C6

Role of CD177 for neutrophil function post ischemia

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This project investigates the role of the neutrophil surface molecule CD177 in ischemic stroke. Our work in the first funding period revealed that CD177+ and CD177– neutrophils represent stable and molecularly distinct subsets in humans. We also showed that low numbers or the complete absence of CD177+ neutrophils are associated with poorer recovery after clinical stroke. The planned work aims to molecularly understand how these neutrophil subsets interact with microglia and brain endothelial cells, and how this influences stroke outcome. Four main objectives are pursued: identification of CD177 binding partners on microglia using genetic, proteomic, and structural modelling approaches; in-depth analysis of the origin and functional characteristics of CD177+ and CD177– neutrophils, including subtype-specific surface markers and their clinical relevance; characterization of neutrophil interactions in ischemic brain compartments and the impact of CD177 deficiency in mice; and evaluation of how CD177+ and CD177– neutrophils affect endothelial function, inflammation, and repair. The work combines clinical cohorts, mouse models, proteomics, advanced imaging and in vitro organoid systems to define neutrophil-centred CD177-mediated mechanisms in stroke.

Team

Publications

CD177 Expression on Neutrophils Predicts Ischemic Stroke Outcome in Humans

Gronewold, J.; Hagemann, N.; Zhang, Y.; Jung, M.; Fleischer, M.; Mohamud Yusuf, A.; Li, A.; Wang, C.; Dzyubenko, E.; Scholtysik, R.; Klein-Hitpass, L.; Kraus, A.; Tuz, A. A.; Singh, V.; Frank, B.; Mönig, A.; Giese, A.; Graser, C.; Niklas, E. M.; Da Silva Rafael, M.; Nanthagopal, M.; Neumann, J.; Kufner, A.; Liman, T. G.; Liu, Y.; Minnerup, J.; Klotz, L.; Giebel, B.; Tertel, T.; Endres, M.; Hermann, D. M.; Gunzer, M.

2026 Stroke

SARS-CoV-2 Peptide Fragments Selectively Dysregulate Specific Immune Cell Populations via Gaussian Curvature Targeting

Zhang, Y.; Silvestre-Roig, C.; Fu, H.; Alimohamadi, H.; Mandal, T.; Chen, J. W.; Luo, E. W.-C.; Anda, J. D.; Linard Matos, A. L.; Richter, M.; Mennella, A.; Lee, H.; Chan, L. C.; Wang, Y.; Wang, N.; Wang, H.; Wang, X.; Lee, C. K.; Ghosh, S.; Matsui, T.; Weiss, T. M.; Guo, T.; Zhang, M.; Li, D.; Wolfgang, M. C.; Hagan, R. S.; Li, M. M. H.; Gunzer, M.; Sickmann, A.; Frasca, L.; Yeaman, M. R.; Lande, R.; Cui, Q.; Soehnlein, O.; Wong, G. C. L.

2026 Proc Natl Acad Sci

The Nuclear Receptor NR4A1 Serves as a Neutrophil-Intrinsic Regulator Mitigating Stroke Severity

Strecker, J.-K.; Schmidt, Y.; Liebmann, M.; Walter, C.; Roth, S.; Aleth, H.; Börsch, A.-L.; Schmidt-Pogoda, A.; Beuker, C.; Yusuf, A. M.; Revenstorff, J.; Osei-Sarpong, C.; Krafft, L.; Schwarze, A.-S.; Heming, M.; Richter, M.; Kuhlmann, T.; Hucke, S.; Heming, J.-N.; Hansen, U.; Hagemann, N.; Bader, A.; Gao, J.; Walzog, B.; Maier-Begandt, D.; Chevre, R.; Hanschmann, E.-M.; Lücke, M.; Sommer, C.; Hermann, D. M.; Roth, J.; Thomas, C.; Meyer Zu Hörste, G.; Gunzer, M.; Vogl, T.; Zarbock, A.; Rosenbauer, F.; Silvestre-Roig, C.; Söhnlein, O.; Klotz, L.; Minnerup, J.

