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There are 5021 results for: content related to: NANOG regulates glioma stem cells and is essential in vivo acting in a cross-functional network with GLI1 and p53

  1. Regulation of NANOG in cancer cells

    Molecular Carcinogenesis

    Volume 54, Issue 9, September 2015, Pages: 679–687, Shuai Gong, Qiuhui Li, Collene R. Jeter, Qingxia Fan, Dean G. Tang and Bigang Liu

    Version of Record online : 27 MAY 2015, DOI: 10.1002/mc.22340

  2. You have full text access to this OnlineOpen article
    A GLI1-p53 inhibitory loop controls neural stem cell and tumour cell numbers

    The EMBO Journal

    Volume 28, Issue 6, March 18, 2009, Pages: 663–676, Barbara Stecca and Ariel Ruiz i Altaba

    Version of Record online : 12 FEB 2009, DOI: 10.1038/emboj.2009.16

  3. You have free access to this content
    Embryonic NANOG Activity Defines Colorectal Cancer Stem Cells and Modulates through AP1- and TCF-dependent Mechanisms

    STEM CELLS

    Volume 30, Issue 10, October 2012, Pages: 2076–2087, Elsayed E. Ibrahim, Roya Babaei-Jadidi, Anas Saadeddin, Bradley Spencer-Dene, Sina Hossaini, Mohammed Abuzinadah, Ningning Li, Wakkas Fadhil, Mohammad Ilyas, Dominique Bonnet and Abdolrahman S. Nateri

    Version of Record online : 20 SEP 2012, DOI: 10.1002/stem.1182

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    OCT4/SOX2-independent Nanog autorepression modulates heterogeneous Nanog gene expression in mouse ES cells

    The EMBO Journal

    Volume 31, Issue 24, December 12, 2012, Pages: 4547–4562, Pablo Navarro, Nicola Festuccia, Douglas Colby, Alessia Gagliardi, Nicholas P Mullin, Wensheng Zhang, Violetta Karwacki-Neisius, Rodrigo Osorno, David Kelly, Morag Robertson and Ian Chambers

    Version of Record online : 23 NOV 2012, DOI: 10.1038/emboj.2012.321

  5. The pluripotency factor Nanog is directly upregulated by the Androgen Receptor in prostate cancer cells

    The Prostate

    Volume 74, Issue 15, November 2014, Pages: 1530–1543, Steven Kregel, Russell Z. Szmulewitz and Donald J. Vander Griend

    Version of Record online : 31 AUG 2014, DOI: 10.1002/pros.22870

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    Concise Review: NANOG in Cancer Stem Cells and Tumor Development: An Update and Outstanding Questions

    STEM CELLS

    Volume 33, Issue 8, August 2015, Pages: 2381–2390, Collene R. Jeter, Tao Yang, Junchen Wang, Hsueh-Ping Chao and Dean G. Tang

    Version of Record online : 13 MAY 2015, DOI: 10.1002/stem.2007

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    Emerging role of nanog in tumorigenesis and cancer stem cells

    International Journal of Cancer

    Volume 135, Issue 12, 15 December 2014, Pages: 2741–2748, Luis E. IV Santaliz-Ruiz, Xiujie Xie, Matthew Old, Theodoros N. Teknos and Quintin Pan

    Version of Record online : 13 JAN 2014, DOI: 10.1002/ijc.28690

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    Hedgehog controls neural stem cells through p53-independent regulation of Nanog

    The EMBO Journal

    Volume 29, Issue 15, August 4, 2010, Pages: 2646–2658, Agnese Po, Elisabetta Ferretti, Evelina Miele, Enrico De Smaele, Arianna Paganelli, Gianluca Canettieri, Sonia Coni, Lucia Di Marcotullio, Mauro Biffoni, Luca Massimi, Concezio Di Rocco, Isabella Screpanti and Alberto Gulino

    Version of Record online : 25 JUN 2010, DOI: 10.1038/emboj.2010.131

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    Doublecortin induces mitotic microtubule catastrophe and inhibits glioma cell invasion

    Journal of Neurochemistry

    Volume 108, Issue 1, January 2009, Pages: 231–245, Manoranjan Santra, Sutapa Santra, Cindi Roberts, Rui Lan Zhang and Michael Chopp

    Version of Record online : 1 NOV 2008, DOI: 10.1111/j.1471-4159.2008.05758.x

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    Functional Evidence that the Self-Renewal Gene NANOG Regulates Human Tumor Development

    STEM CELLS

    Volume 27, Issue 5, May 2009, Pages: 993–1005, Collene R. Jeter, Mark Badeaux, Grace Choy, Dhyan Chandra, Lubna Patrawala, Can Liu, Tammy Calhoun-Davis, Holm Zaehres, George Q. Daley and Dean G. Tang

    Version of Record online : 5 FEB 2009, DOI: 10.1002/stem.29

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    Curcumin Suppresses Malignant Glioma Cells Growth and Induces Apoptosis by Inhibition of SHH/GLI1 Signaling Pathway in Vitro and Vivo

