Bossler F, Kuhn BJ, Günther T, Kraemer SJ, Khalkar P, Adrian S, Lohrey C, Holzer A, Shimobayashi M, Dürst M, Mayer A, Rösl F, Grundhoff A, Krijgsveld J, Hoppe-Seyler K, Hoppe-Seyler F
Chronic Hypoxia Enhances β-Oxidation-Dependent Electron Transport via Electron TransferringFlavoproteins.
Chowdhury A, Aich A, Jain G, Wozny K, Lüchtenborg C, Hartmann M, Bernhard O, Balleiniger M, Alfar EA, Zieseniss A, Toischer K, Guan K, Rizzoli SO, Brügger B, Fischer A, Katschinski DM, Rehling P, Dudek J
Targeting SLC25A10 alleviates improved antioxidant capacity and associated radioresistance of cancer cells induced by chronic-cycling hypoxia
Julian H, Violetta R, Florian W, Diana K, Verena J, Johann M
Double genetic disruption of lactate dehydrogenase A and B is required to ablate the ‘Warburg effect’ restricting tumor growth to oxidative metabolism.
Desai PR, Lengeler K, Kapitan M, Janßen SM, Alepuz P, Jacobsen ID, Ernst JF
Differential regulation of angiogenesis in the developing mouse brain in response to exogenous activation of the hypoxia-inducible transcription factor system
Trollmann R, Mühlberger T, Richter M, Boie G, Feigenspan A, Brackmann F, Jung S
The Mitochondrial Citrate Carrier (SLC25A1) Sustains RedoxHomeostasis and Mitochondrial Metabolism SupportingRadioresistance of Cancer Cells With Tolerance to CyclingSevere Hypoxia.