• AN1-type zinc finger protein 3 (ZFAND3) is a transcriptional regulator that drives Glioblastoma invasion 

      Schuster, Anne; Klein, Eliane; Neirinckx, Virginie; Møldrup Knudsen, Arnon; Fabian, Carina; Hau, Ann-Christin; Dieterle, Monika; Oudin, Anaïs; Nazarov, Petr V.; Golebiewska, Anna; Muller, Arnaud; Perez-Hernandez, Daniel; Rhodius, Sophie; Dittmar, Gunnar; Bjerkvig, Rolf; Herold-Mende, Christel; Klink, Barbara; Winther Kristensen, Bjarne; Niclou, Simone Pierrette (Journal article; Peer reviewed, 2020)
      The infiltrative nature of Glioblastoma (GBM), the most aggressive primary brain tumor, critically prevents complete surgical resection and masks tumor cells behind the blood brain barrier reducing the efficacy of systemic ...
    • Lactate dehydrogenases promote glioblastoma growth and invasion via a metabolic symbiosis 

      Guyon, Joris; Fernandez-Moncada, Ignacio; Larrieu, Claire M; Bouchez, Cyrielle L; Pagano Zottola, Antonio C; Galvis, Johanna; Chouleur, Tiffanie; Burban, Audrey; Joseph, Kevin; Ravi, Vidhya M; Espedal, Heidi; Røsland, Gro Vatne; Daher, Boutaina; Barre, Aurélien; Dartigues, Benjamin; Karkar, Slim; Rudewicz, Justine; Romero-Garmendia, Irati; Klink, Barbara; Grützmann, Konrad; Derieppe, Marie-Alix; Molinié, Thibaut; Obad, Nina; Léon, Céline; Seano, Giorgio; Miletic, Hrvoje; Heiland, Dieter Henrik; Marsicano, Giovanni; Nikolski, Macha; Bjerkvig, Rolf; Bikfalvi, Andreas; Daubon, Thomas (Journal article; Peer reviewed, 2022)
      Lactate is a central metabolite in brain physiology but also contributes to tumor development. Glioblastoma (GB) is the most common and malignant primary brain tumor in adults, recognized by angiogenic and invasive growth, ...
    • Mutant IDH1 Differently Affects Redox State and Metabolism in Glial Cells of Normal and Tumor Origin 

      Biedermann, Julia; Preussler, Mathias; Conde, Marina; Peitzsch, Mirko; Richter, Susan; Wiedemuth, Ralf; Abou-El-Ardat, Khalil; Krüger, Alexander; Meinhardt, Mathias; Schackert, Gabriele; Leenders, William P.J.; Herold-Mende, Christel; Niclou, Simone Pierrette; Bjerkvig, Rolf; Eisenhofer, Graeme; Temme, Achim; Seifert, Michael; Kunz-Schughart, Leoni A.; Schröck, Evelin; Klink, Barbara (Peer reviewed; Journal article, 2019-12-16)
      IDH1R132H (isocitrate dehydrogenase 1) mutations play a key role in the development of low-grade gliomas. IDH1wt converts isocitrate to α-ketoglutarate while reducing nicotinamide adenine dinucleotide phosphate (NADP+), ...
    • Patient-derived organoids and orthotopic xenografts of primary and recurrent gliomas represent relevant patient avatars for precision oncology 

      Golebiewska, Anna; Hau, Ann-Christin; Oudin, Anaïs; Stieber, Daniel; Yabo, Yahaya A.; Baus, Virginie; Barthelemy, Vanessa; Klein, Eliane; Bougnaud, Sébastien; Keunen, Olivier; Wantz, May; Michelucci, Alessandro; Neirinckx, Virginie; Muller, Arnaud; Kaoma, Tony; Nazarov, Petr V.; Azuaje, Francisco; De Falco, Alfonso; Flies, Ben; Richart, Lorraine; Poovathingal, Suresh K; Arns, Thais; Grzyb, Kamil; Mock, Andreas; Herold-Mende, Christel; Steino, Anne; Brown, Dennis; May, Patrick; Miletic, Hrvoje; Malta, Tathiane M.; Noushmehr, Houtan; Kwon, Yong-Jun; Jahn, Winnie; Klink, Barbara; Tanner, Georgette; Stead, Lucy F.; Mittelbronn, Michel; Skupin, Alexander; Hertel, Frank; Bjerkvig, Rolf; Niclou, Simone Pierrette (Journal article; Peer reviewed, 2020)
      Patient-based cancer models are essential tools for studying tumor biology and for the assessment of drug responses in a translational context. We report the establishment a large cohort of unique organoids and patient-derived ...
    • XAB2 promotes Ku eviction from single-ended DNA double-strand breaks independently of the ATM kinase 

      Sharma, Abhishek; Erasimus, Hélène; Pinto, Lia; Caron, Marie-Christine; Gopaul, Diyavarshini; Peterlini, Thibault; Neumann, Katrin; Nazarov, Petr V.; Fritah, Sabrina; Klink, Barbara; Herold-Mende, Christel C.; Niclou, Simone Pierrette; Pasero, Philippe; Calsou, Patrick; Masson, Jean-Yves; Britton, Sébastien; Van Dyck, Eric (Journal article; Peer reviewed, 2021)
      Replication-associated single-ended DNA double-strand breaks (seDSBs) are repaired predominantly through RAD51-mediated homologous recombination (HR). Removal of the non-homologous end-joining (NHEJ) factor Ku from resected ...