risk of digestive tract neoplasms susceptibility in miR-146a and miR-196a2Familial Cancer 2015; 14(2): 229 doi: 10.1007/s10689-014-9776-6
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Xiaobing Chen, Peng Du, Junjun She, Liang Cao, Yingchao Li, Hongping Xia. Loss of ZG16 is regulated by miR-196a and contributes to stemness and progression of colorectal cancerOncotarget 2016; 7(52): 86695 doi: 10.18632/oncotarget.13435
6
Patricia Severino, Holger Brüggemann, Flavia Maziero Andreghetto, Carme Camps, Maria de Fatima Garrido Klingbeil, Welbert Oliveira de Pereira, Renata Machado Soares, Raquel Moyses, Victor Wünsch-Filho, Monica Beatriz Mathor, Fabio Daumas Nunes, Jiannis Ragoussis, Eloiza Helena Tajara. MicroRNA expression profile in head and neck cancer: HOX-cluster embedded microRNA-196a and microRNA-10b dysregulation implicated in cell proliferationBMC Cancer 2013; 13(1) doi: 10.1186/1471-2407-13-533
7
Susan E. Olivo-Marston, Stephen D. Hursting, Susan N. Perkins, Aaron Schetter, Mohammed Khan, Carlo Croce, Curtis C. Harris, Jackie Lavigne, Fabio Martelli. Effects of Calorie Restriction and Diet-Induced Obesity on Murine Colon Carcinogenesis, Growth and Inflammatory Factors, and MicroRNA ExpressionPLoS ONE 2014; 9(4): e94765 doi: 10.1371/journal.pone.0094765
8
N M A White, H W Z Khella, J Grigull, S Adzovic, Y M Youssef, R J Honey, R Stewart, K T Pace, G A Bjarnason, M A S Jewett, A J Evans, M Gabril, G M Yousef. miRNA profiling in metastatic renal cell carcinoma reveals a tumour-suppressor effect for miR-215British Journal of Cancer 2011; 105(11): 1741 doi: 10.1038/bjc.2011.401
9
Ming Sun, Xiang-hua Liu, Jin-hai Li, Jin-song Yang, Er-bao Zhang, Dan-dan Yin, Zhi-li Liu, Jing Zhou, Ying Ding, Su-qin Li, Zhao-xia Wang, Xiu-feng Cao, Wei De. MiR-196a Is Upregulated in Gastric Cancer and Promotes Cell Proliferation by Downregulating p27kip1Molecular Cancer Therapeutics 2012; 11(4): 842 doi: 10.1158/1535-7163.MCT-11-1015
10
Desiree Hunt Floyd, Ying Zhang, Bijan K. Dey, Benjamin Kefas, Hannah Breit, Kaitlyn Marks, Anindya Dutta, Christel Herold-Mende, Michael Synowitz, Rainer Glass, Roger Abounader, Benjamin W. Purow, Maria G. Castro. Novel Anti-Apoptotic MicroRNAs 582-5p and 363 Promote Human Glioblastoma Stem Cell Survival via Direct Inhibition of Caspase 3, Caspase 9, and BimPLoS ONE 2014; 9(5): e96239 doi: 10.1371/journal.pone.0096239
11
Toshie Nata, Mikihiro Fujiya, Nobohiro Ueno, Kentaro Moriichi, Hiroaki Konishi, Hiroki Tanabe, Takaaki Ohtake, Katsuya Ikuta, Yutaka Kohgo. MicroRNA‐146b improves intestinal injury in mouse colitis by activating nuclear factor‐κB and improving epithelial barrier functionThe Journal of Gene Medicine 2013; 15(6-7): 249 doi: 10.1002/jgm.2717
12
Alshaymaa A. Ibrahim, Abeer Ramadan, Aliaa Ahmed Wahby, Mirhane Hassan, Hend M. Soliman, Tamer A. Abdel Hamid. Micro-RNA 196a2 expression and miR-196a2 (rs11614913) polymorphism in T1DM: a pilot studyJournal of Pediatric Endocrinology and Metabolism 2019; 32(10): 1171 doi: 10.1515/jpem-2019-0226
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Jennifer Hutchison, Zoe Cohen, Benjamin C. Onyeagucha, Janet Funk, Mark A. Nelson. How microRNAs influence both hereditary and inflammatory-mediated colon cancersCancer Genetics 2013; 206(9-10): 309 doi: 10.1016/j.cancergen.2013.06.005
14
