Search Results - "Hétuin, D"

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  1. 1

    RIP3 is downregulated in human myeloid leukemia cells and modulates apoptosis and caspase-mediated p65/RelA cleavage by Nugues, A-L, El Bouazzati, H, Hétuin, D, Berthon, C, Loyens, A, Bertrand, E, Jouy, N, Idziorek, T, Quesnel, B

    Published in Cell death & disease (21-08-2014)
    “…The receptor-interacting protein kinase 3 (RIP3) associates with RIP1 in a necrosome complex that can induce necroptosis, apoptosis, or cell proliferation. We…”
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    Journal Article
  2. 2

    GILZ inhibits the mTORC2 AKT pathway in BCR-ABL cells by Joha, S, Nugues, A-L, Hétuin, D, Berthon, C, Dezitter, X, Dauphin, V, Mahon, F-X, Roche-Lestienne, C, Preudhomme, C, Quesnel, B, Idziorek, T

    Published in Oncogene (15-03-2012)
    “…The malignant phenotype of chronic myeloid leukemia (CML) is due to the abnormal tyrosine kinase activity of the BCR-ABL oncoprotein, which signals several…”
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    Journal Article
  3. 3

    BCR-ABL mutants spread resistance to non-mutated cells through a paracrine mechanism by Liu, J, Joha, S, Idziorek, T, Corm, S, Hetuin, D, Philippe, N, Preudhomme, C, Quesnel, B

    Published in Leukemia (01-04-2008)
    “…Patients with chronic myeloid leukemia who become resistant to the Abl kinase inhibitor imatinib can be treated with dasatinib. This sequential treatment can…”
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    Journal Article
  4. 4

    Mis-splicing yields circular RNA molecules by Cocquerelle, C, Mascrez, B, Hétuin, D, Bailleul, B

    Published in The FASEB journal (01-01-1993)
    “…We previously identified novel human ets-1 transcripts in which the normal order of exons is inverted, and demonstrated that although the order of exons is…”
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  5. 5

    Gene transfer of CD154 and IL12 cDNA induces an anti-leukemic immunity in a murine model of acute leukemia by SAUDEMONT, A, BUFFENOIR, G, DENYS, A, DESREUMAUX, P, JOUY, N, HETUIN, D, BAUTERS, F, FENAUX, P, QUESNEL, B

    Published in Leukemia (01-09-2002)
    “…IL12 is an essential cytokine for the generation of T helper 1 response, natural killer (NK) cells and cytotoxic T lymphocyte (CTL) stimulation. CD154 triggers…”
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    Journal Article
  6. 6

    γ-Irradiation enhances transgene expression in leukemic cells by VEREECQUE, R, SAUDEMONT, A, WICKHAM, T. T, GONZALEZ, R, HETUIN, D, FENAUX, P, QUESNEL, B

    Published in Gene therapy (01-02-2003)
    “…The majority of immunotherapy-based gene therapy protocols consist of ex vivo gene transfer in tumor cells. To prevent further in vivo growth, modified cells…”
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    Journal Article
  7. 7

    NK cells that are activated by CXCL10 can kill dormant tumor cells that resist CTL-mediated lysis and can express B7-H1 that stimulates T cells by Saudemont, Aurore, Jouy, Nathalie, Hetuin, Dominique, Quesnel, Bruno

    Published in Blood (15-03-2005)
    “…Tumor dormancy is a phenomenon where small numbers of tumor cells persist in the host for months or years. We previously showed in the DA1-3b/C3H mouse model…”
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    Journal Article
  8. 8

    GILZ inhibits the mTORC2/AKT pathway in [BCR-ABL.sup.+] cells by Joha, S, Nugues, A.-L, Hetuin, D, Berthon, C, Dezitter, X, Dauphin, V, Mahon, F.-X, Roche-Lestienne, C, Preudhomme, C, Quesnel, B, Idziorek, T

