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Microenvironnement et cancers hématologiques

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Julie Cahu

Post-doctorante
Université de Caen - UFR Santé     

 

 


Publications

  • Coudre C, Alani J, Ritchie W, Marsaud V, Sola B, Cahu J. HIF-1α and rapamycin act as gerosuppressant in multiple myeloma cells upon genotoxic stress. Cell Cycle 2016; 15:2174-2182.
    PMID: 27340936

  • Bustany S, Cahu J, Descamps G, Pellat-Deceunynck C, Sola B. Heat shock factor 1 is a potent therapeutic target for enhancing the efficacy of treatments for multiple myeloma with adverse prognosis. J Hematol Oncol 2015; 8: 40.
    PMID: 25898974

  • Bustany S, Cahu J, Guardiola P, Sola B. Cyclin D1 sensitizes myeloma cells to endoplasmic reticulum stress-mediated apoptosis by activating the unfolded protein response pathway. BMC Cancer 2015; 15: 262.
    PMID: 25881299

  • Cahu J, Sola B. Emergence of cancer stem cells or tumor-initiating/propagating cells and relapse in multiple myeloma. Bull Cancer 2014; 101: 1074-1079
    PMID: 25467977
     
  • Gaudichon J, Milano F, Cahu J, DaCosta L, Martens AC, Renoir JM, Sola B. Deazaneplanocin a is a promising drug to kill multiple myeloma cells in their niche. PLoS One 2014; 9: e107009.
    PMID: 25255316

  • Bustany S, Cahu J, Moros A, Troussard X, Roué G, Sola B. Expression and subcellular localization of cyclin-dependent kinase inhibitor p27 does not correlate with proliferation pattern of mantle lymphoma cells. Leuk Lymphoma 2014; 55:2204-2206.
    PMID: 24354680

  • [Moros A, Bustany S], Cahu J, Saborit-Villarroya I, Martínez A, Colomer D, [Sola B, Roué G]. Antitumoral activity of lenalidomide in in vitro and in vivo models of mantle cell lymphoma involves the destabilization of cyclin D1/p27KIP1 complexes. Clin Cancer Res 2014; 20: 393-403.
    PMID: 24178620

  • Cahu J. SASP: roadblock for tissue re-organization. Aging. 2013; 5: 641-642.
    PMID:24077648

  • Cahu J, Sola B. A sensitive method to quantify senescent cancer cells. J Vis Exp. 2013; 78. doi: 10.3791/50494.
    PMID: 23963434

  • Cahu J, Bustany S, Sola B. Senescence-associated secretory phenotype favors the emergence of cancer stem-like cells. Cell Death Dis 2012; 3: e446.
    PMID: 23254289

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Dernière modification : 13 février 2017



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