For: | Wu XL, Cheng B, Li PY, Huang HJ, Zhao Q, Dan ZL, Tian DA, Zhang P. MicroRNA-143 suppresses gastric cancer cell growth and induces apoptosis by targeting COX-2. World J Gastroenterol 2013; 19(43): 7758-7765 [PMID: 24616567 DOI: 10.3748/wjg.v19.i43.7758] |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v19/i43/7758.htm |
Number | Citing Articles |
1 |
Hao Fan, Yugang Ge, Xiang Ma, Zengliang Li, Liang Shi, Linling Lin, Jian Xiao, Wangwang Chen, Peidong Ni, Li Yang, Zekuan Xu. Long non-coding RNA CCDC144NL-AS1 sponges miR-143-3p and regulates MAP3K7 by acting as a competing endogenous RNA in gastric cancer. Cell Death & Disease 2020; 11(7) doi: 10.1038/s41419-020-02740-2
|
2 |
Jianfeng Liu, Haiyue Li, Yuanwei Liu, Yao Sun, Jiamin Wu, Zichao Xiong, Bin Li, Tianbo Jin. MiR-143HG Gene Polymorphisms as Risk Factors for Gastric Cancer in Chinese Han Population. Current Molecular Medicine 2020; 20(7): 536 doi: 10.2174/1566524020666191227103144
|
3 |
Bao‐Liang Wang, Zhi Wang, Xi Nan, Qing‐Cai Zhang, Wei Liu. Downregulation of microRNA‐143‐5p is required for the promotion of odontoblasts differentiation of human dental pulp stem cells through the activation of the mitogen‐activated protein kinases 14‐dependent p38 mitogen‐activated protein kinases signaling pathway. Journal of Cellular Physiology 2019; 234(4): 4840 doi: 10.1002/jcp.27282
|
4 |
Xiumei Jiang, Wenfei Wang, Yongmei Yang, Lutao Du, Xiaoyun Yang, Lili Wang, Guixi Zheng, Weili Duan, Rui Wang, Xin Zhang, Lishui Wang, Xiaoyang Chen, Chuanxin Wang. Identification of circulating microRNA signatures as potential noninvasive biomarkers for prediction and prognosis of lymph node metastasis in gastric cancer. Oncotarget 2017; 8(39): 65132 doi: 10.18632/oncotarget.17789
|
5 |
Chengliang Yang, Sining Shen, Xiaoli Zheng, Ke Ye, Yanan Sun, Yufei Lu, Hong Ge. Long noncoding RNA HAGLR acts as a microRNA‐143‐5p sponge to regulate epithelial‐mesenchymal transition and metastatic potential in esophageal cancer by regulating LAMP3. The FASEB Journal 2019; 33(9): 10490 doi: 10.1096/fj.201802543RR
|
6 |
Fernando F. Blanco, Noémie Legrand, Cyril Sobolewski, Dan A. Dixon. Post-transcriptional Mechanisms in Endocrine Regulation. 2016; : 181 doi: 10.1007/978-3-319-25124-0_9
|
7 |
Nadim Tawil, Janusz Rak. Blood coagulation and cancer genes. Best Practice & Research Clinical Haematology 2022; 35(1): 101349 doi: 10.1016/j.beha.2022.101349
|
8 |
Ke-Shu Shan, Wei-Wei Li, Wang Ren, Shuai Kong, Li-Pan Peng, Hong-Qing Zhuo, Shu-Bo Tian. LncRNA cancer susceptibility 20 regulates the metastasis of human gastric cancer cells <i>via</i> the miR-143-5p/MEMO1 molecular axis. World Journal of Gastroenterology 2022; 28(16): 1656-1670 doi: 10.3748/wjg.v28.i16.1656
|
9 |
XUKUI ZHANG, LUMING ZHENG, YINGGANG SUN, TIANXIAO WANG, BAOCHENG WANG. Tangeretin enhances radiosensitivity and inhibits the radiation-induced epithelial-mesenchymal transition of gastric cancer cells. Oncology Reports 2015; 34(1): 302 doi: 10.3892/or.2015.3982
|
10 |
Qing Yang, Ren-Wen Zhang, Peng-Cheng Sui, Hai-Tao He, Lei Ding. Dysregulation of non-coding RNAs in gastric cancer. World Journal of Gastroenterology 2015; 21(39): 10956-10981 doi: 10.3748/wjg.v21.i39.10956
|
11 |
Zhimin Chen, Dawei Gu, Ming Zhou, Hui Shi, Shu Yan, Yunqing Cai. Regulatory role of miR-125a/b in the suppression by selenium of cadmium-induced apoptosis via the mitochondrial pathway in LLC-PK1 cells. Chemico-Biological Interactions 2016; 243: 35 doi: 10.1016/j.cbi.2015.11.016
