Suchbegriffe: LIPOPROTEINS, . Treffer: 438
Dikaios, I; Althaus, H; Angles-Cano, E; Ceglarek, U; Coassin, S; Cobbaert, CM; Delatour, V; Dieplinger, B; Grimmler, M; Hoofnagle, AN; Kostner, GM; Kronenberg, F; Kuklenyik, Z; Lyle, AN; Prinzing, U; Ruhaak, LR; Scharnagl, H; Vesper, HW; Deprez, L
Commutability Assessment of Candidate Reference Materials for Lipoprotein(a) by Comparison of a MS-based Candidate Reference Measurement Procedure with Immunoassays.
Clin Chem. 2023;
Doi: 10.1093/clinchem/hvac203
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Rani, A; Marsche, G
A Current Update on the Role of HDL-Based Nanomedicine in Targeting Macrophages in Cardiovascular Disease.
Pharmaceutics. 2023; 15(5):
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Stadler, JT; Scharnagl, H; Wadsack, C; Marsche, G
Preeclampsia Affects Lipid Metabolism and HDL Function in Mothers and Their Offspring.
Antioxidants (Basel). 2023; 12(4):
Doi: 10.3390/antiox12040795
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Stadler, JT; van, Poppel, MNM; Christoffersen, C; Hill, D; Wadsack, C; Simmons, D; Desoye, G; Marsche, G; Dali, Core, Investigator, Group
Gestational Hypertension and High-Density Lipoprotein Function: An Explorative Study in Overweight/Obese Women of the DALI Cohort.
Antioxidants (Basel). 2022; 12(1):
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Stadler, JT; van, Poppel, MNM; Wadsack, C; Holzer, M; Pammer, A; Simmons, D; Hill, D; Desoye, G; Marsche, G; Dali, Core, Investigator, Group
Obesity Affects Maternal and Neonatal HDL Metabolism and Function.
Antioxidants (Basel). 2023; 12(1):
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Zafaranieh, S; Stadler, JT; Pammer, A; Marsche, G; van Poppel, MNM; Desoye, G; Dali Core Investigator Group
The Association of Physical Activity and Sedentary Behavior with Maternal and Cord Blood Anti-Oxidative Capacity and HDL Functionality: Findings of DALI Study.
Antioxidants (Basel). 2023; 12(4):
Doi: 10.3390/antiox12040827
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Dietrich, E; Jomard, A; Osto, E
Crosstalk between high-density lipoproteins and endothelial cells in health and disease: Insights into sex-dependent modulation.
Front Cardiovasc Med. 2022; 9: 989428
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Holzer, M; Ljubojevic-Holzer, S; Souza, Junior, DR; Stadler, JT; Rani, A; Scharnagl, H; Ronsein, GE; Marsche, G
HDL Isolated by Immunoaffinity, Ultracentrifugation, or Precipitation is Compositionally and Functionally Distinct.
J Lipid Res. 2022; 63(12):100307
Doi: 10.1016/j.jlr.2022.100307
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Metzner, T; Leitner, DR; Mellitzer, K; Beck, A; Sourij, H; Stojakovic, T; Reishofer, G; März, W; Landmesser, U; Scharnagl, H; Toplak, H; Silbernagel, G
Effects of Alirocumab on Triglyceride Metabolism: A Fat-Tolerance Test and Nuclear Magnetic Resonance Spectroscopy Study.
Biomedicines. 2022; 10(1):
Doi: 10.3390/biomedicines10010193
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Posch-Pertl, L; Michelitsch, M; Wagner, G; Wildner, B; Silbernagel, G; Pregartner, G; Wedrich, A
Cholesterol and glaucoma: a systematic review and meta-analysis.
Acta Ophthalmol. 2022; 100(2):148-158
Doi: 10.1111/aos.14769
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Reisinger, AC; Schuller, M; Sourij, H; Stadler, JT; Hackl, G; Eller, P; Marsche, G
Impact of Sepsis on High-Density Lipoprotein Metabolism.
Front Cell Dev Biol. 2021; 9:795460
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Rief, M; Raggam, R; Rief, P; Metnitz, P; Stojakovic, T; Reinthaler, M; Brodmann, M; März, W; Scharnagl, H; Silbernagel, G
Comparison of Two Nuclear Magnetic Resonance Spectroscopy Methods for the Measurement of Lipoprotein Particle Concentrations.
Biomedicines. 2022; 10(7): 1766
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Silbernagel, G; Scharnagl, H; Saely, CH; Reinthaler, M; Rief, M; Kleber, ME; Larcher, B; Chapman, J; Schaefer, JR; Drexel, H; März, W
The LDL Apolipoprotein B-to-LDL Cholesterol Ratio: Association with Cardiovascular Mortality and a Biomarker of Small, Dense LDLs.
