Stem Cell Center
Institute of Stem Cell Research
The Institute of Stem Cell Research (ISF) investigates the basic molecular and cellular mechanisms for stem cell maintenance and stem cell differentiation (Camargo et al., Nature, 2019, O'Neill et al., Science, 2022). On this basis, the ISF develops approaches for the replacement of degenerated cell types, either by activation of endogenous stem cells or by re-programming other endogenous cells for repair (Russo et al., Cell Stem Cell, 2021, Sonsala et al., Neuron, 2024, Pereira et al., Nature Neuroscience, 2024).
The Institute of Stem Cell Research (ISF) investigates the basic molecular and cellular mechanisms for stem cell maintenance and stem cell differentiation (Camargo et al., Nature, 2019, O'Neill et al., Science, 2022). On this basis, the ISF develops approaches for the replacement of degenerated cell types, either by activation of endogenous stem cells or by re-programming other endogenous cells for repair (Russo et al., Cell Stem Cell, 2021, Sonsala et al., Neuron, 2024, Pereira et al., Nature Neuroscience, 2024).
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Koupourtidou, C. ; Schwarz, V. ; Sanchez-Gonzalez, R. ; Breunig, C. ; Fischer, J. ; Sirko, S. ; Götz, M. ; Hauck, S.M. ; Stricker, S.H. ; Ninkovic, J.
Tlr2 and Cxcr3 pathways modulate scar formation after traumatic brain injury.Sirko, S. ; Schichor, C. ; Tonn, J.-. ; Götz, M.
Injury-induced plasticity of parenchymal astrocytes in the human cerebral cortex.Bres, E.E. ; Safina, D. ; Mueller, J. ; Esser, A. ; Yang, H. ; Bedner, P. ; Helluy, X. ; Jansen, S. ; Manahan-Vaughan, D. ; Steinhaeuser, C. ; Pietrzik, C.U. ; Götz, M. ; Faissner, A.
Lrp1 loss in radial glia and their progeny - astrocytic dysfunctions contribute to spontaneous epileptogenesis.Mattugini, N. ; Bocchi, R. ; Scheuss, V. ; Russo, G.L. ; Torper, O. ; Lao, C.L. ; Götz, M.
Inducing different neuronal subtypes from astrocytes in the injured mouse cerebral cortex.Lepko, T. ; Pusch, M. ; Müller, T. ; Schulte, D. ; Ehses, J. ; Kiebler, M. ; Hasler, J. ; Huttner, H.B. ; Vandenbroucke, R.E. ; Vandendriessche, C. ; Modic, M. ; Martin-Villalba, A. ; Zhao, S. ; LLorens-Bobadilla, E. ; Schneider, A. ; Fischer, A. ; Breunig, C. ; Stricker, S.H. ; Götz, M. ; Ninkovic, J.
Choroid plexus-derived miR-204 regulates the number of quiescent neural stem cells in the adult brain.Baumann, V. ; Wiesbeck, M. ; Breunig, C.T. ; Braun, J.M. ; Köferle, A. ; Ninkovic, J. ; Götz, M. ; Stricker, S.H.
Targeted removal of epigenetic barriers during transcriptional reprogramming.Klaus, J. ; Kanton, S. ; Kyrousi, C. ; Ayo-Martin, A.C. ; Di Giaimo, R. ; Riesenberg, S. ; O'Neill, A.C. ; Camp, J.G. ; Tocco, C. ; Santel, M. ; Rusha, E. ; Drukker, M. ; Schroeder, M. ; Götz, M. ; Robertson, S.P. ; Treutlein, B. ; Cappello, S.
Altered neuronal migratory trajectories in human cerebral organoids derived from individuals with neuronal heterotopia.Camargo Ortega, G. ; Falk, S. ; Johansson, P.A. ; Peyre, E. ; Broix, L. ; Sahu, S.K. ; Hirst, W. ; Schlichthaerle, T. ; de Juan Romero, C. ; Draganova, K. ; Vinopal, S. ; Chinnappa, K. ; Gavranovic, A. ; Karakaya, T. ; Steininger, T. ; Merl-Pham, J. ; Feederle, R. ; Shao, W. ; Shi, S.H. ; Hauck, S.M. ; Jungmann, R. ; Bradke, F. ; Borrell, V. ; Geerlof, A. ; Reber, S. ; Tiwari, V.K. ; Huttner, W.B. ; Wilsch-Bräuninger, M. ; Nguyen, L.A. ; Götz, M.
The centrosome protein AKNA regulates neurogenesis via microtubule organization.