Suchbegriffe: PANCREAS - METABOLISM , . Treffer: 16
Alvarez, MJ; Subramaniam, PS; Tang, LH; Grunn, A; Aburi, M; Rieckhof, G; Komissarova, EV; Hagan, EA; Bodei, L; Clemons, PA; Dela Cruz, FS; Dhall, D; Diolaiti, D; Fraker, DA; Ghavami, A; Kaemmerer, D; Karan, C; Kidd, M; Kim, KM; Kim, HC; Kunju, LP; Langel, U; Li, Z; Lee, J; Li, H; LiVolsi, V; Pfragner, R; Schwach, G; Rainey, AR; Realubit, RB; Remotti, H; Regberg, J; Roses, R; Rustgi, A; Sepulveda, AR; Serra, S; Shi, CJ; Yuan, XP; Barberis, M; Bergamaschi, R; Chinnaiyan, AM; Detre, T; Ezzat, S; Frilling, A; Hommann, M; Jaeger, D; Kim, MK; Knudsen, BS; Kung, AL; Leahy, E; Metz, DC; Milsom, JW; Park, YS; Reidy-Lagunes, D; Schreiber, S; Washington, K; Wiedenmann, B; Modlin, I; Califano, A
A precision oncology approach to the pharmacological targeting of mechanistic dependencies in neuroendocrine tumors.
Nat Genet. 2018; 50(7):979-989
Doi: 10.1038/s41588-018-0138-4
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Staaf, J; Labmayr, V; Paulmichl, K; Manell, H; Cen, J; Ciba, I; Dahlbom, M; Roomp, K; Anderwald, CH; Meissnitzer, M; Schneider, R; Forslund, A; Widhalm, K; Bergquist, J; Ahlström, H; Bergsten, P; Weghuber, D; Kullberg, J
Pancreatic Fat Is Associated With Metabolic Syndrome and Visceral Fat but Not Beta-Cell Function or Body Mass Index in Pediatric Obesity.
Pancreas. 2017; 46(3): 358-365.
Doi: 10.1097/MPA.0000000000000771
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Kroneis, T; Ye, J; Gillespie, K
Laser Capture and Single Cell Genotyping from Frozen Tissue Sections.
Methods Mol Biol. 2016; 1433(1):159-167
Doi: 10.1007/7651_2015_290
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Zanini, S; Giovinazzo, F; Alaimo, D; Lawrence, B; Pfragner, R; Bassi, C; Modlin, I; Kidd, M
GNA15 expression in small intestinal neuroendocrine neoplasia: functional and signalling pathway analyses.
Cell Signal. 2015; 27(5):899-907
Doi: 10.1016/j.cellsig.2015.02.001
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Forster, T; Rausch, V; Zhang, Y; Isayev, O; Heilmann, K; Schoensiegel, F; Liu, L; Nessling, M; Richter, K; Labsch, S; Nwaeburu, CC; Mattern, J; Gladkich, J; Giese, N; Werner, J; Schemmer, P; Gross, W; Gebhard, MM; Gerhauser, C; Schaefer, M; Herr, I
Sulforaphane counteracts aggressiveness of pancreatic cancer driven by dysregulated Cx43-mediated gap junctional intercellular communication.
Oncotarget. 2014; 5(6):1621-1634
Doi: 10.18632/oncotarget.1764
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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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Schwetz, V; Pieber, T; Obermayer-Pietsch, B
The endocrine role of the skeleton: background and clinical evidence.
Eur J Endocrinol. 2012; 166(6):959-967
Doi: 10.1530/EJE-12-0030
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Ceyhan, GO; Timm, AK; Bergmann, F; Günther, A; Aghdassi, AA; Demir, IE; Mayerle, J; Kern, M; Lerch, MM; Büchler, MW; Friess, H; Schemmer, P
Prophylactic glycine administration attenuates pancreatic damage and inflammation in experimental acute pancreatitis.
Pancreatology. 2011; 11(1):57-67
Doi: 10.1159/000325972
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Kallifatidis, G; Rausch, V; Baumann, B; Apel, A; Beckermann, BM; Groth, A; Mattern, J; Li, Z; Kolb, A; Moldenhauer, G; Altevogt, P; Wirth, T; Werner, J; Schemmer, P; Büchler, MW; Salnikov, AV; Herr, I
Sulforaphane targets pancreatic tumour-initiating cells by NF-kappaB-induced antiapoptotic signalling.
Gut. 2009; 58(7):949-963
Doi: 10.1136/gut.2008.149039
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Griesbacher, T; Pommer, V; Schuligoi, R; Tiran, B; Peskar, BA
Anti-inflammatory actions of perfluorooctanoic acid and peroxisome proliferator-activated receptors (PPAR) alpha and gamma in experimental acute pancreatitis.
Int Immunopharmacol. 2008; 8(2): 325-329.
Doi: 10.1016/j.intimp.2007.08.005
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Wiktor-Brown, DM; Olipitz, W; Hendricks, CA; Rugo, RE; Engelward, BP
Tissue-specific differences in the accumulation of sequence rearrangements with age.
DNA Repair (Amst). 2008; 7(5):694-703
Doi: 10.1016/j.dnarep.2008.01.012
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Wiktor-Brown, DM; Hendricks, CA; Olipitz, W; Engelward, BP
Age-dependent accumulation of recombinant cells in the mouse pancreas revealed by in situ fluorescence imaging.
Proc Natl Acad Sci U S A. 2006; 103(32):11862-11867
Doi: 10.1073/pnas.0604943103
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Griesbacher, T; Rainer, I; Tiran, B; Fink, E; Lembeck, F; Peskar, BA
Mechanism of kinin release during experimental acute pancreatitis in rats: evidence for pro- as well as anti-inflammatory roles of oedema formation.
Br J Pharmacol. 2003; 139(2):299-308
Doi: 10.1038/sj.bjp.0705247
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Stepan, VM; Dickinson, CJ; del Valle, J; Matsushima, M; Todisco, A
Cell type-specific requirement of the MAPK pathway for the growth factor action of gastrin.
Am J Physiol. 1999; 276(6 Pt 1):G1363-G1372
Doi: 10.1152/ajpgi.1999.276.6.G1363
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Porta, S; Himly, C; Rinner, I; Schwarz, U; Werner, M; Poncza, B; Korsatko, W
Isoprenaline cannot act on pancreatic beta cells without hyperglycemia or alpha-block.
EXP PATHOL. 1991; 43(1-2): 57-61.
Doi: 10.1016/S0232-1513(11)80144-1
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Porta, S; Sadjak, A; Supanz, S; Pürstner, P; Korsatko, W; Wabnegg, B; Ertl, U
Peculiar long-term effects of catecholamines and their blockers in rats on insulin, glucose and pancreas.
EXP PATHOL. 1984; 26(4): 241-245.
Doi: 10.1016/S0232-1513(84)80056-0
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