Search Results - "Hétuin, D"
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RIP3 is downregulated in human myeloid leukemia cells and modulates apoptosis and caspase-mediated p65/RelA cleavage
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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GILZ inhibits the mTORC2 AKT pathway in BCR-ABL cells
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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BCR-ABL mutants spread resistance to non-mutated cells through a paracrine mechanism
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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Mis-splicing yields circular RNA molecules
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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Gene transfer of CD154 and IL12 cDNA induces an anti-leukemic immunity in a murine model of acute leukemia
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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6
γ-Irradiation enhances transgene expression in leukemic cells
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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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
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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GILZ inhibits the mTORC2/AKT pathway in [BCR-ABL.sup.+] cells
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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9
GILZ inhibits the mTORC2/AKT pathway in BCR-ABL super(+) cells
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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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
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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Induction of leukemia-specific CD8 cytotoxic t cells with autologous myeloid leukemic cells maturated with a fiber-modified adenovirus encoding TNF-α
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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γ‐Ray irradiation induces B7.1 expression in myeloid leukaemic cells
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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13
[gamma]-Irradiation enhances transgene expression in leukemic cells
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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14
Transduction of bone marrow cells by the AdZ.F(pK7) modified adenovirus demonstrates preferential gene transfer in myeloma cells
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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Transfer of p16inka/CDKN2 gene in leukaemic cell lines inhibits cell proliferation
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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