Medizinische Universität Graz Austria/Österreich - Forschungsportal - Medical University of Graz

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Publikationen

Suchbegriffe: ADIPOSE TISSUE, WHITE - METABOLISM , . Treffer: 11

2017

Schreiber, R; Diwoky, C; Schoiswohl, G; Feiler, U; Wongsiriroj, N; Abdellatif, M; Kolb, D; Hoeks, J; Kershaw, EE; Sedej, S; Schrauwen, P; Haemmerle, G; Zechner, R Cold-Induced Thermogenesis Depends on ATGL-Mediated Lipolysis in Cardiac Muscle, but Not Brown Adipose Tissue.
Cell Metab. 2017; 26(5):753-763 [OPEN ACCESS]
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Wagner, G; Lindroos-Christensen, J; Einwallner, E; Husa, J; Zapf, TC; Lipp, K; Rauscher, S; Gröger, M; Spittler, A; Loewe, R; Gruber, F; Duvigneau, JC; Mohr, T; Sutterlüty-Fall, H; Klinglmüller, F; Prager, G; Huppertz, B; Yun, J; Wagner, O; Esterbauer, H; Bilban, M HO-1 inhibits preadipocyte proliferation and differentiation at the onset of obesity via ROS dependent activation of Akt2.
Sci Rep. 2017; 7(4):40881-40881 [OPEN ACCESS]
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Zechner, R; Madeo, F; Kratky, D Cytosolic lipolysis and lipophagy: two sides of the same coin.
Nat Rev Mol Cell Biol. 2017; 18(11):671-684
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2016

Giroud, M; Karbiener, M; Pisani, DF; Ghandour, RA; Beranger, GE; Niemi, T; Taittonen, M; Nuutila, P; Virtanen, KA; Langin, D; Scheideler, M; Amri, EZ Let-7i-5p represses brite adipocyte function in mice and humans.
Sci Rep. 2016; 6(11):28613-28613 [OPEN ACCESS]
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Moreno-Viedma, V; Amor, M; Sarabi, A; Bilban, M; Staffler, G; Zeyda, M; Stulnig, TM Common dysregulated pathways in obese adipose tissue and atherosclerosis.
Cardiovasc Diabetol. 2016; 15(1): 120-120. [OPEN ACCESS]
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2014

Karbiener, M; Pisani, DF; Frontini, A; Oberreiter, LM; Lang, E; Vegiopoulos, A; Mössenböck, K; Bernhardt, GA; Mayr, T; Hildner, F; Grillari, J; Ailhaud, G; Herzig, S; Cinti, S; Amri, EZ; Scheideler, M MicroRNA-26 family is required for human adipogenesis and drives characteristics of brown adipocytes.
Stem Cells. 2014; 32(6):1578-1590 [OPEN ACCESS]
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2013

Beranger, GE; Karbiener, M; Barquissau, V; Pisani, DF; Scheideler, M; Langin, D; Amri, EZ In vitro brown and "brite"/"beige" adipogenesis: human cellular models and molecular aspects.
BBA-MOL CELL BIOL L. 2013; 1831(5): 905-914. [OPEN ACCESS]
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Duszka, K; Bogner-Strauss, JG; Hackl, H; Rieder, D; Neuhold, C; Prokesch, A; Trajanoski, Z; Krogsdam, AM Nr4a1 is required for fasting-induced down-regulation of Pparγ2 in white adipose tissue.
Mol Endocrinol. 2013; 27(1): 135-149. [OPEN ACCESS]
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Rohm, M; Sommerfeld, A; Strzoda, D; Jones, A; Sijmonsma, TP; Rudofsky, G; Wolfrum, C; Sticht, C; Gretz, N; Zeyda, M; Leitner, L; Nawroth, PP; Stulnig, TM; Diaz, MB; Vegiopoulos, A; Herzig, S Transcriptional cofactor TBLR1 controls lipid mobilization in white adipose tissue.
Cell Metab. 2013; 17(4): 575-585. [OPEN ACCESS]
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Schupp, M; Chen, F; Briggs, ER; Rao, S; Pelzmann, HJ; Pessentheiner, AR; Bogner-Strauss, JG; Lazar, MA; Baldwin, D; Prokesch, A Metabolite and transcriptome analysis during fasting suggest a role for the p53-Ddit4 axis in major metabolic tissues.
BMC Genomics. 2013; 14(11):758-758 [OPEN ACCESS]
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2011

Karbiener, M; Neuhold, C; Opriessnig, P; Prokesch, A; Bogner-Strauss, JG; Scheideler, M MicroRNA-30c promotes human adipocyte differentiation and co-represses PAI-1 and ALK2.
RNA Biol. 2011; 8(5):850-860 [OPEN ACCESS]
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