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Cited by in CrossRef
For: Li Y, Liu YH, Hu YY, Chen L, Li JM. Special AT-rich sequence-binding protein 2 acts as a negative regulator of stemness in colorectal cancer cells. World J Gastroenterol 2016; 22(38): 8528-8539 [PMID: 27784965 DOI: 10.3748/wjg.v22.i38.8528]
URL: https://www.wjgnet.com/1007-9327/full/v22/i38/8528.htm
Number Citing Articles
1
Jingfeng Gu, Guiqi Wang, Haixia Liu, Chaohui Xiong. SATB2 targeted by methylated miR‐34c‐5p suppresses proliferation and metastasis attenuating the epithelial‐mesenchymal transition in colorectal cancerCell Proliferation 2018; 51(4) doi: 10.1111/cpr.12455
2
Huizhong Tian, Ziwei She, Xuejun Gao, Weiping Wang, Hua Tian. MicroRNA-31 regulates dental epithelial cell proliferation by targeting Satb2Biochemical and Biophysical Research Communications 2020; 532(2): 321 doi: 10.1016/j.bbrc.2020.07.138
3
Divya Khosla, Aditya Kumar Singla, Rahul Gupta, Rakesh Kapoor. Molecular Biomarkers for Cancer Diagnosis and Therapy2024; : 457 doi: 10.1007/978-981-99-3746-2_22
4
Xia Huang, Qiuman Chen, Wenping Luo, Mikhail Pakvasa, Yuxin Zhang, Liwen Zheng, Shuang Li, Zhuohui Yang, Huan Zeng, Fang Liang, Fugui Zhang, Daniel A. Hu, Kevin H. Qin, Eric J. Wang, David S. Qin, Russell R. Reid, Tong-Chuan He, Aravind Athiviraham, Mostafa El Dafrawy, Hongmei Zhang. SATB2: A versatile transcriptional regulator of craniofacial and skeleton development, neurogenesis and tumorigenesis, and its applications in regenerative medicineGenes & Diseases 2022; 9(1): 95 doi: 10.1016/j.gendis.2020.10.003
5
Dorothea Schulte, Dirk Geerts. MEIS transcription factors in development and diseaseDevelopment 2019; 146(16) doi: 10.1242/dev.174706
6
Jinlai Wei, Xiangru Zheng, Wenjun Li, Xiaoli Li, Zhongxue Fu. Sestrin2 reduces cancer stemness via Wnt/β-catenin signaling in colorectal cancerCancer Cell International 2022; 22(1) doi: 10.1186/s12935-022-02498-x
7
Kangjia Luo, Yvkun Zhang, Chao Xv, Jingjing Ji, Ge Lou, Xiaorong Guo, Meilun Chen, Yingjie Zhang, Huiying Wei, Mian Guo, Rui Huang, Shan Yu. Fusobacterium nucleatum, the communication with colorectal cancerBiomedicine & Pharmacotherapy 2019; 116: 108988 doi: 10.1016/j.biopha.2019.108988
8
Miguel Angel Sarabia-Sánchez, Angela Patricia Moreno-Londoño, María Cristina Castañeda-Patlán, Eduardo Alvarado-Ortiz, Juan Carlos Martínez-Morales, Martha Robles-Flores. Non-canonical Wnt/Ca2+ signaling is essential to promote self-renewal and proliferation in colon cancer stem cellsFrontiers in Oncology 2023; 13 doi: 10.3389/fonc.2023.1121787
9
Ying Li, Qiang-Long You, Sheng-Rong Zhang, Wei-Yuan Huang, Wen-Jun Zou, Wei Jie, Shu-Ji Li, Ji-Hong Liu, Chuang-Ye Lv, Jin Cong, Yu-Ying Hu, Tian-Ming Gao, Jian-Ming Li. Satb2 Ablation Impairs Hippocampus-Based Long-Term Spatial Memory and Short-Term Working Memory and Immediate Early Genes (IEGs)-Mediated Hippocampal Synaptic PlasticityMolecular Neurobiology 2017;  doi: 10.1007/s12035-017-0531-5
10
Weijie Dong, Yawen Chen, Naiying Qian, Guoqi Sima, Jianming Zhang, Zhiqin Guo, Changlin Wang. SATB2 knockdown decreases hypoxia‑induced autophagy and stemness in oral squamous cell carcinomaOncology Letters 2020; 20(1): 794 doi: 10.3892/ol.2020.11589
11
Rutika Naik, Sanjeev Galande. SATB family chromatin organizers as master regulators of tumor progressionOncogene 2019; 38(12): 1989 doi: 10.1038/s41388-018-0541-4
12
Mu Xu, Xueni Xu, Bei Pan, Xiaoxiang Chen, Kang Lin, Kaixuan Zeng, Xiangxiang Liu, Tao Xu, Li Sun, Jian Qin, Bangshun He, Yuqin Pan, Huiling Sun, Shukui Wang. LncRNA SATB2-AS1 inhibits tumor metastasis and affects the tumor immune cell microenvironment in colorectal cancer by regulating SATB2Molecular Cancer 2019; 18(1) doi: 10.1186/s12943-019-1063-6