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of 2 327
pro vyhledávání: '"Van-Rooijen N"'
Autor:
Rawley, O., O'Sullivan, J.M., Chion, A., Keyes, S., Lavin, M., van Rooijen, N., Brophy, T.M., Fallon, P., Preston, R.J.S., O'Donnell, J.S. *
Publikováno v:
In Journal of Thrombosis and Haemostasis May 2015 13(5):821-826
Autor:
Partecke, L.I., Günther, C., Hagemann, S., Jacobi, C., Merkel, M., Sendler, M., van Rooijen, N., Käding, A., Nguyen Trung, D., Lorenz, E., Diedrich, S., Weiss, F.U., Heidecke, C.D., von Bernstorff, W.
Publikováno v:
In Pancreatology September-October 2013 13(5):508-516
Publikováno v:
Proceedings of the 2022 47th International Conference on Infrared, Millimeter and Terahertz Waves (IRMMW-THz)
We report the measured results of a sparse, 4x1 scanning lens phased array prototype at W-band that is capable of beam steering a directive (>30 dBi) beam towards ±20° with sidelobe levels around -10 dB. The array elements are high-aperture-efficie
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6400ea92e506dffac844bd210f6ec492
https://doi.org/10.1109/irmmw-thz50927.2022.9895677
https://doi.org/10.1109/irmmw-thz50927.2022.9895677
Akademický článek
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Autor:
Markovic, D. S., Vinnakota, K., Chirasani, S., Synowitz, M., Raguet, H., Stock, K., Sliwa, M., Lehmann, S., Kälin, R., van Rooijen, N., Holmbeck, K., Heppner, F. L., Kiwit, J., Matyash, V., Lehnardt, S., Kaminska, B., Glass, R., Kettenmann, H., Cavenee, Webster K.
Publikováno v:
Proceedings of the National Academy of Sciences of the United States of America, 2009 Jul . 106(30), 12530-12535.
Externí odkaz:
https://www.jstor.org/stable/40484170
Autor:
Quattrocchi, V., Langellotti, C., Pappalardo, J.S., Olivera, V., Di Giacomo, S., van Rooijen, N., Mongini, C., Waldner, C., Zamorano, P.I.
Publikováno v:
In Antiviral Research 2011 92(2):262-270
Autor:
Keijser, S., de Keizer, R.J.W., Prins, F.A., Tanke, H.J., van Rooijen, N., Vrensen, G.F.J.M., Jager, M.J.
Publikováno v:
In Experimental Eye Research 2006 83(5):1188-1195
Autor:
Turner, J, Pionnier, N, Furlong-Silva, J, Sjoberg, H, Cross, S, Halliday, A, Guimaraes, A, Cook, D, Steven, A, Van Rooijen, N, Allen, J, Jenkins, S, Taylor, M
Publikováno v:
PLoS Pathogens, 14(3):e1006949. Public Library of Science
Turner, J D, Pionnier, N, Furlong-Silva, J, Sjoberg, H, Cross, S, Halliday, A, Guimaraes, A F, Cook, D A N, Steven, A, van Rooijen, N, Allen, J E, Jenkins, S J & Taylor, M J 2018, ' Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia ', PLoS Pathogens, vol. 14, no. 3, e1006949 . https://doi.org/10.1371/journal.ppat.1006949
PLoS Pathogens, Vol 14, Iss 3, p e1006949 (2018)
Turner, J D, Pionnier, N, Furlong-Silva, J, Sjoberg, H, Cross, S, Halliday, A, Guimaraes, A F, Cook, D A N, Steven, A, Van Rooijen, N, Allen, J E, Jenkins, S J & Taylor, M J 2018, ' Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia ', PLoS Pathogens, vol. 14, no. 3, e1006949 . https://doi.org/10.1371/journal.ppat.1006949
PLoS Pathogens
PLOS PATHOGENS
Turner, J D, Pionnier, N, Furlong-Silva, J, Sjoberg, H, Cross, S, Halliday, A, Guimaraes, A F, Cook, D A N, Steven, A, van Rooijen, N, Allen, J E, Jenkins, S J & Taylor, M J 2018, ' Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia ', PLoS Pathogens, vol. 14, no. 3, e1006949 . https://doi.org/10.1371/journal.ppat.1006949
PLoS Pathogens, Vol 14, Iss 3, p e1006949 (2018)