    Published in Oncogene (15-03-2012)
    “…The malignant phenotype of chronic myeloid leukemia (CML) is due to the abnormal tyrosine kinase activity of the BCR-ABL oncoprotein, which signals several…”
    Get full text
    Journal Article
  9. 9

    GILZ inhibits the mTORC2/AKT pathway in BCR-ABL super(+) cells by Joha, S, Nugues, A-L, Hetuin, D, Berthon, C, Dezitter, X, Dauphin, V, Mahon, F-X, Roche-Lestienne, C, Preudhomme, C, Quesnel, B, Idziorek, T

    Published in Oncogene (15-03-2012)
    “…The malignant phenotype of chronic myeloid leukemia (CML) is due to the abnormal tyrosine kinase activity of the BCR-ABL oncoprotein, which signals several…”
    Get full text
    Journal Article
  10. 10

    Gene transfer of GM-CSF, CD80 and CD154 cDNA enhances survival in a murine model of acute leukemia with persistence of a minimal residual disease by Vereecque, R, Buffenoir, G, Preudhomme, C, Hetuin, D, Bauters, F, Fenaux, P, Quesnel, B

    Published in Gene therapy (01-08-2000)
    “…Gene transfer of various cytokines and co-stimulatory molecules has been reported to induce a potent antileukemic immunity in murine models, however, the…”
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    Journal Article
  11. 11

    Induction of leukemia-specific CD8 cytotoxic t cells with autologous myeloid leukemic cells maturated with a fiber-modified adenovirus encoding TNF-α by Saudemont, Aurore, Corm, Selim, Wickham, Thomas, Hetuin, Dominique, Quesnel, Bruno

    Published in Molecular therapy (01-06-2005)
    “…Acute myeloid leukemia (AML) cells can be differentiated into dendritic cells (DCs) using appropriate combinations of cytokines but generation of autologous…”
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    Journal Article
  12. 12

    γ‐Ray irradiation induces B7.1 expression in myeloid leukaemic cells by Vereecque, Rodolphe, Buffenoir, Geraldine, Gonzalez, Ricardo, Cambier, Nathalie, Hetuin, Dominique, Bauters, Francis, Fenaux, Pierre, Quesnel, Bruno

    Published in British journal of haematology (01-03-2000)
    “…Expression of B7 molecules provides co‐stimulatory signals to T lymphocytes, which prevent the induction of anergy. It has been previously reported that B7.1…”
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    Journal Article
  13. 13

    [gamma]-Irradiation enhances transgene expression in leukemic cells by Vereecque, R, Saudemont, A, Wickham, T J, Gonzalez, R, Hetuin, D, Fenaux, P, Quesnel, B

    Published in Gene therapy (01-02-2003)
    “…The majority of immunotherapy-based gene therapy protocols consist of ex vivo gene transfer in tumor cells. To prevent further in vivo growth, modified cells…”
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    Journal Article
  14. 14

    Transduction of bone marrow cells by the AdZ.F(pK7) modified adenovirus demonstrates preferential gene transfer in myeloma cells by Gonzalez, R, Vereecque, R, Wickham, T J, Facon, T, Hetuin, D, Kovesdi, I, Bauters, F, Fenaux, P, Quesnel, B

    Published in Human gene therapy (01-11-1999)
    “…Adenoviral vectors can efficiently infect myeloma cell lines, but transduction of fresh myeloma cells performed at low multiplicity of infections (MOIs) showed…”
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  15. 15
  16. 16

    Transfer of p16inka/CDKN2 gene in leukaemic cell lines inhibits cell proliferation by Quesnel, B, Preudhomme, C, Lepelley, P, Hetuin, D, Vanrumbeke, M, Bauters, F, Velu, T, Fenaux, P

    Published in British journal of haematology (01-11-1996)
    “…The gene encoding for p16ink4a, a negative regulator of transition between G1 and S phase, is homozygously deleted in a large proportion of acute lymphoblastic…”
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    Journal Article