|
12 |
Masumi Wada, Yusuke Goto, Takako Tanaka, Reona Okada, Shogo Moriya, Tetsuya Idichi, Masahiro Noda, Ken Sasaki, Yoshiaki Kita, Hiroshi Kurahara, Kosei Maemura, Shoji Natsugoe, Naohiko Seki. RNA sequencing-based microRNA expression signature in esophageal squamous cell carcinoma: oncogenic targets by antitumor miR-143-5p and miR-143-3p regulation. Journal of Human Genetics 2020; 65(11): 1019 doi: 10.1038/s10038-020-0795-x
|
13 |
Nadim Tawil, Shilpa Chennakrishnaiah, Rayhaan Bassawon, Radia Johnson, Esterina D'Asti, Janusz Rak. Single cell coagulomes as constituents of the oncogene-driven coagulant phenotype in brain tumours. Thrombosis Research 2018; 164: S136 doi: 10.1016/j.thromres.2018.01.021
|
14 |
Quan Zhang, Yong Feng, Ping Liu, Jing Yang. MiR-143 inhibits cell proliferation and invasion by targeting DNMT3A in gastric cancer. Tumor Biology 2017; 39(7): 101042831771131 doi: 10.1177/1010428317711312
|
15 |
ZHUANGQING YANG, DEDIAN CHEN, JIANYUN NIE, SHAOQIANG ZHOU, JIANKUI WANG, QI TANG, XIAOJUAN YANG. MicroRNA-143 targets CD44 to inhibit breast cancer progression and stem cell-like properties. Molecular Medicine Reports 2016; 13(6): 5193 doi: 10.3892/mmr.2016.5194
|
16 |
Mao Guoping, Liu Ran, Qin Yanru. miR-143 Inhibits Cell Proliferation of Gastric Cancer Cells Through Targeting GATA6. Oncology Research Featuring Preclinical and Clinical Cancer Therapeutics 2018; 26(7): 1023 doi: 10.3727/096504018X15151515028670
|
17 |
Leila Karimi, Behzad Mansoori, Dariush shanebandi, Ali Mohammadi, Mahyar Aghapour, Behzad Baradaran. Function of microRNA-143 in different signal pathways in cancer: New insights into cancer therapy. Biomedicine & Pharmacotherapy 2017; 91: 121 doi: 10.1016/j.biopha.2017.04.060
|
18 |
Azar Shams, Ronak Shabani, Hamidreza Asgari, Mahdi Karimi, Mohammad Najafi, Mohammad Asghari-Jafarabadi, Seyed Mohsen Razavi, Seyed Rouhollah Miri, Mehdi Abbasi, Amirhossein Mohammadi, Morteza Koruji.
In Vitro
Elimination of EL4 Cancer Cells From Spermatogonia Stem Cells by Mirna-143- and 206-Loaded Folic Acid-Conjugated Plga Nanoparticles
. Nanomedicine 2022; 17(8): 531 doi: 10.2217/nnm-2021-0210
|
19 |
Miao Wang, Zeqian Gao, Li Pan, Yongguang Zhang. Cellular microRNAs and Picornaviral Infections. RNA Biology 2014; 11(7): 808 doi: 10.4161/rna.29357
|
20 |
Shingo Minatoguchi, Nobuhiko Sugito, Kazuki Heishima, Yuko Ito, Remi Nakashima, Hiroyuki Okura, Yukihiro Akao, Shinya Minatoguchi. Restoration effect of chemically modified microRNA-143-3p on acute myocardial infarction in animal models. Scientific Reports 2025; 15(1) doi: 10.1038/s41598-024-76429-3
|
21 |
Hong-Bo Zhang, Li-Chao Sun, Lan Ling, Lu-Hong Cong, Rui Lian. miR-143 suppresses the proliferation of NSCLC cells by inhibiting the epidermal growth factor receptor. Experimental and Therapeutic Medicine 2016; 12(3): 1795 doi: 10.3892/etm.2016.3555
|
22 |
Zhenyue He, Jun Yi, Xiaolong Liu, Jing Chen, Siqi Han, Li Jin, Longbang Chen, Haizhu Song. RETRACTED ARTICLE: MiR-143-3p functions as a tumor suppressor by regulating cell proliferation, invasion and epithelial–mesenchymal transition by targeting QKI-5 in esophageal squamous cell carcinoma. Molecular Cancer 2016; 15(1) doi: 10.1186/s12943-016-0533-3
|
23 |
Ruoting Men, Maoyao Wen, Mingyue Zhao, Xuelian Dan, Zongze Yang, Wenchao Wu, Maggie Haitian Wang, Xiaojing Liu, Li Yang. MircoRNA-145 promotes activation of hepatic stellate cells via targeting krüppel-like factor 4. Scientific Reports 2017; 7(1) doi: 10.1038/srep40468
