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).
Research Groups
Contact
Our Publications
Filter
Rehman, R. ; Miller, M. ; Krishnamurthy, S.S. ; Kjell, J. ; Elsayed, L. ; Hauck, S.M. ; olde Heuvel, F. ; Conquest, A. ; Chandrasekar, A. ; Ludolph, A. ; Boeckers, T. ; Mulaw, M.A. ; Götz, M. ; Morganti-Kossmann, M.C. ; Takeoka, A. ; Roselli, F.
Met/HGFR triggers detrimental reactive microglia in TBI.Hersbach, B.A. ; Fischer, D.S. ; Masserdotti, G. ; Deeksha ; Mojžišová, K. ; Waltzhöni, T. ; Rodriguez-Terro, D. ; Heinig, M. ; Theis, F.J. ; Götz, M. ; Stricker, S.H.
Probing cell identity hierarchies by fate titration and collision during direct reprogramming.O'Neill, A.C. ; Uzbas, F. ; Antognolli, G. ; Merino, F.L. ; Draganova, K. ; Jäck, A. ; Zhang, S. ; Pedini, G. ; Schessner, J.P. ; Cramer, K. ; Schepers, A. ; Metzger, F. ; Esgleas Izquierdo, M. ; Smialowski, P. ; Guerrini, R. ; Falk, S. ; Feederle, R. ; Freytag, S. ; Wang, Z. ; Bahlo, M. ; Jungmann, R. ; Bagni, C. ; Borner, G.H.H. ; Robertson, S.P. ; Hauck, S.M. ; Götz, M.
Spatial centrosome proteome of human neural cells uncovers disease-relevant heterogeneity.Thomas, J. ; Martinez-Reza, M.F. ; Thorwirth, M. ; Zarb, Y. ; Conzelmann, K.K. ; Hauck, S.M. ; Grade, S. ; Götz, M.
Excessive local host-graft connectivity in aging and amyloid-loaded brain.Grade, S. ; Thomas, J. ; Zarb, Y. ; Thorwirth, M. ; Conzelmann, K.K. ; Hauck, S.M. ; Götz, M.
Brain injury environment critically influences the connectivity of transplanted neurons.Camargo Ortega, G. ; Götz, M.
Centrosome heterogeneity in stem cells regulates cell diversity.Sanchez-Gonzalez, R. ; Koupourtidou, C. ; Lepko, T. ; Zambusi, A. ; Novoselc, K.T. ; Durovic, T. ; Aschenbroich, S. ; Schwarz, V. ; Breunig, C. ; Straka, H. ; Huttner, H.B. ; Irmler, M. ; Beckers, J. ; Wurst, W. ; Zwergal, A. ; Schauer, T. ; Straub, T. ; Czopka, T. ; Trümbach, D. ; Götz, M. ; Stricker, S.H. ; Ninkovic, J.
Innate immune pathways promote oligodendrocyte progenitor cell recruitment to the injury site in adult Zebrafish brain.Giehrl-Schwab, J. ; Giesert, F. ; Rauser, B. ; Lao, C.L. ; Hembach, S. ; Lefort, S. ; Ibarra Del Rio, I.A. ; Koupourtidou, C. ; Luecken, M. ; Truong, D.J.J. ; Fischer-Sternjak, J. ; Masserdotti, G. ; Prakash, N. ; Ninkovic, J. ; Hölter, S.M. ; Vogt Weisenhorn, D.M. ; Theis, F.J. ; Götz, M. ; Wurst, W.
Parkinson's disease motor symptoms rescue by CRISPRa-reprogramming astrocytes into GABAergic neurons.Bauer A. ; Puglisi, M. ; Nagl, D. ; Schick, J. ; Werner, T. ; Klingl, A. ; El Andari, J. ; Hornung, V. ; Kessler, H. ; Götz, M. ; Grimm, D. ; Brack-Werner, R.
Molecular signature of astrocytes for gene delivery by the synthetic adeno-associated viral vector rAAV9P1.Schaberg, E. ; Götz, M. ; Faissner, A.
The extracellular matrix molecule tenascin-C modulates cell cycle progression and motility of adult neural stem/progenitor cells from the subependymal zone.Bocchi, R. ; Masserdotti, G. ; Götz, M.
Direct neuronal reprogramming: Fast forward from new concepts toward therapeutic approaches.