Biomedicines. 2022; 10(6): 1302
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Stadler, JT; Lackner, S; Mörkl, S; Meier-Allard, N; Scharnagl, H; Rani, A; Mangge, H; Zelzer, S; Holasek, SJ; Marsche, G
Anorexia Nervosa Is Associated with a Shift to Pro-Atherogenic Low-Density Lipoprotein Subclasses.
Biomedicines. 2022; 10(4):
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Stadler, JT; Mangge, H; Rani, A; Curcic, P; Herrmann, M; Prüller, F; Marsche, G
Low HDL Cholesterol Efflux Capacity Indicates a Fatal Course of COVID-19.
Antioxidants (Basel). 2022; 11(10):
Doi: 10.3390/antiox11101858
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Streese, L; Habisch, H; Deiseroth, A; Carrard, J; Infanger, D; Schmidt-Trucksäss, A; Madl, T; Hanssen, H
Lipoprotein Subclasses Independently Contribute to Subclinical Variance of Microvascular and Macrovascular Health.
MOLECULES. 2022; 27(15):
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Cisse, A; Schachner-Nedherer, AL; Appel, M; Beck, C; Ollivier, J; Leitinger, G; Prassl, R; Kornmueller, K; Peters, J
Dynamics of Apolipoprotein B-100 in Interaction with Detergent Probed by Incoherent Neutron Scattering.
J Phys Chem Lett. 2021; 12(51):12402-12410
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Cobbaert, CM; Althaus, H; Begcevic Brkovic, I; Ceglarek, U; Coassin, S; Delatour, V; Deprez, L; Dikaios, I; Dittrich, J; Hoofnagle, AN; Kostner, GM; Kronenberg, F; Kuklenyik, Z; Prinzing, U; Vesper, HW; Zegers, I; Ruhaak, LR; IFCC Working Group for Standardization of Apolipoproteins by Mass Spectrometry
Towards an SI-Traceable Reference Measurement System for Seven Serum Apolipoproteins Using Bottom-Up Quantitative Proteomics: Conceptual Approach Enabled by Cross-Disciplinary/Cross-Sector Collaboration.
CLIN CHEM. 2021; 67(3): 478-489.
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Lamprea-Montealegre, JA; Katz, R; Scharnagl, H; Silbernagel, G; März, W; Drechsler, C; Wanner, C; de, Boer, IH
Triglyceride-Rich Lipoproteins, Apolipoproteins, and Atherosclerotic Cardiovascular Events Among Patients with Diabetes Mellitus and End-Stage Renal Disease on Hemodialysis.
Am J Cardiol. 2021; 152: 63-68.
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Leiherer, A; Mundlein, A, A; Brandtner, EM; Saly, CH; Ramadani, H; Vonbank, A; Mader, A; Dopheide, JF; Jylha, A; Laaperi, M; Laaksonen, R; Marz, W; Fraunberger, P; Kleber, M; Drexel, H
Lipid profiles of patients with manifest coronary versus peripheral atherosclerosis - is there a difference?
J INTERN MED. 2021;
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Määttä, AM; Salminen, A; Pietiäinen, M; Leskelä, J; Palviainen, T; Sattler, W; Sinisalo, J; Salomaa, V; Kaprio, J; Pussinen, PJ
Endotoxemia is associated with an adverse metabolic profile.
INNATE IMMUN-LONDON. 2021; 27(1): 3-14.
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Muller-Wieland, D; Merkel, M; Verket, M; Marz, W; von Eckardstein, A
Pathophysiological principles of dyslipoproteinaemia
DEUT MED WOCHENSCHR. 2021;
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Rau, M; Thiele, K; Korbinian, Hartmann, NU; Möllmann, J; Wied, S; Böhm, M; Scharnagl, H; März, W; Marx, N; Lehrke, M
Effects of empagliflozin on lipoprotein subfractions in patients with type 2 diabetes: data from a randomized, placebo-controlled study.
Atherosclerosis. 2021; 330: 8-13.
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Reisinger, AC; Posch, F; Hackl, G; Marsche, G; Sourij, H; Bourgeois, B; Eller, K; Madl, T; Eller, P
Branched-Chain Amino Acids Can Predict Mortality in ICU Sepsis Patients.
Nutrients. 2021; 13(9):
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Reisinger, C; Nkeh-Chungag, BN; Fredriksen, PM; Goswami, N
The prevalence of pediatric metabolic syndrome-a critical look on the discrepancies between definitions and its clinical importance.
Int J Obes (Lond). 2021; 45(1): 12-24.