|
24 |
Meiying Zhou, Xiaohong Chen, Jian Wu, Xiaoyan He, Rui Ren. MicroRNA‑143 regulates cell migration and invasion by targeting GOLM1 in cervical cancer. Oncology Letters 2018; doi: 10.3892/ol.2018.9441
|
25 |
Weifeng Wang, Zhuo Zhang, Yundong Li, Anqi Gu, Yingyin Wang, Yizheng Cai, Yajie Yu, Xiaocong Deng. Down-regulated long non-coding RNA LHFPL3 antisense RNA 1 inhibits the radiotherapy resistance of nasopharyngeal carcinoma via modulating microRNA-143-5p/homeobox A6 axis. Bioengineered 2022; 13(3): 5421 doi: 10.1080/21655979.2021.2024386
|
26 |
Rocío Retamales-Ortega, Lorena Oróstica, Carolina Vera, Paula Cuevas, Andrea Hernández, Iván Hurtado, Margarita Vega, Carmen Romero. Role of Nerve Growth Factor (NGF) and miRNAs in Epithelial Ovarian Cancer. International Journal of Molecular Sciences 2017; 18(3): 507 doi: 10.3390/ijms18030507
|
27 |
Hiroki Sanada, Naohiko Seki, Keiko Mizuno, Shunsuke Misono, Akifumi Uchida, Yasutaka Yamada, Shogo Moriya, Naoko Kikkawa, Kentaro Machida, Tomohiro Kumamoto, Takayuki Suetsugu, Hiromasa Inoue. Involvement of Dual Strands of miR-143 (miR-143-5p and miR-143-3p) and Their Target Oncogenes in the Molecular Pathogenesis of Lung Adenocarcinoma. International Journal of Molecular Sciences 2019; 20(18): 4482 doi: 10.3390/ijms20184482
|
28 |
Ramkrishna Mitra, Clare M. Adams, Wei Jiang, Evan Greenawalt, Christine M. Eischen. Pan-cancer analysis reveals cooperativity of both strands of microRNA that regulate tumorigenesis and patient survival. Nature Communications 2020; 11(1) doi: 10.1038/s41467-020-14713-2
|
29 |
Song Zhang, Kuerbannisha Amahong, Chenyang Zhang, Fengcheng Li, Jianqing Gao, Yunqing Qiu, Feng Zhu. RNA–RNA interactions between SARS-CoV-2 and host benefit viral development and evolution during COVID-19 infection. Briefings in Bioinformatics 2022; 23(1) doi: 10.1093/bib/bbab397
|
30 |
Xian Wang, Zhou Song, Qingyu Meng, Shaoyou Xia, Chunxi Wang, Xiaohui Huang. Circular RNA circ_0006089 regulates the IGF1R expression by targeting miR-143-3p to promote gastric cancer proliferation, migration and invasion. Cell Cycle 2022; : 1 doi: 10.1080/15384101.2022.2075197
|
31 |
Kelly Cristina da Silva Oliveira, Taíssa Maíra Thomaz Araújo, Camila Inagaki Albuquerque, Gabriela Alcantara Barata, Carolina Oliveira Gigek, Mariana Ferreira Leal, Fernanda Wisnieski, Fernando Augusto Rodrigues Mello Junior, André Salim Khayat, Paulo Pimentel de Assumpção, Rommel Mário Rodriguez Burbano, Marília Cardoso Smith, Danielle Queiroz Calcagno. Role of miRNAs and their potential to be useful as diagnostic and prognostic biomarkers in gastric cancer. World Journal of Gastroenterology 2016; 22(35): 7951-7962 doi: 10.3748/wjg.v22.i35.7951
|
32 |
Fu‐Liang Zhan, Xin‐Yang Liu, Xing‐Bo Wang. Retracted: The Role of MicroRNA‐143‐5p in the Differentiation of Dental Pulp Stem Cells into Odontoblasts by Targeting Runx2 via the OPG/RANKL Signaling Pathway. Journal of Cellular Biochemistry 2018; 119(1): 536 doi: 10.1002/jcb.26212
|
33 |
Wenting He, Dachuan Zhang, Dong Li, Danxia Zhu, Yiting Geng, Qi Wang, Jiajia He, Jun Wu. Knockdown of Long Non-coding RNA LINC00200 Inhibits Gastric Cancer Progression by Regulating miR-143-3p/SERPINE1 Axis. Digestive Diseases and Sciences 2021; 66(10): 3404 doi: 10.1007/s10620-020-06691-8
|
34 |
