Suchbegriffe: PROTEOME - METABOLISM , . Treffer: 14
Koser, F; Hobbach, AJ; Abdellatif, M; Herbst, V; Türk, C; Reinecke, H; Krüger, M; Sedej, S; Linke, WA
Acetylation and phosphorylation changes to cardiac proteins in experimental HFpEF due to metabolic risk reveal targets for treatment.
Life Sci. 2022; 309:120998
Doi: 10.1016/j.lfs.2022.120998
Web of Science
PubMed
FullText
FullText_MUG
Wolf, A; Liesinger, L; Spoerk, S; Schittmayer, M; Lang-Loidolt, D; Birner-Gruenberger, R; Tomazic, PV
Olfactory cleft proteome does not reflect olfactory performance in patients with idiopathic and postinfectious olfactory disorder: A pilot study.
Sci Rep. 2018; 8(1):17554-17554
Doi: 10.1038/s41598-018-35776-8
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Karbiener, M; Darnhofer, B; Frisch, MT; Rinner, B; Birner-Gruenberger, R; Gugatschka, M
Comparative proteomics of paired vocal fold and oral mucosa fibroblasts.
J Proteomics. 2017; 155(6):11-21
Doi: 10.1016/j.jprot.2017.01.010
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Holzer, M; Kern, S; Birner-Grünberger, R; Curcic, S; Heinemann, A; Marsche, G
Refined purification strategy for reliable proteomic profiling of HDL2/3: Impact on proteomic complexity.
Sci Rep. 2016; 6(368):38533-38533
Doi: 10.1038/srep38533
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Tomazic, PV; Birner-Gruenberger, R; Leitner, A; Spoerk, S; Lang-Loidolt, D
Seasonal proteome changes of nasal mucus reflect perennial inflammatory response and reduced defence mechanisms and plasticity in allergic rhinitis.
J Proteomics. 2016; 133(4):153-160
Doi: 10.1016/j.jprot.2015.12.021
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
von Zur Mühlen, C; Koeck, T; Schiffer, E; Sackmann, C; Zürbig, P; Hilgendorf, I; Reinöhl, J; Rivera, J; Zirlik, A; Hehrlein, C; Mischak, H; Bode, C; Peter, K
Urine proteome analysis as a discovery tool in patients with deep vein thrombosis and pulmonary embolism.
PROTEOM CLIN APPL. 2016; 10(5): 574-584.
Doi: 10.1002/prca.201500105
Web of Science
PubMed
FullText
FullText_MUG
Eichmann, TO; Grumet, L; Taschler, U; Hartler, J; Heier, C; Woblistin, A; Pajed, L; Kollroser, M; Rechberger, G; Thallinger, GG; Zechner, R; Haemmerle, G; Zimmermann, R; Lass, A
ATGL and CGI-58 are lipid droplet proteins of the hepatic stellate cell line HSC-T6.
J Lipid Res. 2015; 56(10):1972-84
Doi: 10.1194/jlr.M062372
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Birner-Gruenberger, R; Schittmayer, M; Holzer, M; Marsche, G
Understanding high-density lipoprotein function in disease: recent advances in proteomics unravel the complexity of its composition and biology.
Prog Lipid Res. 2014; 56(2):36-46
Doi: 10.1016/j.plipres.2014.07.003
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Lapolla, A; Porcu, S; Roverso, M; Desoye, G; Cosma, C; Nardelli, GB; Bogana, G; Carrozzini, M; Traldi, P
A preliminary investigation on placenta protein profile reveals only modest changes in well controlled gestational diabetes mellitus.
Eur J Mass Spectrom (Chichester). 2013; 19(3):211-223
Doi: 10.1255/ejms.1225
Web of Science
PubMed
FullText
FullText_MUG
Matsuo, Y; Oberbach, A; Till, H; Inge, TH; Wabitsch, M; Moss, A; Jehmlich, N; Völker, U; Müller, U; Siegfried, W; Kanesawa, N; Kurabayashi, M; Schuler, G; Linke, A; Adams, V
Impaired HDL function in obese adolescents: impact of lifestyle intervention and bariatric surgery.
Obesity (Silver Spring). 2013; 21(12):E687-E695
Doi: 10.1002/oby.20538
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Bugger, H; Riehle, C; Jaishy, B; Wende, AR; Tuinei, J; Chen, D; Soto, J; Pires, KM; Boudina, S; Theobald, HA; Luptak, I; Wayment, B; Wang, X; Litwin, SE; Weimer, BC; Abel, ED
Genetic loss of insulin receptors worsens cardiac efficiency in diabetes.
J Mol Cell Cardiol. 2012; 52(5): 1019-1026.
Doi: 10.1016/j.yjmcc.2012.02.001
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
von zur Muhlen, C; Schiffer, E; Sackmann, C; Zürbig, P; Neudorfer, I; Zirlik, A; Htun, N; Iphöfer, A; Jänsch, L; Mischak, H; Bode, C; Chen, YC; Peter, K
Urine proteome analysis reflects atherosclerotic disease in an ApoE-/- mouse model and allows the discovery of new candidate biomarkers in mouse and human atherosclerosis.
MOL CELL PROTEOMICS. 2012; 11(7): M111.013847-M111.013847.
Doi: 10.1074/mcp.M111.013847
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Bernhart, E; Kollroser, M; Rechberger, G; Reicher, H; Heinemann, A; Schratl, P; Hallström, S; Wintersperger, A; Nusshold, C; DeVaney, T; Zorn-Pauly, K; Malli, R; Graier, W; Malle, E; Sattler, W
Lysophosphatidic acid receptor activation affects the C13NJ microglia cell line proteome leading to alterations in glycolysis, motility, and cytoskeletal architecture.
Proteomics. 2010; 10(1):141-158
Doi: 10.1002/pmic.200900195
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar
Hartler, J; Thallinger, GG; Stocker, G; Sturn, A; Burkard, TR; Körner, E; Rader, R; Schmidt, A; Mechtler, K; Trajanoski, Z
MASPECTRAS: a platform for management and analysis of proteomics LC-MS/MS data.
BMC Bioinformatics. 2007; 8:197-197
Doi: 10.1186/1471-2105-8-197
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG