Suchbegriffe: ISCHEMIA - METABOLISM , . Treffer: 27
Bugger, H; Pfeil, K
Mitochondrial ROS in myocardial ischemia reperfusion and remodeling.
Biochim Biophys Acta Mol Basis Dis. 2020; 1866(7):165768-165768
Doi: 10.1016/j.bbadis.2020.165768
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Che, J; Najer, A; Blakney, AK; McKay, PF; Bellahcene, M; Winter, CW; Sintou, A; Tang, J; Keane, TJ; Schneider, MD; Shattock, RJ; Sattler, S; Stevens, MM
Neutrophils Enable Local and Non-Invasive Liposome Delivery to Inflamed Skeletal Muscle and Ischemic Heart.
Adv Mater. 2020; 32(48): e2003598
Doi: 10.1002/adma.202003598
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Ranek, MJ; Oeing, C; Sanchez-Hodge, R; Kokkonen-Simon, KM; Dillard, D; Aslam, MI; Rainer, PP; Mishra, S; Dunkerly-Eyring, B; Holewinski, RJ; Virus, C; Zhang, H; Mannion, MM; Agrawal, V; Hahn, V; Lee, DI; Sasaki, M; Van Eyk, JE; Willis, MS; Page, RC; Schisler, JC; Kass, DA
CHIP phosphorylation by protein kinase G enhances protein quality control and attenuates cardiac ischemic injury.
Nat Commun. 2020; 11(1): 5237-5237.
Doi: 10.1038/s41467-020-18980-x
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Gattringer, T; Khalil, M; Langkammer, C; Jehna, M; Pichler, A; Pinter, D; Kneihsl, M; Petrovic, K; Ropele, S; Fazekas, F; Enzinger, C
No evidence for increased brain iron deposition in patients with ischemic white matter disease.
Neurobiol Aging. 2016; 45(7):61-63
Doi: 10.1016/j.neurobiolaging.2016.05.008
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Hochmeister, S; Engel, O; Adzemovic, MZ; Pekar, T; Kendlbacher, P; Zeitelhofer, M; Haindl, M; Meisel, A; Fazekas, F; Seifert-Held, T
Lipocalin-2 as an Infection-Related Biomarker to Predict Clinical Outcome in Ischemic Stroke.
PLoS One. 2016; 11(5):e0154797-e0154797
Doi: 10.1371/journal.pone.0154797
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Stadlbauer, V; Stiegler, P; Taeubl, P; Sereinigg, M; Puntschart, A; Bradatsch, A; Curcic, P; Seifert-Held, T; Zmugg, G; Stojakovic, T; Leopold, B; Blattl, D; Horki, V; Mayrhauser, U; Wiederstein-Grasser, I; Leber, B; Jürgens, G; Tscheliessnigg, K; Hallström, S
Energy status of pig donor organs after ischemia is independent of donor type.
J Surg Res. 2013; 180(2):356-367
Doi: 10.1016/j.jss.2012.05.025
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Jayawardena, TM; Egemnazarov, B; Finch, EA; Zhang, L; Payne, JA; Pandya, K; Zhang, Z; Rosenberg, P; Mirotsou, M; Dzau, VJ
MicroRNA-mediated in vitro and in vivo direct reprogramming of cardiac fibroblasts to cardiomyocytes.
Circ Res. 2012; 110(11):1465-1473
Doi: 10.1161/CIRCRESAHA.112.269035
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Holfelder, K; Schittenhelm, J; Trautmann, K; Haybaeck, J; Meyermann, R; Beschorner, R
De novo expression of the hemoglobin scavenger receptor CD163 by activated microglia is not associated with hemorrhages in human brain lesions.
Histol Histopathol. 2011; 26(8): 1007-1017.
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Doenst, T; Bugger, H; Schwarzer, M; Faerber, G; Borger, MA; Mohr, FW
Three good reasons for heart surgeons to understand cardiac metabolism.
Eur J Cardiothorac Surg. 2008; 33(5): 862-871.
Doi: 10.1016/j.ejcts.2008.02.015
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Martin, C; Schulz, R; Post, H; Boengler, K; Kelm, M; Kleinbongard, P; Gres, P; Skyschally, A; Konietzka, I; Heusch, G
Microdialysis-based analysis of interstitial NO in situ: NO synthase-independent NO formation during myocardial ischemia.
Cardiovasc Res. 2007; 74(1): 46-55.
Doi: 10.1016/j.cardiores.2006.12.020
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Bugger, H; Chemnitius, JM; Doenst, T
Differential changes in respiratory capacity and ischemia tolerance of isolated mitochondria from atrophied and hypertrophied hearts.
Metabolism. 2006; 55(8): 1097-1106.
Doi: 10.1016/j.metabol.2006.04.005
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Kläsner, B; Lumenta, DB; Pruneau, D; Zausinger, S; Plesnila, N
Therapeutic window of bradykinin B2 receptor inhibition after focal cerebral ischemia in rats.