Qiang Yao, Anxin Gu, Zhuozhong Wang, Yingwei Xue. MicroRNA-144 functions as a tumor suppressor in gastric cancer by targeting cyclooxygenase-2. Experimental and Therapeutic Medicine 2018; doi: 10.3892/etm.2018.5763
|
35 |
Raitis Peculis, Helvijs Niedra, Vita Rovite. Large Scale Molecular Studies of Pituitary Neuroendocrine Tumors: Novel Markers, Mechanisms and Translational Perspectives. Cancers 2021; 13(6): 1395 doi: 10.3390/cancers13061395
|
36 |
Fazli Wahid, Taous Khan, You Young Kim. MicroRNA and diseases: Therapeutic potential as new generation of drugs. Biochimie 2014; 104: 12 doi: 10.1016/j.biochi.2014.05.004
|
37 |
Nadim Tawil, Cristiana Spinelli, Rayhaan Bassawon, Janusz Rak. Genetic and epigenetic regulation of cancer coagulome – lessons from heterogeneity of cancer cell populations. Thrombosis Research 2020; 191: S99 doi: 10.1016/S0049-3848(20)30405-9
|
38 |
Yuwei Ye, Min Liu, Hao Yuan, Shupeng Ning, Yuping Wang, Zhaofeng Chen, Rui Ji, Qinghong Guo, Qiang Li, Yongning Zhou. COX-2 regulates Snail expression in gastric cancer via the Notch1 signaling pathway. International Journal of Molecular Medicine 2017; 40(2): 512 doi: 10.3892/ijmm.2017.3011
|
39 |
Changwei Yang, Ru Jia, Qiliang Zuo, Yanfen Zheng, Qianju Wu, Bizhu Luo, Pingting Lin, Lu Yin. microRNA‐143‐3p regulates odontogenic differentiation of human dental pulp stem cells through regulation of the osteoprotegerin–RANK ligand pathway by targeting RANK. Experimental Physiology 2020; 105(5): 876 doi: 10.1113/EP087992
|
40 |
Yeongdon Ju, Go-Eun Choi, Moon Won Lee, Myeongguk Jeong, Hyeokjin Kwon, Dong Hyeok Kim, Jungho Kim, Hyunwoo Jin, Kyung Eun Lee, Kyung-Yae Hyun, Aelee Jang. Identification of miR-143-3p as a diagnostic biomarker in gastric cancer. BMC Medical Genomics 2023; 16(1) doi: 10.1186/s12920-023-01554-3
|
41 |
JI-TAI ZHANG, QIAN-YING CAI, SI-SI JI, HENG-XIN ZHANG, YU-HUAN WANG, HONG-TAO YAN, XIN-JUN YANG. Decreased miR-143 and increased miR-21 placental expression levels are associated with macrosomia. Molecular Medicine Reports 2016; 13(4): 3273 doi: 10.3892/mmr.2016.4892
|
42 |
Xuejing Jin, Xiangjian Chen, Yan Hu, Furong Ying, Ruanmin Zou, Feng Lin, Zhengzheng Shi, Xuejie Zhu, Xiaojian Yan, Shi Li, Hua Zhu. LncRNA‐TCONS_00026907 is involved in the progression and prognosis of cervical cancer through inhibiting miR‐143‐5p. Cancer Medicine 2017; 6(6): 1409 doi: 10.1002/cam4.1084
|
43 |
Mohammad Roshani, Danial Molavizadeh, Sara Sadeghi, Ameneh Jafari, Fatemeh Dashti, Seyed Mohammad Ali Mirazimi, Sahar Ahmadi Asouri, Ali Rajabi, Michael R. Hamblin, Ali Arash Anoushirvani, Hamed Mirzaei. Emerging roles of miR-145 in gastrointestinal cancers: A new paradigm. Biomedicine & Pharmacotherapy 2023; 166: 115264 doi: 10.1016/j.biopha.2023.115264
|
44 |
Z Zhang, Z Li, Y Li, A Zang. MicroRNA and signaling pathways in gastric cancer. Cancer Gene Therapy 2014; 21(8): 305 doi: 10.1038/cgt.2014.37
|
45 |
Shahid Mahmood, Attya Bhatti, Nida Ali Syed, Peter John. The microRNA regulatory network: a far-reaching approach to the regulate the Wnt signaling pathway in number of diseases. Journal of Receptors and Signal Transduction 2016; 36(3): 310 doi: 10.3109/10799893.2015.1080273
|
46 |
Fang Zheng, Jiahe Zhang, Siyu Luo, Jing Yi, Ping Wang, Quanqing Zheng, Yurong Wen. miR-143 is associated with proliferation and apoptosis involving ERK5 in HeLa cells. Oncology Letters 2016; 12(4): 3021 doi: 10.3892/ol.2016.5016
|
47 |
Anna Falanga, Francesca Schieppati, Laura Russo. Thrombosis and Hemostasis in Cancer. Cancer Treatment and Research 2019; 179: 11 doi: 10.1007/978-3-030-20315-3_2