Turner, J D, Pionnier, N, Furlong-Silva, J, Sjoberg, H, Cross, S, Halliday, A, Guimaraes, A F, Cook, D A N, Steven, A, Van Rooijen, N, Allen, J E, Jenkins, S J & Taylor, M J 2018, ' Interleukin-4 activated macrophages mediate immunity to filarial helminth infection by sustaining CCR3-dependent eosinophilia ', PLoS Pathogens, vol. 14, no. 3, e1006949 . https://doi.org/10.1371/journal.ppat.1006949
PLoS Pathogens
PLOS PATHOGENS
Eosinophils are effectors in immunity to tissue helminths but also induce allergic immunopathology. Mechanisms of eosinophilia in non-mucosal tissues during infection remain unresolved. Here we identify a pivotal function of tissue macrophages (Mϕ)
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=pmid_dedup__::4a74fc7390372a1750cca86c3fc90377
https://ora.ox.ac.uk/objects/uuid:d975515a-2b89-4dbe-8b63-1e41a702cb04
https://ora.ox.ac.uk/objects/uuid:d975515a-2b89-4dbe-8b63-1e41a702cb04
Autor:
Van Leeuwen, M. A., Costes, L. M.M., Van Berkel, L. A., Simons-Oosterhuis, Y., Du Pré, M. F., Kozijn, A. E., Raatgeep, H. C., Lindenbergh-Kortleve, D. J., Van Rooijen, N., Koning, F., Samsom, J. N.
Publikováno v:
Van Leeuwen, M A, Costes, L M M, Van Berkel, L A, Simons-Oosterhuis, Y, Du Pré, M F, Kozijn, A E, Raatgeep, H C, Lindenbergh-Kortleve, D J, Van Rooijen, N, Koning, F & Samsom, J N 2017, ' Macrophage-mediated gliadin degradation and concomitant IL-27 production drive IL-10-and IFN-γ 3-secreting Tr1-like-cell differentiation in a murine model for gluten tolerance ', Mucosal Immunology, vol. 10, no. 3, pp. 635-649 . https://doi.org/10.1038/mi.2016.76
Mucosal Immunology, 10(3), 635-649. Nature Publishing Group
Mucosal Immunology, 10(3), 635-649. Nature Publishing Group
Celiac disease is caused by inflammatory T-cell responses against the insoluble dietary protein gliadin. We have shown that, in humanized mice, oral tolerance to deamidated chymotrypsin-digested gliadin (CT-TG2-gliadin) is driven by tolerogenic inter
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::c44833b8f4d4e5288af47943ae2fa75c
https://research.vumc.nl/en/publications/5291f06d-2f43-4761-934b-aa597808555a
https://research.vumc.nl/en/publications/5291f06d-2f43-4761-934b-aa597808555a
Autor:
Leonard W. Seymour, van Rooijen N, Ryan Cawood, Sam Illingworth, Karel Ulbrich, Hermiston T, Subr, Kerry D. Fisher, A Hale, C Herbert, N Green
Publikováno v:
Nanomedicine, 7(11), 1683-1695. Future Medicine Ltd.
Green, N K, Hale, A, Cawood, R, Illingworth, S, Herbert, C, Hermiston, T, Subr, V, Ulbrich, K, van Rooijen, N, Seymour, L W & Fisher, K D 2012, ' Tropism ablation and stealthing of oncolytic adenovirus enhances systemic delivery to tumors and improves virotherapy of cancer ', Nanomedicine, vol. 7, no. 11, pp. 1683-1695 . https://doi.org/10.2217/NNM.12.50
Green, N K, Hale, A, Cawood, R, Illingworth, S, Herbert, C, Hermiston, T, Subr, V, Ulbrich, K, van Rooijen, N, Seymour, L W & Fisher, K D 2012, ' Tropism ablation and stealthing of oncolytic adenovirus enhances systemic delivery to tumors and improves virotherapy of cancer ', Nanomedicine, vol. 7, no. 11, pp. 1683-1695 . https://doi.org/10.2217/NNM.12.50
Intravenous delivery of therapeutic virus particles remains a major goal for virotherapy of metastatic cancer. Avoiding phagocytic capture and unwanted infection of nontarget cells is essential for extended plasma particle kinetics, and simply ablati