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Showing results (111-120 of 184) with videos related to

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Science Translational Medicine|May 31, 2019
Safe targeting of T cell acute lymphoblastic leukemia by pathology-specific NOTCH inhibitionRoger A Habets, Charles E de Bock, Lutgarde Serneels, et al.
Blood|February 18, 2011
JAK2 rearrangements, including the novel SEC31A-JAK2 fusion, are recurrent in classical Hodgkin lymphomaKatrien Van Roosbroeck, Luk Cox, Thomas Tousseyn, et al.
Molecular Cell|July 11, 2008
Kinase activation and transformation by NUP214-ABL1 is dependent on the context of the nuclear poreKim De Keersmaecker, Jennifer L Rocnik, Rafael Bernad, et al.
Blood|October 4, 2016
Hedgehog pathway activation in T-cell acute lymphoblastic leukemia predicts response to SMO and GLI1 inhibitorsAntonis Dagklis, Sofie Demeyer, Jolien De Bie, et al.
Genes, Chromosomes & Cancer|May 25, 2022
Primary mediastinal large B-cell lymphoma is characterized by large-scale copy-neutral loss of heterozygosityStefania Tuveri, Koen Debackere, Lukas Marcelis, et al.
Blood|August 20, 2020
Single-cell DNA amplicon sequencing reveals clonal heterogeneity and evolution in T-cell acute lymphoblastic leukemiaLlucia Albertí-Servera, Sofie Demeyer, Inge Govaerts, et al.
Blood|December 1, 2017
Mutant JAK3 signaling is increased by loss of wild-type JAK3 or by acquisition of secondary JAK3 mutations in T-ALLSandrine Degryse, Simon Bornschein, Charles E de Bock, et al.
Blood|May 10, 2011
PTPN2 negatively regulates oncogenic JAK1 in T-cell acute lymphoblastic leukemiaMaria Kleppe, Jean Soulier, Vahid Asnafi, et al.
Hemasphere|February 13, 2025
Single-cell DNA and surface protein characterization of high hyperdiploid acute lymphoblastic leukemia at diagnosis and during treatmentMargo Aertgeerts, Sarah Meyers, Olga Gielen, et al.
Blood|May 10, 2021
Overexpression of wild-type IL-7Rα promotes T-cell acute lymphoblastic leukemia/lymphomaAna Silva, Afonso R M Almeida, Ana Cachucho, et al.
Pageof 19

Showing results (111-120 of 184) with videos related to

Sort By:
Pageof 19
Science Translational Medicine|May 31, 2019
Safe targeting of T cell acute lymphoblastic leukemia by pathology-specific NOTCH inhibitionRoger A Habets, Charles E de Bock, Lutgarde Serneels, et al.
Blood|February 18, 2011
JAK2 rearrangements, including the novel SEC31A-JAK2 fusion, are recurrent in classical Hodgkin lymphomaKatrien Van Roosbroeck, Luk Cox, Thomas Tousseyn, et al.
Molecular Cell|July 11, 2008
Kinase activation and transformation by NUP214-ABL1 is dependent on the context of the nuclear poreKim De Keersmaecker, Jennifer L Rocnik, Rafael Bernad, et al.
Blood|October 4, 2016
Hedgehog pathway activation in T-cell acute lymphoblastic leukemia predicts response to SMO and GLI1 inhibitorsAntonis Dagklis, Sofie Demeyer, Jolien De Bie, et al.
Genes, Chromosomes & Cancer|May 25, 2022
Primary mediastinal large B-cell lymphoma is characterized by large-scale copy-neutral loss of heterozygosityStefania Tuveri, Koen Debackere, Lukas Marcelis, et al.
Blood|August 20, 2020
Single-cell DNA amplicon sequencing reveals clonal heterogeneity and evolution in T-cell acute lymphoblastic leukemiaLlucia Albertí-Servera, Sofie Demeyer, Inge Govaerts, et al.
Blood|December 1, 2017
Mutant JAK3 signaling is increased by loss of wild-type JAK3 or by acquisition of secondary JAK3 mutations in T-ALLSandrine Degryse, Simon Bornschein, Charles E de Bock, et al.
Blood|May 10, 2011
PTPN2 negatively regulates oncogenic JAK1 in T-cell acute lymphoblastic leukemiaMaria Kleppe, Jean Soulier, Vahid Asnafi, et al.
Hemasphere|February 13, 2025
Single-cell DNA and surface protein characterization of high hyperdiploid acute lymphoblastic leukemia at diagnosis and during treatmentMargo Aertgeerts, Sarah Meyers, Olga Gielen, et al.
Blood|May 10, 2021
Overexpression of wild-type IL-7Rα promotes T-cell acute lymphoblastic leukemia/lymphomaAna Silva, Afonso R M Almeida, Ana Cachucho, et al.
Pageof 19