|
48 |
Yan Wang, Jinnan Zhang, Wei Zhao, Donglin Wang, Wenduan Ma, Shengtao Shang, Chao Feng, Haixin Yu. MicroRNA expression in esophageal squamous cell carcinoma: Novel diagnostic and prognostic biomarkers. Molecular Medicine Reports 2017; 15(6): 3833 doi: 10.3892/mmr.2017.6479
|
49 |
Zhe Zhang, Cheng-Zhen Chen, Ming-Qiang Xu, Li-Qun Zhang, Jian-Bo Liu, Yan Gao, Hao Jiang, Bao Yuan, Jia-Bao Zhang. MiR-31 and miR-143 affect steroid hormone synthesis and inhibit cell apoptosis in bovine granulosa cells through FSHR. Theriogenology 2019; 123: 45 doi: 10.1016/j.theriogenology.2018.09.020
|
50 |
Elena A. Pudova, George S. Krasnov, Kirill M. Nyushko, Anastasiya A. Kobelyatskaya, Maria V. Savvateeva, Andrey A. Poloznikov, Daniyar R. Dolotkazin, Kseniya M. Klimina, Zulfiya G. Guvatova, Sergey A. Simanovsky, Nataliya S. Gladysh, Artemy T. Tokarev, Nataliya V. Melnikova, Alexey A. Dmitriev, Boris Y. Alekseev, Andrey D. Kaprin, Marina V. Kiseleva, Anastasiya V. Snezhkina, Anna V. Kudryavtseva. miRNAs expression signature potentially associated with lymphatic dissemination in locally advanced prostate cancer. BMC Medical Genomics 2020; 13(S8) doi: 10.1186/s12920-020-00788-9
|
51 |
Huang Bixin, Zheng Yuling, Mai Ying, Chen Jinming, Zhongqi Zhang. Regulation of Osteosarcoma Cell Proliferation, Migration, and Invasion by miR-143 and miR-199a Through COX-2 Targeting. Dose-Response 2024; 22(2) doi: 10.1177/15593258241264947
|
52 |
W. Yu, X. Nan, M. Schroyen, Y. Wang, B. Xiong. Inulin-induced differences on serum extracellular vesicles derived miRNAs in dairy cows suffering from subclinical mastitis. animal 2023; 17(9): 100954 doi: 10.1016/j.animal.2023.100954
|
53 |
Nasrin Mirzaei, Farkhondeh Poursina, Sharareh Moghim, Niloufar Rashidi, Hajieh Ghasemian Safaei. The study ofH. pyloriputative candidate factors for single- and multi-component vaccine development. Critical Reviews in Microbiology 2017; 43(5): 631 doi: 10.1080/1040841X.2017.1291578
|
54 |
Wenchao Ding, Jiaojiao Xin, Longyan Jiang, Qian Zhou, Tianzhou Wu, Dongyan Shi, Biaoyang Lin, Lanjuan Li, Jun Li. Characterisation of peripheral blood mononuclear cell microRNA in hepatitis B-related acute-on-chronic liver failure. Scientific Reports 2015; 5(1) doi: 10.1038/srep13098
|
55 |
Ke Wang, Mingwei Chen, Wei Wu. Analysis of microRNA (miRNA) expression profiles reveals 11 key biomarkers associated with non-small cell lung cancer. World Journal of Surgical Oncology 2017; 15(1) doi: 10.1186/s12957-017-1244-y
|
56 |
Chiara De Santi, Sucharitha Gadi, Agnieszka Swiatecka-Urban, Catherine M. Greene. Identification of a novel functional miR-143-5p recognition element in the Cystic Fibrosis Transmembrane Conductance Regulator 3’UTR. AIMS Genetics 2018; 5(01): 053 doi: 10.3934/genet.2018.1.53
|
57 |
Li Zhang, XiaoXin Zhang, Xuejing Zhang, Yu Lu, Lei Li, Sheng Cui. MiRNA-143 mediates the proliferative signaling pathway of FSH and regulates estradiol production. Journal of Endocrinology 2017; 234(1): 1 doi: 10.1530/JOE-16-0488
|
58 |
Yoshihisa Tokumaru, Toshihiro Tajirika, Nobuhiko Sugito, Yuki Kuranaga, Haruka Shinohara, Takuya Tsujino, Nobuhisa Matsuhashi, Manabu Futamura, Yukihiro Akao, Kazuhiro Yoshida. Synthetic miR-143 Inhibits Growth of HER2-Positive Gastric Cancer Cells by Suppressing KRAS Networks Including DDX6 RNA Helicase. International Journal of Molecular Sciences 2019; 20(7): 1697 doi: 10.3390/ijms20071697