Neurochem Int. 2006; 49(5):442-447
Doi: 10.1016/j.neuint.2006.02.010
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Dworschak, M; Franz, M; Hallström, S; Semsroth, S; Gasser, H; Haisjackl, M; Podesser, BK; Malinski, T
S-nitroso human serum albumin improves oxygen metabolism during reperfusion after severe myocardial ischemia.
PHARMACOLOGY 2004 72: 106-112.
Doi: 10.1159/000079139
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Gattenlohner, S; Waller, C; Ertl, G; Bultmann, BD; Muller-Hermelink, HK; Marx, A
NCAM(CD56) and RUNX1(AML1) are up-regulated in human ischemic cardiomyopathy and a rat model of chronic cardiac ischemia.
Am J Pathol. 2003; 163(3):1081-1090
Doi: 10.1016/S0002-9440(10)63467-0
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Martin, C; Schulz, R; Post, H; Gres, P; Heusch, G
Effect of NO synthase inhibition on myocardial metabolism during moderate ischemia.
Am J Physiol Heart Circ Physiol. 2003; 284(6):H2320-H2324
Doi: 10.1152/ajpheart.01122.2002
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Mitterbauer, C; Schwarz, C; Hauser, P; Steininger, R; Regele, HM; Rosenkranz, A; Oberbauer, R
Impaired tubulointerstitial expression of endothelin-1 and nitric oxide isoforms in donor kidney biopsies with postischemic acute renal failure.
Transplantation. 2003; 76(4):715-720
Doi: 10.1097/01.TP.0000082820.13813.19
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Kersten, JR; Toller, WG; Tessmer, JP; Pagel, PS; Warltier, DC
Hyperglycemia reduces coronary collateral blood flow through a nitric oxide-mediated mechanism.
AMER J PHYSIOL-HEART CIRC PHY 2001 281: H2097-H2104.
Doi: 10.1152/ajpheart.2001.281.5.H2097
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Post, H; Schulz, R; Gres, P; Heusch, G
No involvement of nitric oxide in the limitation of beta-adrenergic inotropic responsiveness during ischemia.
Am J Physiol Heart Circ Physiol. 2001; 281(6):H2392-H2397
Doi: 10.1152/ajpheart.2001.281.6.H2392
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Heusch, G; Post, H; Michel, MC; Kelm, M; Schulz, R
Endogenous nitric oxide and myocardial adaptation to ischemia.
Circ Res. 2000; 87(2):146-152
Doi: 10.1161/01.RES.87.2.146
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Kersten, JR; Toller, WG; Gross, ER; Pagel, PS; Warltier, DC
Diabetes abolishes ischemic preconditioning: role of glucose, insulin, and osmolality.
Am J Physiol Heart Circ Physiol. 2000; 278(4):H1218-H1224
Doi: 10.1152/ajpheart.2000.278.4.H1218
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Beer, M; Landschutz, W; Meininger, M; Seyfarth, T; Viehrig, M; Sandstede, J; Pabst, T; Kenn, W; Horn, M; Harre, K; von Kienlin, M; Neubauer, S; Hahn, D
Determination of absolute concentrations of cardiac high-energy phosphates using P-31-MR-spectroscopy and SLOOP in healthy and diseased myocardium.
Rofo. 1999; 171(1):65-68
Doi: 10.1055/s-1999-9896
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Podesser, BK; Hallström, S; Schima, H; Huber, L; Weisser, J; Kröner, A; Fürst, W; Wolner, E
The erythrocyte-perfused "working heart" model: hemodynamic and metabolic performance in comparison to crystalloid perfused hearts.
J Pharmacol Toxicol Methods. 1999; 41(1):9-15
Doi: 10.1016/S1056-8719(99)00018-0
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Hutter-Paier, B; Frühwirth, M; Grygar, E; Windisch, M
Cerebrolysin protects neurons from ischemia-induced loss of microtubule--associated protein 2.
J Neural Transm Suppl. 1996; 47(1):276-276
Doi: 10.1007/978-3-7091-6892-9_21
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Hamamoto, I; Nemoto, EM; Evans, RW; Mischinger, HJ; Fujita, S; Murase, N; Todo, S
Rat liver lipids during ex vivo warm and cold ischemia and reperfusion.
J Surg Res. 1993; 55(4):382-389
Doi: 10.1006/jsre.1993.1157
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Gerber, G; Siems, W; Werner, A; Stoesser, R; Foeldes-Papp, Z; Kowalewski, J; Schneider, W; Grune, T
Regulation of purine nucleotide metabolism in hypoxic liver and intestine of rats: radical scavenging effects of allopurinol and oxypurinol.
Adv Exp Med Biol. 1989; 253B(3):497-504
Doi: 10.1007/978-1-4684-5676-9_74
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Adkison, D; Höllwarth, ME; Benoit, JN; Parks, DA; McCord, JM; Granger, DN
Role of free radicals in ischemia-reperfusion injury to the liver.
Acta Physiol Scand Suppl. 1986; 548(5):101-107
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Granger, DN; Höllwarth, ME; Parks, DA
Ischemia-reperfusion injury: role of oxygen-derived free radicals.
Acta Physiol Scand Suppl. 1986; 548(1):47-63
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