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  1. 1.   Aminoflavone upregulates putative tumor suppressor miR-125b-2-3p to inhibit luminal A breast cancer stem cell-like properties
  2. Mavingire, Nicole; Campbell,Petreena; Liu, Tiantian; Wooten, Jonathan; Khan, Salma; Chen, Xin; Matthews, Jason; Wang, Charles; Brantley, Eileen
  3. Precision Clinical Medicine. 2022, Jun; 5(2): pbac008.
  1. 2.   Whence CRIPTO: The Reemergence of an Oncofetal Factor in 'Wounds' That Fail to Heal
  2. Freeman, David W.; Sousa, Elisa Rodrigues; Karkampouna, Sofia; Zoni, Eugenio; Gray, Peter C.; Salomon,David; Kruithof-de Julio, Marianna; Spike, Benjamin T.
  3. International journal of molecular sciences. 2021, Sep; 22(18):
  1. 3.   A Tumor-Selective Monoclonal Antibody from Immunization with a Tumor-Associated Mucin Glycopeptide
  2. Trabbic,Kevin; Whalen, Kaitlyn; Abarca-Heideman, Karin; Xia, Li; Temme,Sebastian; Edmondson,Elijah; Gildersleeve,Jeffrey; Barchi,Joe
  3. Scientific reports. 2019, Apr 5; 9(1):
  1. 4.   Sulforaphane Suppresses the Growth of Triple-negative Breast Cancer Stem-like Cells In vitro and In vivo
  2. Castro, Nadia P.; Rangel, Maria C.; Merchant, Anand S.; MacKinnon, Gabriel; Cuttitta,Frank; Salomon,David; Kim, Young S.
  3. CANCER PREVENTION RESEARCH. 2019, Mar; 12(3): 147-158.
  1. 5.   Crosstalk between PKC alpha and PI3K/AKT Signaling Is Tumor Suppressive in the Endometrium
  2. Hsu, Alice; Lum, Michelle A.; Shim, Kang-Sup; Frederick, Peter J.; Morrison, Carl D.; Chen, Baojiang; Lele, Subodh M.; Sheinin, Yuri M.; Daikoku, Takiko; Dey, Sudhansu K.; Leone, Gustavo; Black, Adrian R.; Black, Jennifer D.
  3. CELL REPORTS. 2018, Jul 17; 24(3): 655-669.
  1. 6.   LMTK3 confers chemo-resistance in breast cancer
  2. Stebbing, Justin; Shah, Kalpit; Lit, Lei Cheng; Gagliano, Teresa; Ditsiou, Angeliki; Wang, Tingting; Wendler, Franz; Simon, Thomas; Szabo, Krisztina Sara; O'Hanlon, Tim; Dean, Michael; Roslani, April Camilla; Cheah, Swee Hung; Lee, Soo-Chin; Giamas, Georgios
  3. ONCOGENE. 2018, JUN; 37(23): 3113-3130.
  1. 7.   Inhibition of Polo-like kinase 1 prevents the growth of metastatic breast cancer cells in the brain
  2. Qian, Y. Z.; Hua, E.; Bisht, K.; Woditschka, S.; Skordos, K. W.; Liewehr, D. J.; Steinberg, S. M.; Brogi, E.; Akram, M. M.; Killian, J. K.; Edelman, D. C.; Pineda, M.; Scurci, S.; Degenhardt, Y. Y.; Laquerre, S.; Lampkin, T. A.; Meltzer, P. S.; Camphausen, K.; Steeg, P. S.; Palmieri, D.
  3. Clinical & Experimental Metastasis. 2011, Dec; 28(8): 899-908.
  1. 8.   14-3-3 Proteins: Diverse functions in cell proliferation and cancer progression
  2. Freeman, A. K.; Morrison, D. K.
  3. Seminars in Cell & Developmental Biology. 2011, Sep; 22(7): 681-687.
  1. 9.   Two-tiered Approach Identifies a Network of Cancer and Liver Disease-related Genes Regulated by miR-122
  2. Boutz, D. R.; Collins, P. J.; Suresh, U.; Lu, M. Z.; Ramirez, C. M.; Fernandez-Hernando, C.; Huang, Y. F.; Abreu, R. D.; Le, S. Y.; Shapiro, B. A.; Liu, A. M.; Luk, J. M.; Aldred, S. F.; Trinklein, N. D.; Marcotte, E. M.; Penalva, L. O. F.
  3. Journal of Biological Chemistry. 2011, May; 286(20): 18066-18078.
  1. 10.   Inactivation of the FLCN Tumor Suppressor Gene Induces TFE3 Transcriptional Activity by Increasing Its Nuclear Localization
  2. Hong, S. B.; Oh, H.; Valera, V. A.; Baba, M.; Schmidt, L. S.; Linehan, W. M.
  3. Plos One. 2010, Dec; 5(12): 12.
  1. 11.   Rapamycin Protects Mice from Staphylococcal Enterotoxin B-Induced Toxic Shock and Blocks Cytokine Release In Vitro and In Vivo
  2. Krakauer, T.; Buckley, M.; Issaq, H. J.; Fox, S. D.
  3. Antimicrobial Agents and Chemotherapy. 2010, Mar; 54(3): 1125-1131.
  1. 12.   Transcriptomic analysis of an in vitro murine model of ovarian carcinoma: Functional similarity to the human disease and identification of prospective tumoral markers and targets
  2. Urzua, U.; Roby, K. F.; Gangi, L. M.; Cherry, J. M.; Powell, J. I.; Munroe, D. J.
  3. Journal of Cellular Physiology. 2006, MAR; 206(3): 594-602.
  1. 13.   Progressive phenotype and nuclear accumulation of an amino-terminal cleavage fragment in a transgenic mouse model with inducible expression of full-length mutant huntingtin
  2. Tanaka, Y.; Igarashi, S.; Nakamura, M.; Gafni, J.; Torcassi, C.; Schilling, G.; Crippen, D.; Wood, J. D.; Sawa, A.; Jenkins, N. A.; Copeland, N. G.; Borchelt, D. R.; Ross, C. A.; Ellerby, L. M.
  3. Neurobiology of Disease. 2006, FEB; 21(2): 381-391.
  1. 14.   Expression of hypoxia-inducible carbonic anhydrases in brain tumors
  2. Proescholdt, M. A.; Mayer, C.; Kubitza, M.; Schubert, T.; Liao, S. Y.; Stanbridge, E. J.; Ivanov, S.; Oldfield, E. H.; Brawanski, A.; Merrill, M. J.
  3. Neuro-Oncology. 2005, OCT; 7(4): 465-475.
  1. 15.   BCL-3 and NF-kappa B p50 attenuate lipopolysaccharide-induced inflammatory responses in macrophages
  2. Wessells, J.; Baer, M.; Young, H. A.; Claudio, E.; Brown, K.; Siebenlist, U.; Johnson, P. F.
  3. Journal of Biological Chemistry. 2004, NOV 26; 279(48): 49995-50003.
  1. 16.   Genetic basis of cancer of the kidney: Disease specific approaches to therapy
  2. Linehan, W. M.; Vasselli, J.; Srinivasan, R.; Walther, M. M.; Merino, M.; Choyke, P.; Vocke, C.; Schmidt, L.; Isaacs, J. S.; Glenn, G.; Toro, J.; Zbar, B.; Bottaro, D.; Neckers, L.
  3. Clinical Cancer Research. 2004, SEP 15; 10(18, Part 2 Suppl. S): 6282S-6289S.
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