|
59 |
Guang Rong Lin, Wei Rong Chen, Pei Hong Zheng, Wei Shan Chen, Gao Yang Cai. Circular RNA circ_0006089 promotes the progression of gastric cancer by regulating the miR‐143‐3p/PTBP3 axis and PI3K/AKT signaling pathway. Journal of Digestive Diseases 2022; 23(7): 376 doi: 10.1111/1751-2980.13116
|
60 |
Adenilson Pereira, Fabiano Moreira, Tatiana Vinasco-Sandoval, Adenard Cunha, Amanda Vidal, André M. Ribeiro-dos-Santos, Pablo Pinto, Leandro Magalhães, Mônica Assumpção, Samia Demachki, Sidney Santos, Paulo Assumpção, Ândrea Ribeiro-dos-Santos. miRNome Reveals New Insights Into the Molecular Biology of Field Cancerization in Gastric Cancer. Frontiers in Genetics 2019; 10 doi: 10.3389/fgene.2019.00592
|
61 |
Shao-Jun Huang, Yu-Fang Zhu, Zeng Liu, Qing-Feng Li, Zhao-Yuan Li, Wen-Rong Fu. Study of miR-143 expression in stomach cancer. Oncology Letters 2018; doi: 10.3892/ol.2018.9173
|
62 |
Md. Tofazzal Hossain, Song Li, Md. Selim Reza, Shengzhong Feng, Xiaojing Zhang, Zhe Jin, Yanjie Wei, Yin Peng. Identification of circRNA Biomarker for Gastric Cancer through Integrated Analysis. Frontiers in Molecular Biosciences 2022; 9 doi: 10.3389/fmolb.2022.857320
|
63 |
YONGCHAO FANG, ZHIQIANG ZHANG, QIANG WANG, JIANNING ZHAO. Expression and clinical significance of cyclooxygenase-2 and microRNA-143 in osteosarcoma. Experimental and Therapeutic Medicine 2015; 9(6): 2374 doi: 10.3892/etm.2015.2420
|
64 |
Wei-hua Li, Hao-jie Wu, Yu-xia Li, Hua-gang Pan, Tao Meng, Xiao Wang. MicroRNA-143 promotes apoptosis of osteosarcoma cells by caspase-3 activation via targeting Bcl-2. Biomedicine & Pharmacotherapy 2016; 80: 8 doi: 10.1016/j.biopha.2016.03.001
|
65 |
Li Liang, Lingling Zhang, Dejun Cui, Daping Yang. Identification of the key miRNAs associated with survival time in stomach adenocarcinoma. Oncology Letters 2017; 14(4): 4563 doi: 10.3892/ol.2017.6792
|
66 |
Zijun Meng, Xiaoyi Zhong, Dan Liang, Xuemeng Ma, Wenxia Chen, Xuan He. MiR‐143‐5p regulates the proangiogenic potential of human dental pulp stem cells by targeting HIF‐1α/RORA under hypoxia: A laboratory investigation in pulp regeneration. International Endodontic Journal 2024; 57(12): 1802 doi: 10.1111/iej.14133
|
67 |
Byung-Jo Choi, Dosang Lee, Jung Hyun Park, Tae Ho Hong, Ok-Hee Kim, Sang Chul Lee, Kee-Hwan Kim, Ho Joong Choi, Say-June Kim. Innovative Therapeutic Delivery of Metastasis-Associated in Colon Cancer 1-Suppressing miRNA Using High Transmembrane 4 L6 Family Member 5-Targeting Exosomes in Colorectal Cancer Mouse Models. International Journal of Molecular Sciences 2024; 25(17): 9232 doi: 10.3390/ijms25179232
|
68 |
Pengwu Zhang, Chen Sun, Shengjie Lin, Chong Lu, Zhenyu Wen, Zhenjian Ge, Wenkang Chen, Yingqi Li, Yutong Wu, Xutai Li, Huimei Zhou, Siwei Chen, Wuping Wang, Hang Li, Yongqing Lai. Serum mature microRNA panel: A novel approach for primary prostate cancer diagnosis. Clinica Chimica Acta 2025; 569: 120150 doi: 10.1016/j.cca.2025.120150
|
69 |
Ani V. Das, Radhakrishna M. Pillai. Implications of miR cluster 143/145 as universal anti-oncomiRs and their dysregulation during tumorigenesis. Cancer Cell International 2015; 15(1) doi: 10.1186/s12935-015-0247-4
|
70 |
Li‐Bo Chen, Zhe An, Hai‐Kuo Zheng, Xin‐Peng Wang, Rui‐Ting Shan, Cui‐Ying Mao, Wen‐Qi Zhang. MicroRNA‐34c suppresses proliferation of vascular smooth muscle cell via modulating high mobility group box protein 1. Journal of Clinical Laboratory Analysis 2020; 34(7) doi: 10.1002/jcla.23293