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Robert, J; Osto, E; von, Eckardstein, A
The Endothelium Is Both a Target and a Barrier of HDL's Protective Functions.
Cells. 2021; 10(5):
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Schunk, SJ; Hermann, J; Sarakpi, T; Triem, S; Lellig, M; Hahm, E; Zewinger, S; Schmit, D; Becker, E; Mollmann, J; Lehrke, M; Kramann, R; Boor, P; Lipp, P; Laufs, U; Marz, W; Reiser, J; Jankowski, J; Fliser, D; Speer, T; Jankowski, V
Guanidinylated Apolipoprotein C3 (ApoC3) Associates with Kidney and Vascular Injury
J AM SOC NEPHROL. 2021; 32(12): 3146-3160.
Doi: 10.1681/ASN.2021040503
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Stadler, JT; Marsche, G
Dietary Strategies to Improve Cardiovascular Health: Focus on Increasing High-Density Lipoprotein Functionality.
Front Nutr. 2021; 8: 761170
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Stadler, JT; Wadsack, C; Marsche, G
Fetal High-Density Lipoproteins: Current Knowledge on Particle Metabolism, Composition and Function in Health and Disease.
Biomedicines. 2021; 9(4):
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Sturm, EM; Knuplez, E; Marsche, G
Role of Short Chain Fatty Acids and Apolipoproteins in the Regulation of Eosinophilia-Associated Diseases.
Int J Mol Sci. 2021; 22(9):
Doi: 10.3390/ijms22094377
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Trakaki, A; Marsche, G
Current Understanding of the Immunomodulatory Activities of High-Density Lipoproteins.
Biomedicines. 2021; 9(6):
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Tsiantoulas, D; Eslami, M; Obermayer, G; Clement, M; Smeets, D; Mayer, FJ; Kiss, MG; Enders, L; Weißer, J; Göderle, L; Lambert, J; Frommlet, F; Mueller, A; Hendrikx, T; Ozsvar-Kozma, M; Porsch, F; Willen, L; Afonyushkin, T; Murphy, JE; Fogelstrand, P; Donzé, O; Pasterkamp, G; Hoke, M; Kubicek, S; Jørgensen, HF; Danchin, N; Simon, T; Scharnagl, H; März, W; Borén, J; Hess, H; Mallat, Z; Schneider, P; Binder, CJ
APRIL limits atherosclerosis by binding to heparan sulfate proteoglycans.
Nature. 2021; 597(7874):92-96
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Anand, R; Kondadi, AK; Meisterknecht, J; Golombek, M; Nortmann, O; Riedel, J; Peifer-Weiß, L; Brocke-Ahmadinejad, N; Schlütermann, D; Stork, B; Eichmann, TO; Wittig, I; Reichert, AS
MIC26 and MIC27 cooperate to regulate cardiolipin levels and the landscape of OXPHOS complexes.
Life Sci Alliance. 2020; 3(10):
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Barth, DA; Drula, R; Ott, L; Fabris, L; Slaby, O; Calin, GA; Pichler, M
Circulating Non-coding RNAs in Renal Cell Carcinoma-Pathogenesis and Potential Implications as Clinical Biomarkers.
Front Cell Dev Biol. 2020; 8:828
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Delgado, GE; Krämer, BK; Scharnagl, H; Fauler, G; Stojakovic, T; März, W; Kleber, ME; Lammert, A
Bile Acids in Patients with Uncontrolled Type 2 Diabetes Mellitus - The Effect of Two Days of Oatmeal Treatment.
Exp Clin Endocrinol Diabetes. 2020; 128(9):624-630
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Heine, GH; Eller, K; Stadler, JT; Rogacev, KS; Marsche, G, ;RITERM, study, group;RITERM, study, group
Lipid-modifying therapy in chronic kidney disease: Pathophysiological and clinical considerations.
Pharmacol Ther. 2020; 207:107459
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Jomard, A; Osto, E
High Density Lipoproteins: Metabolism, Function, and Therapeutic Potential.
Front Cardiovasc Med. 2020; 7:39
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Leskelä, J; Pietiäinen, M; Safer, A; Lehto, M; Metso, J; Malle, E; Buggle, F; Becher, H; Sundvall, J; Grau, AJ; Pussinen, PJ; Palm, F
Serum lipopolysaccharide neutralizing capacity in ischemic stroke.
PLoS One. 2020; 15(2): e0228806-e0228806.
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Marsche, G; Heine, GH; Stadler, JT; Holzer, M
Current Understanding of the Relationship of HDL Composition, Structure and Function to Their Cardioprotective Properties in Chronic Kidney Disease.
