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Seneste peer-review'ede publikationer ved MBG

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Peer-review'ede publikationer ved MBG - alle år

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van der Wal, D. E., Du, V. X., Lo, KS., Rasmussen, J. T., Verhoef, S. & Akkerman, J. W. N. (2010). Platelet apoptosis by cld-induced glycoportein Ibα clustering. Journal of Thrombosis and Haemostasis, 8(11), 2554-2562. https://doi.org/10.1111/j.1538-7836.2010.04043.x
Vallese, D., Negroni, E., Duguez, S., Ferry, A., Trollet, C., Aamiri, A., Vosshenrich, C. A., Füchtbauer, E.-M., Di Santo, J. P., Vitiello, L., Butler-Browne, G. & Mouly, V. (2013). The Rag2-I/2rb-Dmd- Mouse: a Novel Dystrophic and Immunodeficient Model to Assess Innovating Therapeutic Strategies for Muscular Dystrophies. Molecular Therapy, 21(10), 1950-1957. https://doi.org/10.1038/mt.2013.186
Valia Madapally, H., Hussein, A., Eriksen, M. W., Pedersen, B. P., Stokes, D. L. & Khandelia, H. (2026). On the mechanism of K+ transport through the inter-subunit tunnel of KdpFABC. The Journal of general physiology, 158(1). https://doi.org/10.1085/jgp.202513794
Valero Moreno, J., Centola, M., Ma, Y., Škugor, M., Yu, Z., Haydell, M. W., Keppner, D. & Famulok, M. (2019). Design, assembly, characterization, and operation of double-stranded interlocked DNA nanostructures. Nature Protocols, 14(10), 2818-2855. https://doi.org/10.1038/s41596-019-0198-7
Valero Moreno, J., Pal, N., Dhakal, S., Walter, N. G. & Famulok, M. (2018). A bio-hybrid DNA rotor–stator nanoengine that moves along predefined tracks. Nature Nanotechnology, 13(6), 496-503. https://doi.org/10.1038/s41565-018-0109-z
Valero Moreno, J., Lohmann, F. & Famulok, M. (2017). Interlocked DNA topologies for nanotechnology. Current Opinion in Biotechnology, 48, 159-167. https://doi.org/10.1016/j.copbio.2017.04.002
Valero Moreno, J., Lohmann, F., Keppner, D. & Famulok, M. (2016). Single‐Stranded Tile Stoppers for Interlocked DNA Architectures. ChemBioChem, 17(12), 1146-1149. https://doi.org/10.1002/cbic.201500685
Valero Moreno, J., Escuder, B., Miravet, J. F. & de Mendoza, J. (2012). Anion-responsive diguanidinium-based chiral organogelators. Chemistry - A European Journal, 18(41), 13038-13047. http://europepmc.org/abstract/med/22936304
Valero Moreno, J., Van Gool, M., Pérez-Fernández, R., Castreño, P., Sánchez-Quesada, J., Prados, P. & de Mendoza, J. (2012). Non-peptidic cell-penetrating agents: synthesis of oligomeric chiral bicyclic guanidinium vectors. Organic & Biomolecular Chemistry, 10, 5417-5430. https://doi.org/10.1039/C2OB25467K
Valero, J. & Famulok, M. (2020). Regeneration of Burnt Bridges on a DNA Catenane Walker. Angewandte Chemie - International Edition, 59(38), 16366-16370. https://doi.org/10.1002/anie.202004447
Valen, E., Preker, P., Andersen, P. R., Zhao, X., Chen, Y., Ender, C., Dueck, A., Meister, G., Sandelin, A. G. & Jensen, T. H. (2011). Biogenic mechanisms and utilization of small RNAs derived from human protein-coding genes. Nature Structural and Molecular Biology, 18(9), 1075-82. https://doi.org/10.1038/nsmb.2091
Vajda, Z., Pedersen, M., Füchtbauer, E.-M., Wertz, K., Stodkilde-Jørgensen, H., Sulyok, E., Doczi, T., Neely, N. D., Agre, P., Frokiar, J. & Nielsen, S. (2002). Delayed onset of brain endema and mislocalization of aquaporin-4 in dystrophin-null transgenic mice. Proceedings of the National Academy of Sciences (PNAS), 99, 13131-13136.