|
71 |
Simon Müller, Alice Wedler, Janina Breuer, Markus Glaß, Nadine Bley, Marcell Lederer, Jacob Haase, Claudia Misiak, Tommy Fuchs, Alina Ottmann, Tessa Schmachtel, Lyudmila Shalamova, Alexander Ewe, Achim Aigner, Oliver Rossbach, Stefan Hüttelmaier. Synthetic circular miR-21 RNA decoys enhance tumor suppressor expression and impair tumor growth in mice. NAR Cancer 2020; 2(3) doi: 10.1093/narcan/zcaa014
|
72 |
Javad Behroozi, Shirin Shahbazi, Mohammad Reza Bakhtiarizadeh, Habibollah Mahmoodzadeh, Mohamed Salem. Genome-Wide Characterization of RNA Editing Sites in Primary Gastric Adenocarcinoma through RNA-seq Data Analysis. International Journal of Genomics 2020; 2020: 1 doi: 10.1155/2020/6493963
|
73 |
Vahid Asghariazar, Mahtab Kadkhodayi, Mehdi Sarailoo, Amir Ghaffari Jolfayi, Behzad Baradaran. MicroRNA-143 as a potential tumor suppressor in cancer: An insight into molecular targets and signaling pathways. Pathology - Research and Practice 2023; 250: 154792 doi: 10.1016/j.prp.2023.154792
|
74 |
Ying Gao, Dan Xu, Lei Zhao, Min Zhang, Yeqing Sun. Effects of microgravity on DNA damage response in Caenorhabditis elegans during Shenzhou-8 spaceflight. International Journal of Radiation Biology 2015; 91(7): 531 doi: 10.3109/09553002.2015.1043754
|
75 |
Liqiao Fan, Bibo Tan, Yong Li, Qun Zhao, Hufang Yuan, Yu Liu, Dong Wang, Zhidong Zhang. Upregulation of miR‑185 promotes apoptosis of the human gastric cancer cell line MGC803. Molecular Medicine Reports 2017; doi: 10.3892/mmr.2017.8206
|
76 |
QIANG BU, YUE FANG, YUAN CAO, QIAOYUN CHEN, YANGCHEN LIU. Enforced expression of miR-101 enhances cisplatin sensitivity in human bladder cancer cells by modulating the cyclooxygenase-2 pathway. Molecular Medicine Reports 2014; 10(4): 2203 doi: 10.3892/mmr.2014.2455
|
77 |
Tong Lu, Tong Qiu, Bin Han, Yuanyong Wang, Xiao Sun, Yi Qin, Ao Liu, Nan Ge, Wenjie Jiao. Circular RNA circCSNK1G3 induces HOXA10 signaling and promotes the growth and metastasis of lung adenocarcinoma cells through hsa-miR-143-3p sponging. Cellular Oncology 2021; 44(2): 297 doi: 10.1007/s13402-020-00565-x
|
78 |
Wenqian Qi, Qian Zhang. Development and clinical validation of a 3-miRNA signature to predict prognosis of gastric cancer. PeerJ 2021; 9: e10462 doi: 10.7717/peerj.10462
|
79 |
Jia Wu, Ying Zhu, Dandan Liu, Qingwei Cong, Changchuan Bai. Biological functions and potential mechanisms of miR‑143‑3p in cancers (Review). Oncology Reports 2024; 52(3) doi: 10.3892/or.2024.8772
|
80 |
Xiuli Yin, Shiying Sun, Junyan Zhao, Jing Yang, Xiaofei Lei, Changqing Xu, Kun Li. Rs4705342 polymorphism is involved in the tumorigenesis of HBV positive HCC by altering the binding affinity of HBV induced NF‐kB with the promoter region of microRNA‐143. Journal of Cellular Biochemistry 2018; 119(7): 5233 doi: 10.1002/jcb.26581
|
81 |
Noor A. Jihad, Hassan M. Naif. Evaluation of microRNA-20, -21 and -143 expression in human papilloma virus induced premalignant and malignant cervical lesions. Gene Reports 2020; 20: 100702 doi: 10.1016/j.genrep.2020.100702
|
82 |
Xinyi Gu, Shen Wang, Bo Jin, Zhidan Qi, Jin Deng, Chen Huang, Xiaofeng Yin. A pathway analysis-based algorithm for calculating the participation degree of ncRNA in transcriptome. Scientific Reports 2022; 12(1) doi: 10.1038/s41598-022-27178-8
|
83 |
Chunjie Xu, Lei Gu. The diagnostic effect of serum miR-196b as biomarker in colorectal cancer. Biomedical Reports 2017; 6(1): 39 doi: 10.3892/br.2016.815
