For: | Tian ZQ, Shi JW, Wang XR, Li Z, Wang GY. New cancer suppressor gene for colorectal adenocarcinoma: Filamin A. World J Gastroenterol 2015; 21(7): 2199-2205 [PMID: 25717257 DOI: 10.3748/wjg.v21.i7.2199] |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v21/i7/2199.htm |
Number | Citing Articles |
1 |
Qian-Qian Shao, Tai-Ping Zhang, Wen-Jing Zhao, Zi-Wen Liu, Lei You, Li Zhou, Jun-Chao Guo, Yu-Pei Zhao. Filamin A: Insights into its Exact Role in Cancers. Pathology & Oncology Research 2016; 22(2): 245 doi: 10.1007/s12253-015-9980-1
|
2 |
Zhihua Gao, Jiabao Wang, Yuru Bai, Jun Bao, Erqing Dai. Identification and Verification of the Main Differentially Expressed Proteins in Gastric Cancer via iTRAQ Combined with Liquid Chromatography-Mass Spectrometry. Analytical Cellular Pathology 2019; 2019: 1 doi: 10.1155/2019/5310684
|
3 |
Tie Liu, Zhuang-Qin Zhang, Xia Xiao, Xiao-Qian Li. Bioassay-guided isolation of anti-tumor polyprenylphloroglucinols from Calophyllum polyanthum and primary mechanism. Biomedicine & Pharmacotherapy 2022; 151: 113129 doi: 10.1016/j.biopha.2022.113129
|
4 |
Larissa Kotelevets, Eric Chastre. Rac1 Signaling: From Intestinal Homeostasis to Colorectal Cancer Metastasis. Cancers 2020; 12(3): 665 doi: 10.3390/cancers12030665
|
5 |
Donatella Treppiedi, Rosa Catalano, Federica Mangili, Giovanna Mantovani, Erika Peverelli. Role of filamin A in the pathogenesis of neuroendocrine tumors and adrenal cancer. Endocrine Oncology 2022; 2(1): R143 doi: 10.1530/EO-22-0055
|
6 |
Zhenfan Wang, Shuqing He, Minjun Jiang, Xue Li, Na Chen. Mechanism Study on Radiosensitization Effect of Curcumin in Bladder Cancer Cells Regulated by Filamin A. Dose-Response 2022; 20(2) doi: 10.1177/15593258221100997
|
7 |
Pia Giovannelli, Marzia Di Donato, Fabrizio Licitra, Emilia Sabbatino, Viviana Tutino, Gabriella Castoria, Antimo Migliaccio. Filamin A in triple negative breast cancer. Steroids 2024; 205: 109380 doi: 10.1016/j.steroids.2024.109380
|
8 |
Gemma Ferrer-Mayorga, Alberto Muñoz, José Manuel González-Sancho. Feldman and Pike's Vitamin D. 2024; : 859 doi: 10.1016/B978-0-323-91338-6.00039-2
|
9 |
Carolina Silva, Cátia Santa, Sandra Isabel Anjo, Bruno Manadas. A reference library of peripheral blood mononuclear cells for SWATH‐MS analysis. PROTEOMICS – Clinical Applications 2016; 10(7): 760 doi: 10.1002/prca.201600070
|
10 |
Gati K. Panigrahi, Prakash P. Praharaj, Hiroki Kittaka, Asit R. Mridha, Olen M. Black, Rakesh Singh, Roger Mercer, Adrie van Bokhoven, Kathleen C. Torkko, Chapla Agarwal, Rajesh Agarwal, Zakaria Y. Abd Elmageed, Hariom Yadav, Santosh K. Mishra, Gagan Deep. Exosome proteomic analyses identify inflammatory phenotype and novel biomarkers in African American prostate cancer patients. Cancer Medicine 2019; 8(3): 1110 doi: 10.1002/cam4.1885
|
11 |
Haotang Wei, Jilin Li, Minzhi Xie, Ronger Lei, Bangli Hu. Comprehensive analysis of metastasis-related genes reveals a gene signature predicting the survival of colon cancer patients. PeerJ 2018; 6: e5433 doi: 10.7717/peerj.5433
|
12 |
Magdalena Izdebska, Wioletta Zielińska, Marta Hałas-Wiśniewska, Alina Grzanka. Involvement of Actin and Actin-Binding Proteins in Carcinogenesis. Cells 2020; 9(10): 2245 doi: 10.3390/cells9102245
|
13 |
Sen Wang, Geng Chen, Xiao Lin, Xiaohua Xing, Zhixiong Cai, Xiaolong Liu, Jingfeng Liu. Role of exosomes in hepatocellular carcinoma cell mobility alteration. Oncology Letters 2017; doi: 10.3892/ol.2017.7257
|
14 |
Li Qian, Yue Wang, Yuzhen Xiong, Hetian Ren, Shili Liu, Dandan Chen, Yang Liu. LINC01002 Targets miR-650/FLNA Pathway to Suppress Prostate Cancer Progression. Urologia Internationalis 2023; 107(5): 526 doi: 10.1159/000529947
|
15 |
Antonio Barbáchano, María Jesús Larriba, Gemma Ferrer-Mayorga, José Manuel González-Sancho, Alberto Muñoz. Vitamin D. 2018; : 837 doi: 10.1016/B978-0-12-809963-6.00099-7
|