Publikationen am RIZ

Sun, L., Huang, M., Feng, S., Zhang, W., Quan, Y., Chen, R., Yang, Y., Xu, H., Li, W., Pan, Q., Chen, X., Zhang, D., Yuan, B., Zhao, J., Wang, Z., Lin, J., Peng, W., Ludlow, M., & Zhang, Q. (2025). Developing an eVLP mRNA vaccine for respiratory syncytial virus with enhanced pre-fusion targeting humoral responses. Journal of Virology, 99(10), Article e0120925. https://doi.org/10.1128/jvi.01209-25
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Wannemacher, R., Stegmann, F., Baumgärtner, W., Lepenies, B., & Gerhauser, I. (2025). Infektion einer β-Galaktosidase-defizienten Mauslinie mit dem murinen Theiler-Enzephalomyelitisvirus verdeutlicht begrenzte immunologische Dysregulationen durch lysosomale Speicherkrankheiten. In 68. Jahrestagung der Fachgruppe Pathologie der Deutschen Veterinärmedizinischen Gesellschaft (P50). https://doi.org/10.1055/s-0045-1808606
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Wannemacher, R., Stegmann, F., Eikelberg, D., Bühler, M., Li, D., Kohale, S. K., Asawapattanakul, T., Ebbecke, T., Raulf, M.-K., Baumgärtner, W., Lepenies, B., & Gerhauser, I. (2025). Infection of a β-galactosidase-deficient mouse strain with Theiler’s murine encephalomyelitis virus reveals limited immunological dysregulations in this lysosomal storage disease. Frontiers in Immunology, 16, Article 1467207. https://doi.org/10.3389/fimmu.2025.1467207
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Zöller, D. D. J. A. (2025). Early antiviral responses against Batai Virus, Bunyamwera Virus, and their reassortants. https://nbn-resolving.org/urn:nbn:de:gbv:95-121659
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Agac, A., Meineke, R., Ludlow, M., Osterhaus, A. D. M. E., & Rimmelzwaan, G. F. (2024). RSV infection induces a proinflammatory immune response in primary monocytes. In 17th Graduate School Day: 22/23 November 2024 : abstract book (Zoo T 18). Stiftung Tierärztliche Hochschule Hannover.
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Aksu, M., Kumar, P., Güttler, T., Taxer, W., Gregor, K., Mußil, B., Rymarenko, O., Stegmann, K. M., Dickmanns, A., Gerber, S., Reineking, W., Schulz, C., Henneck, T., Mohamed, A., Pohlmann, G., Ramazanoglu, M., Mese, K., Groß, U., Ben-Yedidia, T., et al. (2024). Nanobodies to multiple spike variants and inhalation of nanobody-containing aerosols neutralize SARS-CoV-2 in cell culture and hamsters. Antiviral Research, 221, Article 105778. https://doi.org/10.1016/j.antiviral.2023.105778
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Aregay, A., Slunečko, J., Korva, M., Bogovic, P., Resman Rus, K., Knap, N., Beicht, J., Kubinski, M., Saletti, G., Avšič-Županc, T., Steffen, I., Strle, F., Osterhaus, A. D. M. E., & Rimmelzwaan, G. F. (2024). Tick-borne encephalitis vaccine breakthrough infections induce aberrant T cell and antibody responses to non-structural proteins. Npj Vaccines, 9, Article 141. https://doi.org/10.1038/s41541-024-00936-7
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Aregay, A., Slunečko, J., Bogovic, P., Korva, M., Resman Rus, K., Knap, N., Beicht, J., Kubinski, M., Saletti, G., Steffen, I., Strle, F., Avšič-Županc, T., Osterhaus, A. D. M. E., & Rimmelzwaan, G. F. (2024). Poor virus-specific T-cell responses early after tick-borne encephalitis virus infection correlate with disease severity. Emerging Microbes & Infections, 13(1), Article 2317909. https://doi.org/10.1080/22221751.2024.2317909
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Aregay, A., Slunečko, J., Bogovic, P., Korva, M., Rus, K. R., Knap, N., Beicht, J., Kubinski, M., Saletti, G., Steffen, I., Sterle, F., Avšič-Županc, T., Osterhaus, A. D. M. E., & Rimmelzwaan, G. F. (2024). Poor virus-specific T-cell responses early after tick-borne encephalitis virus infection correlate with disease severity. In 8th World One Health Congress: abstract book (1089). https://globalohc.org/8WOHC
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Asawapattanakul, T., Schughart, K., Armando, F., von Köckritz-Blickwede, M., Baumgärtner, W., & Puff, C. (2024). Transcriptome alterations in canine histiocytic sarcoma cells cultured under hypoxic and starvation conditions. In Tierärztliche Praxis / K. Thieme. https://doi.org/10.1055/s-0044-1787319
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