Anne-Marie Koop

3 95 34. Adrogue J V, Sharma S, Ngumbela K, Essop MF, Taegtmeyer H. Acclimatization to chronic hypobaric hypoxia is associated with a differential transcriptional profile between the right and left ventricle. Mol Cell Biochem H. Taegtmeyer, Department of Internal Medicine, Division of Cardiology, University of Texas Houston - Medical School, Houston, TX 77030, United States; 2005;278:71–78. 35. Sharma S, Taegtmeyer H, Adrogue J, Razeghi P, Sen S, Ngumbela K, Essop MF. Dynamic changes of gene expression in hypoxia-induced right ventricular hypertrophy. Am J Physiol - Hear Circ Physiol H. Taegtmeyer, Dept. of Internal Medicine, Division of Cardiology, Univ. of Texas-Houston Med. School, Houston, TX 77030, United States; 2004;286:H1185–H1192. 36. Sivitz WI, Lund DD, Yorek B, Grover-McKay M, Schmid PG. Pretranslational regulation of two cardiac glucose transporters in rats exposed to hypobaric hypoxia. Am J Physiol - Endocrinol Metab W.I. Sivitz, Dept. of Internal Medicine, Univ. of Iowa Hospitals and Clinics, Iowa City, IA 52246, United States; 1992;263:E562–E569. 37. Bruggen CE van der, Happé CM, Dorfmüller P, Trip P, Spruijt OA, Rol N, Hoevenaars FP, Houweling AC, Girerd B, Marcus JT, Mercier O, Humbert M, Handoko ML, Velden J van der, Vonk Noordegraaf A, Bogaard HJ, Goumans M-J, Man FS de. Bone Morphogenetic Protein Receptor Type 2 Mutation in Pulmonary Arterial HypertensionCLINICAL PERSPECTIVE. Circul ation 2016;133:1747–1760. 38. Bruns DR, Dale Brown R, Stenmark KR, Buttrick PM, Walker LA. Mitochondrial integrity in a neonatal bovine model of right ventricular dysfunction. Am J Physiol - Lung Cell Mol Physiol L.A. Walker, Univ. of Colorado-Denver, Dept. of Medicine, Cardiology, Aurora, United States; 2015;308:L158–L167. 39. Paulin R, Sutendra G, Gurtu V, Dromparis P, Haromy A, Provencher S, Bonnet S, Michelakis ED. A miR-208-Mef2 axis drives the decompensation of right ventricular function in pulmonary hypertension. Circ Res E.D. Michelakis, Department of Medicine, Cardiology, University of Alberta, Edmonton, Canada; 2015;116:56–69. 40. Broderick TL, KingTM. Upregulation of GLUT-4 in right ventricle of ratswithmonocrotaline- induced pulmonary hypertension. Med Sci Monit T. L. Broderick, Department of Physiology, Midwestern University, Glendale, AZ 85308, United States; 2008;14:BR261–BR264. 41. Talati MH, Brittain EL, Fessel JP, Penner N, Atkinson J, Funke M, Grueter C, Jerome WG, Freeman M, Newman JH, West J, Hemnes AR. Mechanisms of Lipid Accumulation in the Bone Morphogenetic Protein Receptor Type 2 Mutant Right Ventricle. Am J Respir Crit Care Med United States; 2016;194:719–728. 42. Nouette-Gaulain K, Malgat M, Rocher C, Savineau J-P, Marthan R, Mazat J-P, Sztark F. Time course of differential mitochondrial energy metabolism adaptation to chronic hypoxia in right and left ventricles. Cardiovasc Res F. Sztark, Laboratoire d’Anesthésiologie, E.A. Physiologie Mitochondriale, Universite Bordeaux 2, 33076 Bordordeaux, France; 2005;66:132–140. 43. Enache I, Charles A-L, Bouitbir J, Favret F, Zoll J, Metzger D, Oswald-Mammosser M, Geny B, Charloux A. Skeletal muscle mitochondrial dysfunction precedes right ventricular impairment in experimental pulmonary hypertension. Mol Cell Biochem I. Enache, Service de Physiologie et d’Explorations Fonctionnelles, Pôle de Pathologie Thoracique, Centre Hospitalier Universitaire Strasbourg, Nouvel Hôpital Civil, 67091 Strasbourg, France; 2013;373:161–170.

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