Yun Zheng, Ting Li, Ren Ren, Donghua Shi, Shengpeng Wang. Revealing editing and SNPs of microRNAs in colon tissues by analyzing high-throughput sequencing profiles of small RNAsBMC Genomics 2014; 15(S9) doi: 10.1186/1471-2164-15-S9-S11
15
Inge de Krijger, Leonie JM Mekenkamp, Cornelis JA Punt, Iris D Nagtegaal. MicroRNAs in colorectal cancer metastasisThe Journal of Pathology 2011; 224(4): 438 doi: 10.1002/path.2922
16
Young Joo Jeon, Yi Seul Choi, HyungChul Rah, Su Yeoun Kim, Dong Hee Choi, Sun Hee Cha, Ji Eun Shin, Sung Han Shim, Woo Sik Lee, Nam Keun Kim. Association study of microRNA polymorphisms with risk of idiopathic recurrent spontaneous abortion in Korean womenGene 2012; 494(2): 168 doi: 10.1016/j.gene.2011.12.026
17
A. A. Al‐Qahtani, M. R. Al‐Anazi, N. Nazir, K. Wani, A. A. Abdo, F. M. Sanai, M. Q. Khan, H. I. Al‐Ashgar, A. Albenmousa, W. K. Al‐hamoudi, K. A. Alswat, M. N. Al‐Ahdal. Association of single nucleotide polymorphisms in microRNAs with susceptibility to hepatitis B virus infection and HBV‐related liver complications: A study in a Saudi Arabian populationJournal of Viral Hepatitis 2017; 24(12): 1132 doi: 10.1111/jvh.12749
18
Wei Du, Xue-Lei Ma, Chong Zhao, Tao Liu, Yu-Liang Du, Wei-Qi Kong, Ben-Ling Wei, Jia-Yun Yu, Yan-Yan Li, Jing-Wen Huang, Zi-Kang Li, Lei Liu. Associations of Single Nucleotide Polymorphisms in miR-146a, miR-196a, miR-149 and miR-499 with Colorectal Cancer SusceptibilityAsian Pacific Journal of Cancer Prevention 2014; 15(2): 1047 doi: 10.7314/APJCP.2014.15.2.1047
19
Zhen Yang, Fei Ren, Changning Liu, Shunmin He, Gang Sun, Qian Gao, Lei Yao, Yangde Zhang, Ruoyu Miao, Ying Cao, Yi Zhao, Yang Zhong, Haitao Zhao. dbDEMC: a database of differentially expressed miRNAs in human cancersBMC Genomics 2010; 11(S4) doi: 10.1186/1471-2164-11-S4-S5
20
Shu Zheng, Su-Zhan Zhang, Kun Chen, Yong-Liang Zhu, Qi Dong. Recent Advances in Cancer Research and Therapy2012; : 535 doi: 10.1016/B978-0-12-397833-2.00019-4
21
Atena Soleimani, Farzad Rahmani, Gordon A. Ferns, Mikhail Ryzhikov, Amir Avan, Seyed Mahdi Hassanian. Role of Regulatory Oncogenic or Tumor Suppressor miRNAs of PI3K/AKT Signaling Axis in the Pathogenesis of Colorectal CancerCurrent Pharmaceutical Design 2019; 24(39): 4605 doi: 10.2174/1381612825666190110151957
22
Hongli Li, Chao Feng, Songtao Shi. miR-196b promotes lung cancer cell migration and invasion through the targeting of GATA6Oncology Letters 2018;  doi: 10.3892/ol.2018.8671
23
Bin Zhan, Linjin Huang, Yachun Chen, Wen Ye, Jingkun Li, Jianhui Chen, Sheng Yang, Wei Jiang. miR‐196a‐mediated downregulation of p27kip1 protein promotes prostate cancer proliferation and relates to biochemical recurrence after radical prostatectomyThe Prostate 2020; 80(12): 1024 doi: 10.1002/pros.24036
24
Yuling Yang, Wenyang Zhang, Haiyang Li, Hua Xiang, Changhui Zhang, Zhanyu Du, Lian Huang, Jiangjiang Zhu. MiR-196a Promotes Lipid Deposition in Goat Intramuscular Preadipocytes by Targeting MAP3K1 and Activating PI3K-Akt PathwayCells 2024; 13(17): 1459 doi: 10.3390/cells13171459
25
Changmei Hu, Jie Peng, Liang Lv, Xuehong Wang, Yuqian Zhou, Jirong Huo, Deliang Liu. miR‑196a regulates the proliferation, invasion and migration of esophageal squamous carcinoma cells by targeting ANXA1Oncology Letters 2019;  doi: 10.3892/ol.2019.10186
26