2025 bioRxiv

Neutrophil Progenitor Mobilization Is a Distinct Feature of STEMI and Predicts Survival

Richter, M.; Von Göwels*, J.; Fähndrich*, M.; Fernandez*, C. L.; Grohn*, K.; Schwarz, D.; Lang, A.; Polzin, A.; Farinola, L.; Gosh, S.; Groba, S. R.; Heming, J.-N.; Aleth, H.; Rübsamen, N.; Radecke, T.; Rosenbauer, F.; Sickmann, A.; Karch, A.; Zarbock, A.; Minnerup, J.; Sindermann, J.; Bender, A.; Rossaint, J.; Ormanns, S.; Gunzer, M.; Reinecke, H.; Makowski, L.; Jung, C.; Silvestre-Roig, C.; Kelm, M.; Gerdes, N.; Chevre, R.; Lange, S.; Soehnlein, O.

2025 Research Square

Gut Microbiota Deficiency Reduces Neutrophil Activation and Is Protective after Ischemic Stroke

Tuz, A. A.; Ghosh, S.; Karsch, L.; Antler, M.; Lakovic, V.; Lohmann, S.; Lehmann, A. H.; Beer, A.; Nagel, D.; Jung, M.; Hörenbaum, N.; Kaygusuz, V.; Qefalia, A.; Alshaar, B.; Amookazemi, N.; Bolsega, S.; Basic, M.; Siveke, J. T.; Heiles, S.; Grüneboom, A.; Lueong, S.; Herz, J.; Sickmann, A.; Hagemann, N.; Hasenberg, A.; Hermann, D. M.; Gunzer, M.; Singh, V.

2025 J Neuroinflammation 

Stroke and Myocardial Infarction Induce Neutrophil Extracellular Trap Release Disrupting Lymphoid Organ Structure and Immunoglobulin Secretion

Tuz, A. A.; Ghosh, S.; Karsch, L.; Ttoouli, D.; Sata, S. P.; Ulusoy, Ö.; Kraus, A.; Hoerenbaum, N.; Wolf, J.-N.; Lohmann, S.; Zwirnlein, F.; Kaygusuz, V.; Lakovic, V.; Tummes, H.-L.; Beer, A.; Gallert, M.; Thiebes, S.; Qefalia, A.; Cibir, Z.; Antler, M.; Korste, S.; Haj Yehia, E.; Michel, L.; Rassaf, T.; Kaltwasser, B.; Abdelrahman, H.; Mohamud Yusuf, A.; Wang, C.; Yin, D.; Haeusler, L.; Lueong, S.; Richter, M.; Engel, D. R.; Stenzel, M.; Soehnlein, O.; Frank, B.; Solo-Nomenjanahary, M.; Ho-Tin-Noé, B.; Siveke, J. T.; Totzeck, M.; Hoffmann, D.; Grüneboom, A.; Hagemann, N.; Hasenberg, A.; Desilles, J.-P.; Mazighi, M.; Sickmann, A.; Chen, J.; Hermann, D. M.; Gunzer, M.; Singh, V.

2024 Nat Cardiovasc Res

Rapid and Fully Automated Blood Vasculature Analysis in 3D Light-Sheet Image Volumes of Different Organs

Spangenberg, P.; Hagemann, N.; Squire, A.; Förster, N.; Krauß, S. D.; Qi, Y.; Yusuf, A. M.; Wang, J.; Grüneboom, A.; Kowitz, L.; Korste, S.; Totzeck, M.; Cibir, Z.; Tuz, A. A.; Singh, V.; Siemes, D.; Struensee, L.; Engel, D. R.; Ludewig, P.; Nascentes Melo, L. M.; Helfrich, I.; Chen, J.; Gunzer, M.; Hermann, D. M.; Mosig, A. 

2023 Cell Reports Methods