Vader, P., Fens, M. HAM., Sachini, N., van Oirschot, B. A., Andringa, G., Egberts, A. CG., Gaillard, C. AJM., Rasmussen, J. T., van Wijk, R., van Solinge, W. W. & Schiffelers, R. M. (2013). Taxol®-induced phosphatidylserine exposure and microvesicle formation in red blood cells is mediated by its vehicle Cremophor® EL. Nanomedicine, 8(7), 1127-1135. https://doi.org/10.2217/NNM.12.163
Utley, D., Budnick, A., Radutoiu, S. & Sederoff, H. (2026). Circular RNAs in Lotus japonicus Responses to Nutrient Supply and Mesorhizobium Symbiosis. Plant, Cell and Environment. Advance online publication. https://doi.org/10.1111/pce.70496
Usaite, I., Biswas, D., Dijkstra, K., Watkins, T. B., Pich, O., Puttick, C., Angelova, M., Thakkar, K., Hiley, C., Birkbak, N., Kok, M., Zaccaria, S., Wu, Y., Litchfield, K., Swanton, C. & Kanu, N. (2023). Quantifying the impact of immunotherapy on RNA dynamics in cancer. Journal for Immunotherapy of Cancer, 11(11), Artikel e007870. https://doi.org/10.1136/jitc-2023-007870
Ung, K. L., Schulz, L., Stokes, D. L., Hammes, U. Z. & Pedersen, B. P. (2023). Substrate recognition and transport mechanism of the PIN-FORMED auxin exporters. Trends in Biochemical Sciences, 48(11), 937-948. https://doi.org/10.1016/j.tibs.2023.07.006
Umakoshi, H., Persson, J., Kroon, M., Johansson, H. O., Otzen, D. E., Kuboi, R. & Tjerneld, F. (2000). Model process for separation based on unfolding and refolding of chymotrypsin inhibitor 2 in thermoseparating polymer two-phase systems. Journal of Chromatography B: Biomedical Sciences and Applications, 743(1-2), 13-19. https://doi.org/10.1016/S0378-4347(00)00190-0
Ulleland, M., Eilertsen, I., Quadros, E. V., Rothenberg, S. P., Fedosov, S., Sundrehagen, E. & Ørning, L. (2002). Direct assay for cobalamin bound to transcobalamin (holo-transcobalamin) in serum. Clinical chemistry, 48, 526-532.
Uhd, J., Okholm, A., Kjems, J. & Astakhova, K. (2017). Amplification-free liquid biopsy by fluorescence approach. I Biotech, Biomaterials and Biomedical - TechConnect Briefs 2017 (Bind 3, s. 106-109). TechConnect. https://briefs.techconnect.org/wp-content/volumes/TCB2017v3/pdf/762.pdf
Uhd, J., Miotke, L., Ji, H. P., Dunaeva, M., Pruijn, G. J. M., Jørgensen, C. D., Kristoffersen, E. L., Birkedal, V., Yde, C. W., Nielsen, F. C., Hansen, J. & Astakhova, K. (2020). Ultra-fast detection and quantification of nucleic acids by amplification-free fluorescence assay. Analyst, 145(17), 5836-5844. https://doi.org/10.1039/d0an00676a
Ugleholdt, R., Pedersen, J., Bassi, M. R., Füchtbauer, E.-M., Jørgensen, S. M., Kissow, H.-L., Nytofte, N., Poulsen, S. S., Rosenkilde, M. M., Seino, Y., Thams, P., Holst, P. J. & Holst, J. J. (2011). Transgenic Rescue of Adipocyte Glucose-dependent Insulinotropic Polypeptide Receptor Expression Restores High Fat Diet-induced Body Weight Gain. Journal of Biological Chemistry, 286(52), 44632-44645. https://doi.org/10.1074/jbc.M111.311779
Uckert, W., Becker, C., Gladow, M., Klein, D., Kammertoens, T., Pedersen, L. & Blankenstein, T. (2000). Efficient gene transfer into primary human CD8+ T Lymphocytes by MuLV-10A1 retrovirus pseudotype. Human Gene Therapy, 11, 1005-1014.