Anne-Laure Pin, François Houle, Patrick Fournier, Maëva Guillonneau, Éric R. Paquet, Martin J. Simard, Isabelle Royal, Jacques Huot. Annexin-1-mediated Endothelial Cell Migration and Angiogenesis Are Regulated by Vascular Endothelial Growth Factor (VEGF)-induced Inhibition of miR-196a ExpressionJournal of Biological Chemistry 2012; 287(36): 30541 doi: 10.1074/jbc.M112.393561
27
Ayla Valinezhad Orang, Abolfazl Barzegari. MicroRNAs in Colorectal Cancer: from Diagnosis to Targeted TherapyAsian Pacific Journal of Cancer Prevention 2014; 15(17): 6989 doi: 10.7314/APJCP.2014.15.17.6989
28
Yong Wang, Zhi Lu, Ningning Wang, Man Zhang, Xiandong Zeng, Wei Zhao. MicroRNA-1299 is a negative regulator of STAT3 in colon cancerOncology Reports 2017; 37(6): 3227 doi: 10.3892/or.2017.5605
29
Tao Li, Zong-Li Ding, Yu-Long Zheng, Wei Wang. MiR-484 promotes non-small-cell lung cancer (NSCLC) progression through inhibiting Apaf-1 associated with the suppression of apoptosisBiomedicine & Pharmacotherapy 2017; 96: 153 doi: 10.1016/j.biopha.2017.09.102
30
Tao-Wei Ke, Han-Lin Hsu, Yu-Hua Wu, William Tzu-Liang Chen, Ya-Wen Cheng, Chao-Wen Cheng. MicroRNA-224 Suppresses Colorectal Cancer Cell Migration by Targeting Cdc42Disease Markers 2014; 2014: 1 doi: 10.1155/2014/617150
31
Jian Wang, Yong Du, Xiaoming Liu, William C. Cho, Yinxue Yang. MicroRNAs as Regulator of Signaling Networks in Metastatic Colon CancerBioMed Research International 2015; 2015: 1 doi: 10.1155/2015/823620
32
W. K. K. Wu, P. T. Y. Law, C. W. Lee, C. H. Cho, D. Fan, K. Wu, J. Yu, J. J. Y. Sung. MicroRNA in colorectal cancer: from benchtop to bedsideCarcinogenesis 2011; 32(3): 247 doi: 10.1093/carcin/bgq243
33
Liselle C. Bovell, Chandrakumar Shanmugam, Balananda-Dhurjati K. Putcha, Venkat R. Katkoori, Bin Zhang, Sejong Bae, Karan P. Singh, William E. Grizzle, Upender Manne. The Prognostic Value of MicroRNAs Varies with Patient Race/Ethnicity and Stage of Colorectal CancerClinical Cancer Research 2013; 19(14): 3955 doi: 10.1158/1078-0432.CCR-12-3302
34
Jun Liu, Juyuan Li, Yu Su, Zhen Ma, Shun Yu, Xiaoling Meng. CircTMEM59 Serves as miR-410-3p Sponge to Inhibit the Proliferation and Metastasis of Colorectal Cancer by Regulating HOXD8Biochemical Genetics 2022; 60(6): 2399 doi: 10.1007/s10528-022-10224-5
35
Ming Xu, Fulin Qiang, Yan Gao, Meiyun Kang, Meilin Wang, Guoquan Tao, Weida Gong, Haixia Zhu, Dongmei Wu, Zhengdong Zhang, Qinghong Zhao. Evaluation of a Novel Functional Single-Nucleotide Polymorphism (rs35010275 G>C) in MIR196A2 Promoter Region as a Risk Factor of Gastric Cancer in a Chinese PopulationMedicine 2014; 93(26): e173 doi: 10.1097/MD.0000000000000173
36
ZHI-SHUANG SONG, YUN WU, HONG-GUO ZHAO, CAI-XIA LIU, HAI-YU CAI, BAO-ZHI GUO, YA XIE, HUI-RONG SHI. Association between the rs11614913 variant of miRNA-196a-2 and the risk of epithelial ovarian cancerOncology Letters 2016; 11(1): 194 doi: 10.3892/ol.2015.3877
37
Su-Chen Li, Hao Shi, Mohid Khan, Martyn Caplin, Tim Meyer, Kjell Öberg, Valeria Giandomenico. Roles of miR-196a on gene regulation of neuroendocrine tumor cellsMolecular and Cellular Endocrinology 2015; 412: 131 doi: 10.1016/j.mce.2015.06.003
38
Milad Asadi, Shoan Taheri Talesh, Morten Frier Gjerstorff, Dariush Shanehbandi, Behzad Baradaran, Shahriar Hashemzadeh, Venus Zafari. Identification of MiRNAs Correlating With Stage and Progression of Colorectal CancerColorectal Cancer 2019; 8(2) doi: 10.2217/crc-2018-0014