|
84 |
Yanjun Qu, Haiyang Zhang, Jingjing Duan, Rui Liu, Ting Deng, Ming Bai, Dingzhi Huang, Hongli Li, Tao Ning, Le Zhang, Xia Wang, Shaohua Ge, Likun Zhou, Benfu Zhong, Guoguang Ying, Yi Ba. MiR-17-5p regulates cell proliferation and migration by targeting transforming growth factor-β receptor 2 in gastric cancer. Oncotarget 2016; 7(22): 33286 doi: 10.18632/oncotarget.8946
|
85 |
Carolina Vera, Rocío Retamales-Ortega, Maritza Garrido, Margarita Vega, Carmen Romero. Ovarian Cancer - From Pathogenesis to Treatment. 2018; doi: 10.5772/intechopen.73804
|
86 |
Elvira Donnarumma, Danilo Fiore, Martina Nappa, Giuseppina Roscigno, Assunta Adamo, Margherita Iaboni, Valentina Russo, Alessandra Affinito, Ilaria Puoti, Cristina Quintavalle, Anna Rienzo, Salvatore Piscuoglio, Renato Thomas, Gerolama Condorelli. Cancer-associated fibroblasts release exosomal microRNAs that dictate an aggressive phenotype in breast cancer. Oncotarget 2017; 8(12): 19592 doi: 10.18632/oncotarget.14752
|
87 |
W. Ruoming, Y. Zhen, Z. Tengteng, H. Jisheng. Retraction Note: Tumor suppressor microRNA-31 inhibits gastric carcinogenesis by targeting Smad4 and SGPP2. Cancer Gene Therapy 2021; 28(5): 545 doi: 10.1038/s41417-021-00325-5
|
88 |
Fang Wang, Jiatao Liu, Yanfeng Zou, Yang Jiao, Yawei Huang, Lulu Fan, Xiaoqiu Li, Hanqing Yu, Chengqun He, Wei Wei, Hua Wang, Guoping Sun. MicroRNA-143-3p, up-regulated in H. pylori-positive gastric cancer, suppresses tumor growth, migration and invasion by directly targeting AKT2. Oncotarget 2017; 8(17): 28711 doi: 10.18632/oncotarget.15646
|
89 |
Yu Yan, Li-Feng Wang, Rui-Fen Wang. Role of cancer-associated fibroblasts in invasion and metastasis of gastric cancer. World Journal of Gastroenterology 2015; 21(33): 9717-9726 doi: 10.3748/wjg.v21.i33.9717
|
90 |
Zhanshu Ma, Qi Gao, Wenjing Xin, Lei Wang, Yan Chen, Chang Su, Songyan Gao, Ruiling Sun. The role of miR-143-3p/FNDC1 axis on the progression of non-small cell lung cancer. European Journal of Histochemistry 2023; 67(2) doi: 10.4081/ejh.2023.3577
|
91 |
DAVID SMID, VLASTIMIL KULDA, KRISTYNA SRBECKA, DASA KUBACKOVA, JAN DOLEZAL, ONDREJ DAUM, RADEK KUCERA, ONDREJ TOPOLCAN, VLADISLAV TRESKA, TOMAS SKALICKY, MARTIN PESTA. Tissue microRNAs as predictive markers for gastric cancer patients undergoing palliative chemotherapy. International Journal of Oncology 2016; 48(6): 2693 doi: 10.3892/ijo.2016.3484
|
92 |
Yasmine K. Abd El Fattah, Ahmed I. Abulsoud, Sherihan G. AbdelHamid, Nadia M. Hamdy. Interactome battling of lncRNA CCDC144NL-AS1: Its role in the emergence and ferocity of cancer and beyond. International Journal of Biological Macromolecules 2022; 222: 1676 doi: 10.1016/j.ijbiomac.2022.09.209
|
93 |
Zahra Doosti, Syed Omar Ebrahimi, Mahshid Samie Ghahfarokhi, Somayeh Reiisi. Synergistic effects of miR‐143 with miR‐99a inhibited cell proliferation and induced apoptosis in breast cancer. Biotechnology and Applied Biochemistry 2024; 71(5): 993 doi: 10.1002/bab.2592
|
94 |
Shi Tian, Xing Su, Lu Qi, Xiao-Hua Jin, Yi Hu, Chun-Ling Wang, Xu Ma, Hong-Fei Xia. MiR-143 and rat embryo implantation. Biochimica et Biophysica Acta (BBA) - General Subjects 2015; 1850(4): 708 doi: 10.1016/j.bbagen.2014.11.023
|
95 |
Wanjun Li, Zhiwei Zhang, Baiyun Wang, Na Liang, Qier Zhou, Songkai Long. MicroRNA and cyclooxygenase-2 in breast cancer. Clinica Chimica Acta 2021; 522: 36 doi: 10.1016/j.cca.2021.08.007
|