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Publikationen (Auszug Forschungs­datenbank)

Cont, D.; Harm, S.; Schildboeck, C.; Kolm, C.; Kirschner, A.K.T.; Farnleitner, A.H.; Pilecky, M.; Zottl, J.; Hartmann, J.; Weber, V. (2024). The neutralizing effect of heparin on blood-derived antimicrobial compounds: impact on antibacterial activity and inflammatory response. Front Immunol, 15: 1373255

Ebeyer-Masotta, M.; Eichhorn, T.; Fischer, M.B.; Weber, V. (2024). Impact of production methods and storage conditions on extracellular vesicles in packed red blood cells and platelet concentrates. Transfus Apher Sci, 63: 103891

Harm, S.; Schildböck, C.; Cont, D. und Weber, V. (2024). Heparin enables the reliable detection of endotoxin in human serum samples using the Limulus amebocyte lysate assay. Sci Rep, 14: 2410

Weber, V.; Eichhorn, T. (2024). Extracellular vesicles in blood products. Transfus Apher Sci, 63: 103894

Weiss, R. and Mostageer, M.; Eichhorn, T.; Huber, S.; Egger, D.; Spittler, A.; Tripisciano, C.; Kasper, C.; Weber, V. (2024). The fluorochrome-to-protein ratio is crucial for the flow cytometric detection of tissue factor on extracellular vesicles. Sci Rep, 14: 6419

Weber, V. (2024). Aktivierung von Zellen an der Grenzfläche von Blut und Biomaterialien. Leibnitz Online, 52: 1-7

Eichhorn, T.; Huber, S.; Weiss, R.; Ebeyer-Masotta, M.; Lauková, L.; Emprechtinger, R.; Bellmann-Weiler, R.; Lorenz, I.; Martini, J.; Pirklbauer, M.; Orth-Höller, D.; Würzner, R.; Weber, V. (2023). Infection with SARS-CoV-2 is associated with elevated levels of IP-10, MCP-1, and IL-13 in sepsis patients. Diagnostics, 13(6): 1069

Eichhorn, T.; Weiss, R.; Huber, S.; Ebeyer-Masotta, M.; Mostageer, M.; Emprechtinger, R.; Knabl, L., Sr.; Knabl, L.; Würzner, R.; Weber, V. (2023). Expression of tissue factor and platelet/leukocyte markers on extracellular vesicles reflect platelet–leukocyte interaction in severe COVID-19. Int J Mol Sci, 24: 16886

Almeria, C.; Kreß, S.; Weber, V.; Egger, D.; Kasper, C. (2022). Heterogeneity of mesenchymal stem cell-derived extracellular vesicles is highly impacted by the tissue/cell source and culture conditions. Cell Biosci, 12(1): 51

Ebeyer-Masotta, M.; Eichhorn, T.; Weiss, R.; Lauková, L.; Weber, V. (2022). Activated platelets and platelet-derived extracellular vesicles mediate COVID-19-associated immunothrombosis. Front Cell Dev Biol, 10: 914891

Ebeyer-Masotta, M.; Eichhorn, T.; Weiss, R.; Semak, V.; Lauková, L.; Fischer, M.B. and Weber, V. (2022). Heparin-functionalized adsorbents eliminate central effectors of immunothrombosis, including platelet factor 4, high-mobility group box 1 protein and histones. Int J Mol Sci, 23: 1823

Kny, E.; Reiner-Rozman, C.; Dostalek, J.; Hassel, AW.; Nöhammer, C.; Pfaffeneder-Mantai, F.; Szunerits, S.; Weber, V.; Knoll, W. and Kleber, C. (2022). State of the Art of Chemosensors in a Biomedical Context. Chemosensors, 10: 199

Pilecky, M.; Harm, S.; Bauer, C.; Zottl, J.; Emprechtinger, R.; Eichhorn, T.; Schildböck, C.; Ecker, M.; Willheim, M.; Weber, V.; Hartmann, J. (2022). Performance of lateral flow assays for SARS-CoV-2 compared to RT-qPCR. J Infect, Jan 14: S0163-4453(22)00011-1

Semak, V.; Eichhorn, T.; Weiss, R.; Weber, V. (2022). Polyzwitterionic coating of porous adsorbents for therapeutic apheresis. J Funct Biomater, 13: 216

Steinberger, S.; Karuthedom George, S.; Lauková, L.; Weiss, R.; Tripisciano, C.; Marchetti-Deschmann, M.; Weber, V.; Allmaier, G. and Weiss, V.U. (2022). Targeting the structural integrity of extracellular vesicles via nano electrospray gas-phase electrophoretic mobility molecular analysis (nES GEMMA). Membranes, 12(9): 872

Summer, S.; Rossmanith, E.; Pasztorek, M.; Fiedler, C.; Gröger, M.; Rauscher, S.; Weber V. and Fischer, M.B. (2022). Mesenchymal stem cells support human vascular endothelial cells to form vascular sprouts in human platelet lysate-based matrices. PlosOne, 17(12): e0278895

Eichhorn, T.; Linsberger, I.; Lauková, L.; Tripisciano, C.; Fendl, B.; Weiss, R.; König, F.; Valicek, G.; Miestinger, G.; Hörmann, C.; Weber, V. (2021). Analysis of inflammatory mediator profiles in sepsis patients reveals that extracellular histones are strongly elevated in nonsurvivors. Mediators Inflamm, 2021: 8395048

Fendl, B.; Weiss, R.; Eichhorn, T.; Linsberger, I.; Afonyushkin, T.; Puhm, F.; Binder, C.J.; Fischer, M.B.; Weber, V. (2021). Extracellular vesicles are associated with C-reactive protein in sepsis. Sci Rep, 11: 6996

Huber, S.; Knoll, M.A.; Berktold, M.; Würzner, R.; Brindlmayer, A.; Weber, V.; Posch, A.E.; Mrazek, K.; Lepuschitz, S.; Ante, M.; Beisken, S.; Orth-Höller, D.; Weinberger, J. (2021). Genomic and phenotypic analysis of linezolid-resistant Staphylococcus epidermidis in a tertiary hospital in Innsbruck, Austria. Microorganisms, 9: 1023

Huber, S.; Weinberger, J; Pilecky, M.; Lorenz, I.; Schildberger, A.; Weber, V.; Fuchs, S.; Posch, W.; Knabl, L.; Würzner, R.; Posch, A.E.; Orth-Höller, D. (2021). A high leukocyte count and administration of hydrocortisone hamper PCR-based diagnostics for bloodstream infections. Eur J Clin Microbiol Infect Dis, 40(7): 1441-1449

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