39
Hong-Ling Wang, Rui Zhou, Jing Liu, Ying Chang, Shi Liu, Xiao-Bing Wang, Mei-Fang Huang, Qiu Zhao. MicroRNA-196b inhibits late apoptosis of pancreatic cancer cells by targeting CADM1Scientific Reports 2017; 7(1) doi: 10.1038/s41598-017-11248-3
40
N. Arias, L. Aguirre, A. Fernández-Quintela, M. González, A. Lasa, J. Miranda, M. T. Macarulla, M. P. Portillo. MicroRNAs involved in the browning process of adipocytesJournal of Physiology and Biochemistry 2016; 72(3): 509 doi: 10.1007/s13105-015-0459-z
41
Ebru Coskun, Eva Kristin von der Heide, Cornelia Schlee, Andrea Kühnl, Nicola Gökbuget, Dieter Hoelzer, Wolf-Karsten Hofmann, Eckhard Thiel, Claudia D. Baldus. The role of microRNA-196a and microRNA-196b as ERG regulators in acute myeloid leukemia and acute T-lymphoblastic leukemiaLeukemia Research 2011; 35(2): 208 doi: 10.1016/j.leukres.2010.05.007
42
Swamy K Tripurani, Kyung-Bon Lee, Gabbine Wee, George W Smith, Jianbo Yao. MicroRNA-196a regulates bovine newborn ovary homeobox gene (NOBOX) expression during early embryogenesisBMC Developmental Biology 2011; 11(1) doi: 10.1186/1471-213X-11-25
43
NA WANG, YAN LI, LING-JUN ZHU, RONG-MIAO ZHOU, WEI JIN, XIAO-QING GUO, CHUN-MEI WANG, ZHI-FENG CHEN, WEI LIU. A functional polymorphism rs11614913 in microRNA-196a2 is associated with an increased risk of colorectal cancer although not with tumor stage and gradeBiomedical Reports 2013; 1(5): 737 doi: 10.3892/br.2013.146
44
Monika Stachowiak, Tatiana Flisikowska, Stefan Bauersachs, Carolin Perleberg, Hubert Pausch, Marek Switonski, Alexander Kind, Dieter Saur, Angelika Schnieke, Krzysztof Flisikowski. Altered microRNA profiles during early colon adenoma progression in a porcine model of familial adenomatous polyposisOncotarget 2017; 8(56): 96154 doi: 10.18632/oncotarget.21774
45
Bayan Mehrjoei, Lida Haghnazari, Homayoon Bashiri, Nayebali Rezvani. The diagnostic potential of miR-196a-1 in colorectal cancerBMC Cancer 2024; 24(1) doi: 10.1186/s12885-024-11881-y
46
Manikanta Vinay Jayavaram, Dayanand Reddy Gaddam, Vijay Narasimha Kumar Godlaveti, Pullaiah Chitikela, Vara Prasad Saka. The impact of high-fat diet-induced oxidative stress on micro RNA’s in various tissuesPre-Clinical Research 2023; 1(1) doi: 10.4081/pcr.2023.9529
47
William KK Wu, Joseph JY Sung. MicroRNA Dysregulations in Gastrointestinal Cancers: Pathophysiological and Clinical PerspectivesIntestinal Research 2012; 10(4): 324 doi: 10.5217/ir.2012.10.4.324
48
QINGLIN HAN, CHUN ZHOU, FAN LIU, GUANGHUAN XU, RUI ZHENG, XIN ZHANG. MicroRNA-196a post-transcriptionally upregulates the UBE2C proto-oncogene and promotes cell proliferation in breast cancerOncology Reports 2015; 34(2): 877 doi: 10.3892/or.2015.4049
49
Ioannis Papaconstantinou, Christina Kapizioni, Evangelia Legaki, Elena Xourgia, George Karamanolis, Antonios Gklavas, Maria Gazouli. Association of miR-146 rs2910164, miR-196a rs11614913, miR-221 rs113054794 and miR-224 rs188519172 polymorphisms with anti-TNF treatment response in a Greek population with Crohn’s diseaseWorld Journal of Gastrointestinal Pharmacology and Therapeutics 2017; 8(4): 193-200 doi: 10.4292/wjgpt.v8.i4.193