    CNS Neuroscience & Therapeutics

    Volume 19, Issue 12, December 2013, Pages: 926–936, Wen-Zhong Du, Yan Feng, Xiao-Feng Wang, Xing-Yin Piao, Yu-Qiong Cui, Ling-Chao Chen, Xu-Hui Lei, Xu Sun, Xing Liu, Han-Bing Wang, Xian-Feng Li, Dong-Bo Yang, Ying Sun, Zhe-Feng Zhao, Tao Jiang, Yong-Li Li and Chuan-Lu Jiang

    Version of Record online : 25 OCT 2013, DOI: 10.1111/cns.12163

  12. Distinct cellular responses induced by saporin and a transferrin–saporin conjugate in two different human glioblastoma cell lines

    Journal of Cellular Physiology

    Volume 227, Issue 3, March 2012, Pages: 939–951, A. Cimini, S. Mei, E. Benedetti, G. Laurenti, I. Koutris, B. Cinque, M.G. Cifone, R. Galzio, G. Pitari, L. Di Leandro, F. Giansanti, A. Lombardi, M.S. Fabbrini and R. Ippoliti

    Version of Record online : 22 DEC 2011, DOI: 10.1002/jcp.22805

  13. Gap Junctions Enhance the Antiproliferative Effect of MicroRNA-124-3p in Glioblastoma Cells

    Journal of Cellular Physiology

    Volume 230, Issue 10, October 2015, Pages: 2476–2488, Zhang Suzhi, Tao Liang, Peng Yuexia, Liu Lucy, Hong Xiaoting, Zhang Yuan and Wang Qin

    Version of Record online : 23 JUN 2015, DOI: 10.1002/jcp.24982

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    KLF4 and PBX1 Directly Regulate NANOG Expression in Human Embryonic Stem Cells

    STEM CELLS

    Volume 27, Issue 9, September 2009, Pages: 2114–2125, Ken Kwok-Keung Chan, Jingyao Zhang, Na-Yu Chia, Yun-Shen Chan, Hui Shan Sim, Ker Sin Tan, Steve Kah-Weng Oh, Huck-Hui Ng and Andre Boon-Hwa Choo

    Version of Record online : 11 JUN 2009, DOI: 10.1002/stem.143

  15. You have full text access to this OnlineOpen article
    PDGFR-β-activated ACK1-AKT Signaling Promotes Glioma Tumorigenesis

    International Journal of Cancer

    Volume 136, Issue 8, 15 April 2015, Pages: 1769–1780, Jiannan Zhang, Tao Chen, Qin Mao, Jinbo Lin, Jun Jia, Shanquan Li, Wenhao Xiong, Yingying Lin, Zhiqiang Liu, Xiaoyu Liu, Hailiang Zhao, Guisong Wang, Duo Zheng, Shuqi Qiu and Jianwei Ge

    Version of Record online : 8 OCT 2014, DOI: 10.1002/ijc.29234

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    Human Bone Marrow-Derived Mesenchymal Stromal Cells Expressing S-TRAIL as a Cellular Delivery Vehicle for Human Glioma Therapy

    STEM CELLS

    Volume 27, Issue 9, September 2009, Pages: 2320–2330, Lata G. Menon, Kathleen Kelly, Hong Wei Yang, Seung-Ki Kim, Peter M. Black and Rona S. Carroll

    Version of Record online : 28 MAY 2009, DOI: 10.1002/stem.136

  17. Effects of epidermal growth factor receptor and phosphatase and tensin homologue gene expression on the inhibition of U87MG glioblastoma cell proliferation induced by protein kinase inhibitors

    Clinical and Experimental Pharmacology and Physiology

    Volume 40, Issue 1, January 2013, Pages: 13–21, Wen-Jing Xing, Yan Zou, Qing-Lian Han, Yu-Cui Dong, Zhen-Ling Deng, Xiao-Hong Lv, Tao Jiang and Huan Ren

    Version of Record online : 23 DEC 2012, DOI: 10.1111/1440-1681.12026

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    Loss of WNT-TCF addiction and enhancement of HH-GLI1 signalling define the metastatic transition of human colon carcinomas

    EMBO Molecular Medicine

    Volume 2, Issue 11, November 2010, Pages: 440–457, Frédéric Varnat, Irene Siegl-Cachedenier, Monica Malerba, Pascal Gervaz and Ariel Ruiz i Altaba

    Version of Record online : 13 OCT 2010, DOI: 10.1002/emmm.201000098

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    ABCD1 deletion-induced mitochondrial dysfunction is corrected by SAHA: implication for adrenoleukodystrophy

    Journal of Neurochemistry

    Volume 133, Issue 3, May 2015, Pages: 380–396, Mauhamad Baarine, Craig Beeson, Avtar Singh and Inderjit Singh

    Version of Record online : 13 JAN 2015, DOI: 10.1111/jnc.12992

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    E2F1 identified by promoter and biochemical analysis as a central target of glioblastoma cell-cycle arrest in response to ras inhibition

    International Journal of Cancer

    Volume 119, Issue 3, 1 August 2006, Pages: 527–538, Roy Blum, Itay Nakdimon, Liat Goldberg, Ran Elkon, Ron Shamir, Gideon Rechavi and Yoel Kloog

    Version of Record online : 22 FEB 2006, DOI: 10.1002/ijc.21735