Kyratsous, N. I.; Bauer, I. J.; Zhang, G.; Pesic, M.; Bartholomäus, I.; Mues, M.; Fang, P.; Woerner, M.; Everts, S.; Ellwart, J. W.et al.; Watt, J. M.; Potter, B. V. L.; Hohlfeld, R.; Wekerle, H.; Kawakami, N.: Visualizing context-dependent calcium signaling in encephalitogenic T cells in vivo by two-photon microscopy. Proceedings of the National Academy of Sciences of the United States of America 114 (31), S. E6381 - E6389 (2017)
Ben-Nun, A.; Kaushansky, N.; Kawakami, N.; Krishnamoorthy, G.; Berer, K.; Liblau, R.; Hohlfeld, R.; Wekerle, H.: From classic to spontaneous and humanized models of multiple sclerosis: Impact on understanding pathogenesis and drug development. Journal of Autoimmunity 54, S. 33 - 50 (2014)
Pesic, M.; Bartholomäus, I.; Kyratsous, N. I.; Heissmeyer, V.; Wekerle, H.; Kawakami, N.: 2-photon imaging of phagocyte-mediated T cell activation in the CNS. The Journal of Clinical Investigation 123 (3), S. 1192 - 1201 (2013)
Pesic, M.; Kawakami, N.; Bartholomäus, I.; Kyratsous, N. I.: Imaging of immune cell behavior and function in multiple sclerosis and experimental autoimmune encephalomyelitis. Clinical and Experimental Neuroimmunology 4 (Suppl. 1), S. 27 - 35 (2013)
Pohl, M.; Kawakami, N.; Kitic, M.; Bauer, J.; Martins, R.; Fischer, M.-T.; Machado-Santos, J.; Mader, S.; Ellwart, J. W.; Misu, T.et al.; Fujihara, K.; Wekerle, H.; Reindl, M.; Lassmann, H.; Bradl, M.: T cell-activation in neuromyelitis optica lesions plays a role in their formation. Acta Neuropathologica Communications 1, 85 (2013)
Kawakami, N.; Bartholomäus, I.; Pesic, M.; Mues, M.: An autoimmunity odyssey: How autoreactive T cells infiltrate into the CNS. Immunological Reviews 248 (Sp. Iss.), S. 140 - 155 (2012)
Ng, J. K. M.; Malotka, J.; Kawakami, N.; Derfuss, T.; Khademi, M.; Olsson, T.; Linington, C.; Odaka, M.; Tackenberg, B.; Pruess, H.et al.; Schwab, J. M.; Harms, L.; Harms, H.; Sommer, C.; Rasband, M. N.; Eshed-Eisenbach, Y.; Peles, E.; Hohlfeld, R.; Yuki, N.; Dornmair, K.; Meinl, E.: Neurofascin as a target for autoantibodies in peripheral neuropathies. Neurology 79 (23), S. 2241 - 2248 (2012)
Cordiglieri, C.; Odoardi, F.; Zhang, B.; Nebel, M.; Kawakami, N.; Klinkert, W. E. F.; Lodygin, D.; Luhder, F.; Breunig, E.; Schild, D.et al.; Ulaganathan, V. K.; Dornmair, K.; Dammermann, W.; Potter, B. V. L.; Guse, A. H.; Flügel, A.: Nicotinic acid adenine dinucleotide phosphate-mediated calcium signalling in effector T cells regulates autoimmunity of the central nervous system. Brain 133, S. 1930 - 1943 (2010)
Kawakami, N.: Intravital imaging of autoreactive T cells in experimental autoimmune encephalomyelitis as animal model of multiple sclerosis. Igaku no Ayumi 232 (13), S. 92 - 96 (2010)
Kawakami, N.; Flügel, A.: Knocking at the brain's door: Intravital two-photon imaging of autoreactive T cell interactions with CNS structures. Springer Seminars in Immunopathology 32 (3), S. 275 - 287 (2010)
Dammermann, W.; Zhang, B.; Nebel, M.; Cordiglieri, C.; Odoardi, F.; Kirchberger, T.; Kawakami, N.; Dowden, J.; Schmid, F.; Dornmair, K.et al.; Hohenegger, M.; Flügel, A.; Guse, A. H.; Potter, B. V. L.: NAADP-mediated Ca2+ signaling via type 1 ryanodine receptor in T cells revealed by a synthetic NAADP antagonist. Proceedings of the National Academy of Sciences of the United States of America 106 (26), S. 10678 - 10683 (2009)
Flügel, A.; Odoardi, F.; Nosov, M.; Kawakami, N.: Autoaggressive effector T cells in the course of experimental autoimmune encephalomyelitis visualized in the light of two-photon microscopy. Journal of Neuroimmunology 191 (1-2), S. 86 - 97 (2007)
Grundtner, R.; Dornmair, K.; Dahm, R.; Flügel, A.; Kawakami, N.; Zeitelhofer, M.; Schoderboeck, L.; Nosov, M.; Selzer, E.; Willheim, M.et al.; Kiebler, M.; Wekerle, H.; Lassmann, H.; Bradl, M.: Transition from enhanced T cell infiltration to inflammation in the myelin-degenerative central nervous system. Neurobiology of Disease 28 (3), S. 261 - 275 (2007)
Odoardi, F.; Kawakami, N.; Klinkert, W. E. F.; Wekerle, H.; Flügel, A.: Blood-borne soluble protein antigen intensifies T cell activation in autoimmune CNS lesions and exacerbates clinical disease. Proceedings of the National Academy of Sciences of the United States of America 104 (47), S. 18625 - 18630 (2007)
Kawakami, N.; Nägerl, U. V.; Wekerle, H.; Flügel, A.: Live-imaging of encephalitogenic T lymphocytes in the living target tissue. Journal of Neuroimmunology 154 (1-2 Sp. Iss. Sp. Iss. SI), S. 224 - 224 (2004)
Thurau, S. R.; Mempel, T. R.; Flügel, A.; Diedrichs-Moehring, M.; Krombach, F.; Kawakami, N.; Wildner, G.: The fate of autoreactive, GFP(+) T cells in rat models of uveitis analyzed by intravital fluorescence microscopy and FACS. International Immunology 16 (11), S. 1573 - 1582 (2004)
Kawakami, N.: Intravital imaging of T cells within the spinal cord. In: Intravital Imaging of Dynamic Bone and Immune Systems. Methods in Molecular Biology, vol 1763, S. 119 - 127 (Hg. Ishii, M.). Humana Press, New York (2018)
Kawakami, N.; Bartholomäus, I.; Pesic, M.; Kyratsous, N. I.: Intravital Imaging of Autoreactive T Cells in Living Animals. In: LABORATORY METHODS IN CELL BIOLOGY: IMAGING, S. 149 - 168. ELSEVIER ACADEMIC PRESS INC, 525 B STREET, SUITE 1900, SAN DIEGO, CA 92101-4495 USA (2012)
Kawakami, N.: Intravital imaging of the autoreactive T cells infiltration through the blood-brain barrier. Habilitation, Ludwig-Maximilians-Universität, München (2013)
Hormone steuern durch komplexe Regelkreise die Anpassungen von Organismen an ihre Umwelt. Verändern sich diese hormonellen Regelkreise schnell genug, um mit den weltweit immer schneller werdenden Umweltveränderungen mitzuhalten? Am Hormon Kortikosteron wird bei Vögeln gezeigt, dass verschiedene Arten unterschiedliche Konzentrationen aufweisen…