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Miao Zhong, Xin Ma, Caijun Sun, Ling Chen. MicroRNAs reduce tumor growth and contribute to enhance cytotoxicity induced by gefitinib in non-small cell lung cancerChemico-Biological Interactions 2010; 184(3): 431 doi: 10.1016/j.cbi.2010.01.025
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Molly M. Derry, Komal Raina, Velmurugan Balaiya, Anil K. Jain, Sangeeta Shrotriya, Kendra M. Huber, Natalie J. Serkova, Rajesh Agarwal, Chapla Agarwal. Grape Seed Extract Efficacy against Azoxymethane-Induced Colon Tumorigenesis in A/J Mice: Interlinking miRNA with Cytokine Signaling and InflammationCancer Prevention Research 2013; 6(7): 625 doi: 10.1158/1940-6207.CAPR-13-0053
52
Sahar Dehbidi, Zhaleh Farokhizadeh, Mohammad Hossein Karimi, Afsoon Afshari, Mehrdad Behmanesh, Mohammad Hossein Sanati, Bita Geramizadeh, Ramin Yaghobi. Evaluation of microRNA Gene Polymorphisms in Liver Transplant Patients with Hepatocellular CarcinomaHepatitis Monthly 2020; 20(7) doi: 10.5812/hepatmon.102690
53
Mona Amin-Beidokhti, Reza Mirfakhraie, Shohreh Zare-Karizi, Fatemeh Karamoddin. The role of parental microRNA alleles in recurrent pregnancy loss: an association studyReproductive BioMedicine Online 2017; 34(3): 325 doi: 10.1016/j.rbmo.2016.12.004
54
Dake Chu, Jianyong Zheng, Jipeng Li, Yunming Li, Jian Zhang, Qingchuan Zhao, Weizhong Wang, Gang Ji. MicroRNA-630 is a prognostic marker for patients with colorectal cancerTumor Biology 2014; 35(10): 9787 doi: 10.1007/s13277-014-2223-3
55
Jun-Hong Wang, Chun-Wei Shi, Yi-Yuan Lu, Yan Zeng, Ming-Yang Cheng, Ru-Yu Wang, Yu Sun, Yan-Long Jiang, Wen-Tao Yang, Dan-Dan Zhao, Hai-Bin Huang, Li-Ping Ye, Xin Cao, Gui-Lian Yang, Chun-Feng Wang. MicroRNA and circRNA Expression Analysis in a Zbtb1 Gene Knockout Monoclonal EL4 Cell LineFrontiers in Cellular and Infection Microbiology 2021; 11 doi: 10.3389/fcimb.2021.706919
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BO LIU, YING XIANG, HENG-SHU ZHANG. Circulating microRNA-196a as a candidate diagnostic biomarker for chronic hepatitis CMolecular Medicine Reports 2015; 12(1): 105 doi: 10.3892/mmr.2015.3386
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Jiantao Zheng, Zhenlv Lin, Lin Zhang, Hui Chen. MicroRNA-455-3p Inhibits Tumor Cell Proliferation and Induces Apoptosis in HCT116 Human Colon Cancer CellsMedical Science Monitor 2016; 22: 4431 doi: 10.12659/MSM.898452
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Peyman Pourdavoud, Bahram Pakzad, Meysam Mosallaei, Zahra Saadatian, Emran Esmaeilzadeh, Asma Alimolaie, Alireza Shaygannejad. MiR-196: emerging of a new potential therapeutic target and biomarker in colorectal cancerMolecular Biology Reports 2020; 47(12): 9913 doi: 10.1007/s11033-020-05949-8
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Lumin Wang, Chenyang Qiao, Li Cao, Shuang Cai, Xiaoping Ma, Xinqiu Song, Qiuyu Jiang, Chen Huang, Jinhai Wang. Significance of HOXD transcription factors family in progression, migration and angiogenesis of cancerCritical Reviews in Oncology/Hematology 2022; 179: 103809 doi: 10.1016/j.critrevonc.2022.103809
60
Ya-Ching Lu, Joseph Tung-Chieh Chang, Yu-Chen Huang, Chi-Che Huang, Wen-Ho Chen, Li-Yu Lee, Bing-Shen Huang, Yin-Ju Chen, Hsiao-Fang Li, Ann-Joy Cheng. Combined determination of circulating miR-196a and miR-196b levels produces high sensitivity and specificity for early detection of oral cancerClinical Biochemistry 2015; 48(3): 115 doi: 10.1016/j.clinbiochem.2014.11.020
