Works by Bergers, Gabriele


Results: 21
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    GBM tumors are heterogeneous in their fatty acid metabolism and modulating fatty acid metabolism sensitizes cancer cells derived from recurring GBM tumors to temozolomide.

    Published in:
    Frontiers in Oncology, 2022, v. 12, p. 1, doi. 10.3389/fonc.2022.988872
    By:
    • Parik, Sweta;
    • Fernández-García, Juan;
    • Lodi, Francesca;
    • De Vlaminck, Karen;
    • Derweduwe, Marleen;
    • De Vleeschouwer, Steven;
    • Sciot, Raf;
    • Geens, Wietse;
    • Linqian Weng;
    • Bosisio, Francesca Maria;
    • Bergers, Gabriele;
    • Duerinck, Johnny;
    • De Smet, Frederick;
    • Lambrechts, Diether;
    • Van Ginderachter, Jo A.;
    • Fendt, Sarah-Maria
    Publication type:
    Article
    3

    GBM tumors are heterogeneous in their fatty acid metabolism and modulating fatty acid metabolism sensitizes cancer cells derived from recurring GBM tumors to temozolomide.

    Published in:
    Frontiers in Oncology, 2022, v. 12, p. 1, doi. 10.3389/fonc.2022.988872
    By:
    • Parik, Sweta;
    • Fernández-García, Juan;
    • Lodi, Francesca;
    • De Vlaminck, Karen;
    • Derweduwe, Marleen;
    • De Vleeschouwer, Steven;
    • Sciot, Raf;
    • Geens, Wietse;
    • Weng, Linqian;
    • Bosisio, Francesca Maria;
    • Bergers, Gabriele;
    • Duerinck, Johnny;
    • De Smet, Frederick;
    • Lambrechts, Diether;
    • Van Ginderachter, Jo A.;
    • Fendt, Sarah-Maria
    Publication type:
    Article
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    Tumor microenvironment and progression.

    Published in:
    Journal of Surgical Oncology, 2011, v. 103, n. 6, p. 468, doi. 10.1002/jso.21709
    By:
    • Dvorak, Harold F.;
    • Weaver, Valerie M.;
    • Tlsty, Thea D.;
    • Bergers, Gabriele
    Publication type:
    Article
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    Lipid droplet degradation by autophagy connects mitochondria metabolism to Prox1-driven expression of lymphatic genes and lymphangiogenesis.

    Published in:
    Nature Communications, 2022, v. 13, n. 1, p. 1, doi. 10.1038/s41467-022-30490-6
    By:
    • Meçe, Odeta;
    • Houbaert, Diede;
    • Sassano, Maria-Livia;
    • Durré, Tania;
    • Maes, Hannelore;
    • Schaaf, Marco;
    • More, Sanket;
    • Ganne, Maarten;
    • García-Caballero, Melissa;
    • Borri, Mila;
    • Verhoeven, Jelle;
    • Agrawal, Madhur;
    • Jacobs, Kathryn;
    • Bergers, Gabriele;
    • Blacher, Silvia;
    • Ghesquière, Bart;
    • Dewerchin, Mieke;
    • Swinnen, Johan V.;
    • Vinckier, Stefan;
    • Soengas, María S.
    Publication type:
    Article
    19

    Cell factories for fighting cancer.

    Published in:
    Nature Biotechnology, 2001, v. 19, n. 1, p. 20, doi. 10.1038/83457
    By:
    • Bergers, Gabriele;
    • Hanahan, Douglas
    Publication type:
    Article
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