Biomolecules. 2020; 10(9):
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Müller, M; Schönfeld, CL; Grammer, T; Krane, V; Drechsler, C; Genser, B; Kohnen, T; Wanner, C; März, W
Risk factors for retinopathy in hemodialysis patients with type 2 diabetes mellitus.
Sci Rep. 2020; 10(1):14158-14158
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Olivieri, O; Speziali, G; Castagna, A; Pattini, P; Udali, S; Pizzolo, F; Liesinger, L; Gindlhuber, J; Tomin, T; Schittmayer, M; Birner-Gruenberger, R; Cecconi, D; Girelli, D; Friso, S; Martinelli, N
The Positive Association between Plasma Myristic Acid and ApoCIII Concentrations in Cardiovascular Disease Patients Is Supported by the Effects of Myristic Acid in HepG2 Cells.
J Nutr. 2020; 150(10):2707-2715
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Ritsch, A; Duerr, A; Kahler, P; Hunjadi, M; Stojakovic, T; Silbernagel, G; Scharnagl, H; Kleber, ME; März, W
Cholesterol Efflux Capacity and Cardiovascular Disease: The Ludwigshafen Risk and Cardiovascular Health (LURIC) Study.
Biomedicines. 2020; 8(11):
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Roula, D; Theiler, A; Luschnig, P; Sturm, GJ; Tomazic, PV; Marsche, G; Heinemann, A; Sturm, EM
Apolipoprotein A-IV acts as an endogenous anti-inflammatory protein and is reduced in treatment-naïve allergic patients and allergen-challenged mice.
Allergy. 2020; 75(2):392-402
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Silbernagel, G; Scharnagl, H; Kleber, ME; Hoffmann, MM; Delgado, G; Stojakovic, T; Gary, T; Zeng, L; Ritsch, A; Zewinger, S; Speer, T; Schunkert, H; Landmesser, U; März, W; Grammer, TB, ;Meta-Analyses, of, Glucose, and, Insulin-related, traits, Consortium, (MAGIC);Meta-Analyses, of, Glucose, and, Insulin-related, traits, Consortium, (MAGIC)
Common APOC3 variants are associated with circulating ApoC-III and VLDL cholesterol but not with total apolipoprotein B and coronary artery disease.
Atherosclerosis. 2020; 311:84-90
Doi: 10.1016/j.atherosclerosis.2020.08.017
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Stadler, JT; Marsche, G
Obesity-Related Changes in High-Density Lipoprotein Metabolism and Function.
Int J Mol Sci. 2020; 21(23):
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Trakaki, A; Marsche, G
High-Density Lipoprotein (HDL) in Allergy and Skin Diseases: Focus on Immunomodulating Functions.
Biomedicines. 2020; 8(12):
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Trakaki, A; Scharnagl, H; Trieb, M; Holzer, M; Hinghofer-Szalkay, H; Goswami, N; Marsche, G
Prolonged bedrest reduces plasma high-density lipoprotein levels linked to markedly suppressed cholesterol efflux capacity.
Sci Rep. 2020; 10(1): 15001-15001.
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Trieb, M; Rainer, F; Stadlbauer, V; Douschan, P; Horvath, A; Binder, L; Trakaki, A; Knuplez, E; Scharnagl, H; Stojakovic, T; Heinemann, Á; Mandorfer, M; Paternostro, R; Reiberger, T; Pitarch, C; Amorós, A; Gerbes, A; Caraceni, P; Alessandria, C; Moreau, R; Clària, J; Marsche, G; Stauber, RE
HDL-related biomarkers are robust predictors of survival in patients with chronic liver failure.
J Hepatol. 2020; 73(1):113-120
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Vujić, N; Korbelius, M; Sachdev, V; Rainer, S; Zimmer, A; Huber, A; Radović, B; Kratky, D
Intestine-specific DGAT1 deficiency improves atherosclerosis in apolipoprotein E knockout mice by reducing systemic cholesterol burden.
Atherosclerosis. 2020; 310:26-36
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Zewinger, S; Reiser, J; Jankowski, V; Alansary, D; Hahm, E; Triem, S; Klug, M; Schunk, SJ; Schmit, D; Kramann, R; Körbel, C; Ampofo, E; Laschke, MW; Selejan, SR; Paschen, A; Herter, T; Schuster, S; Silbernagel, G; Sester, M; Sester, U; Aßmann, G; Bals, R; Kostner, G; Jahnen-Dechent, W; Menger, MD; Rohrer, L; März, W; Böhm, M; Jankowski, J; Kopf, M; Latz, E; Niemeyer, BA; Fliser, D; Laufs, U; Speer, T
Apolipoprotein C3 induces inflammation and organ damage by alternative inflammasome activation.
Nat Immunol. 2020; 21(1): 30-41.
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