61
Wenping Ma, Hongze Jin, Wenjie Liu, Xiaojuan Li, Xingang Zhou, Xinwu Guo, Runfa Tian, Qi Cui, Junjie Luo, Yueying Jiao, Youtao Yu, Haifeng Yang, Hongshan Zhao. Homeobox B8 Targets Sterile Alpha Motif Domain-Containing Protein 9 and Drives Glioma ProgressionNeuroscience Bulletin 2020; 36(4): 359 doi: 10.1007/s12264-019-00436-y
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Hesan Luo, Jinjin Zou, Zhongyi Dong, Qin Zeng, Dehua Wu, Li Liu. Up-regulated miR-17 promotes cell proliferation, tumour growth and cell cycle progression by targeting the RND3 tumour suppressor gene in colorectal carcinomaBiochemical Journal 2012; 442(2): 311 doi: 10.1042/BJ20111517
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JUNKO HAMAMOTO, KENZO SOEJIMA, SATOSHI YODA, KATSUHIKO NAOKI, SOHEI NAKAYAMA, RYOSUKE SATOMI, HIDEKI TERAI, SHINNOSUKE IKEMURA, TAKASHI SATO, HIROYUKI YASUDA, YUICHIRO HAYASHI, MICHIIE SAKAMOTO, TORU TAKEBAYASHI, TOMOKO BETSUYAKU. Identification of microRNAs differentially expressed between lung squamous cell carcinoma and lung adenocarcinomaMolecular Medicine Reports 2013; 8(2): 456 doi: 10.3892/mmr.2013.1517
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Katherine Ting-Wei Lee, Juan-King Tan, Alfred King-yin Lam, Sook-Yee Gan. MicroRNAs serving as potential biomarkers and therapeutic targets in nasopharyngeal carcinoma: A critical reviewCritical Reviews in Oncology/Hematology 2016; 103: 1 doi: 10.1016/j.critrevonc.2016.04.006
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Changyi Chen, Yuqing Zhang, Lidong Zhang, Sarah M. Weakley, Qizhi Yao. MicroRNA‐196: critical roles and clinical applications in development and cancerJournal of Cellular and Molecular Medicine 2011; 15(1): 14 doi: 10.1111/j.1582-4934.2010.01219.x
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Aaron E. Hoffman, Ran Liu, Alan Fu, Tongzhang Zheng, Frank Slack, Yong Zhu. Targetome Profiling, Pathway Analysis and Genetic Association Study Implicate miR-202 in LymphomagenesisCancer Epidemiology, Biomarkers & Prevention 2013; 22(3): 327 doi: 10.1158/1055-9965.EPI-12-1131-T
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Xue-Hu Xu, Xiao-Bing Wu, Shang-Biao Wu, Hai-Bo Liu, Rong Chen, Yong Li, William B. Coleman. Identification of miRNAs Differentially Expressed in Clinical Stages of Human Colorectal Carcinoma—An Investigation in Guangzhou, ChinaPLoS ONE 2014; 9(4): e94060 doi: 10.1371/journal.pone.0094060
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Havjin Jacob, Luka Stanisavljevic, Kristian Eeg Storli, Kjersti E. Hestetun, Olav Dahl, Mette P. Myklebust. Identification of a sixteen-microRNA signature as prognostic biomarker for stage II and III colon cancerOncotarget 2017; 8(50): 87837 doi: 10.18632/oncotarget.21237
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Ya-Ching Lu, Joseph T Chang, Chun-Ta Liao, Chung-Jan Kang, Shiang-Fu Huang, I-How Chen, Chi-Che Huang, Yu-Chen Huang, Wen-Ho Chen, Chi-Ying Tsai, Hung-Ming Wang, Tzu-Chen Yen, Guo-Rung You, Chang-Hsu Chiang, Ann-Joy Cheng. OncomiR-196 promotes an invasive phenotype in oral cancer through the NME4-JNK-TIMP1-MMP signaling pathwayMolecular Cancer 2014; 13(1) doi: 10.1186/1476-4598-13-218
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Zhaohui Huang, Shenglin Huang, Qifeng Wang, Linhui Liang, Shujuan Ni, Lisha Wang, Weiqi Sheng, Xianghuo He, Xiang Du. MicroRNA-95 Promotes Cell Proliferation and Targets Sorting Nexin 1 in Human Colorectal CarcinomaCancer Research 2011; 71(7): 2582 doi: 10.1158/0008-5472.CAN-10-3032
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Sheyda Khalilian, Seyedeh Zahra Hosseini Imani, Hamid Abedinlou, Mohammad-Amin Omrani, Soudeh Ghafouri-Fard. miR-196a in the carcinogenesis and other disorders with an especial focus on its biomarker capacityPathology - Research and Practice 2024; 260: 155433 doi: 10.1016/j.prp.2024.155433
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Lin Liu, Jing Nie, Lin Chen, Guanglong Dong, Xiaohui Du, Xin Wu, Yun Tang, Weidong Han, Wael El-Rifai. The Oncogenic Role of microRNA-130a/301a/454 in Human Colorectal Cancer via Targeting Smad4 ExpressionPLoS ONE 2013; 8(2): e55532 doi: 10.1371/journal.pone.0055532
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Daniel W. Mueller, Anja Bosserhoff. Melanoma Development2011; : 105 doi: 10.1007/978-3-7091-0371-5_6
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Ji-peng Yang, Jian-kai Yang, Chen Li, Zhi-qiang Cui, Hong-jiang Liu, Xiao-feng Sun, Shao-mei Geng, Sheng-kui Lu, Jian Song, Cheng-yong Guo, Bao-hua Jiao. Downregulation of ZMYND11 induced by miR-196a-5p promotes the progression and growth of GBMBiochemical and Biophysical Research Communications 2017; 494(3-4): 674 doi: 10.1016/j.bbrc.2017.10.098
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Zhong-hua HUO, Jun HU, Zhu-ling CHU, Bo SONG, Sheng LV, Peng YIN. Effects of miRNA-136 overexpression on S100 calcium binding protein A6 contents, proliferation and apoptosis in HCT116 cellsAcademic Journal of Second Military Medical University 2013; 32(9): 940 doi: 10.3724/SP.J.1008.2012.00940
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Niamh M Hogan, Myles R Joyce, Michael J Kerin. miRNAs as colorectal cancer biomarkers: current progress and future challengesColorectal Cancer 2013; 2(5): 419 doi: 10.2217/crc.13.46
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Sonam Takkar, Vikas Sharma, Sourabh Ghosh, Ashish Suri, Chitra Sarkar, Ritu Kulshreshtha. Hypoxia-inducible miR-196a modulates glioblastoma cell proliferation and migration through complex regulation of NRASCellular Oncology 2021; 44(2): 433 doi: 10.1007/s13402-020-00580-y
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Jing Lu, Hao Gu, Qiuqin Tang, Wei Wu, Beilei Yuan, Dan Guo, Yongyue Wei, Hong Sun, Yankai Xia, Hongjuan Ding, Lingqing Hu, Daozhen Chen, Jiahao Sha, Xinru Wang. Common SNP in hsa-miR-196a-2 increases hsa-miR-196a-5p expression and predisposes to idiopathic male infertility in Chinese Han populationScientific Reports 2016; 6(1) doi: 10.1038/srep19825
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Robin A. Wilson, William Deasy, Alan Hayes, Matthew B. Cooke. High fat diet and associated changes in the expression of micro‐RNAsin tissue: Lessons learned from animal studiesMolecular Nutrition & Food Research 2017; 61(6) doi: 10.1002/mnfr.201600943
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Jianzhong Jeff Xi. RNA and CancerCancer Treatment and Research 2013; 158: 119 doi: 10.1007/978-3-642-31659-3_5
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