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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Chhabra, N.F. ; Wu, M. ; Fütterer, M. ; Irmler, M. ; Beckers, J. ; Götz, M. ; Rozman, J. ; Przemeck, G.K.H. ; Hrabě de Angelis, M.
Systemic metabolic effects exerted by a point mutation in the RED subdomain of PAX6.Falkner, S. ; Grade, S. ; Dimou, L. ; Conzelmann, K.-H. ; Bonhoeffner, T. ; Götz, M. ; Hübener, M.
Transplanted embryonic neurons integrate into adult neocortical circuits.Falkner, S. ; Grade, S. ; Dimou, L. ; Conzelmann, K.K. ; Bonhoeffner, T. ; Götz, M. ; Hübner, M.
Transplanted embryonic neurons integrate into adult neocortical circuits.Köferle, A. ; Worf, K. ; Breunig, C. ; Baumann, V. ; Herrero, J. ; Wiesbeck, M. ; Hutter, L.H. ; Götz, M. ; Fuchs, C. ; Beck, S. ; Stricker, S.H.
CORALINA: A universal method for the generation of gRNA libraries for CRISPR-based screening.Ramesh, V. ; Bayam, E. ; Cernilogar, F.M. ; Bonapace, I.M. ; Schulze, M. ; Riemenschneider, M.J. ; Schotta, G. ; Götz, M.
Loss of Uhrf1 in neural stem cells leads to activation of retroviral elements and delayed neurodegeneration.García-Cáceres, C. ; Quarta, C. ; Varela, L. ; Gao, Y. ; Gruber, T. ; Legutko, B. ; Jastroch, M. ; Johansson, P.A. ; Ninkovic, J. ; Yi, C.-X. ; Le Thuc, O. ; Szigeti-Buck, K. ; Cai, W. ; Meyer, C.W. ; Pfluger, P.T. ; Fernandez, A.M. ; Luquet, S. ; Woods, S.C. ; Torres-Alemán, I. ; Kahn, C.R. ; Götz, M. ; Horvath, T.L. ; Tschöp, M.H.
Astrocytic insulin signaling couples brain glucose uptake with nutrient availability.Masserdotti, G. ; Gascón, S. ; Götz, M.
Direct neuronal reprogramming: Learning from and for development.Barbosa, J.S. ; di Giaimo, R. ; Götz, M. ; Ninkovic, J.
Single-cell in vivo imaging of adult neural stem cells in the zebrafish telencephalon.Martínez-Martínez, M.Á. ; Romero, C. ; Fernandez, V. ; Cárdenas, A. ; Götz, M. ; Borrell, V.
A restricted period for formation of outer subventricular zone defined by Cdh1 and Trnp1 levels.Gascón, S. ; Murenu, E. ; Masserdotti, G. ; Ortega, F. ; Russo, G.L. ; Petrik, D. ; Deshpande, A. ; Heinrich, C. ; Karow, M. ; Robertson, S.P. ; Schroeder, T. ; Beckers, J. ; Irmler, M. ; Berndt, C. ; Friedmann Angeli, J.P.F. ; Conrad, M. ; Berninger, B. ; Götz, M.
Identification and successful negotiation of a metabolic checkpoint in direct neuronal repogramming.Lahiri, S. ; Sun, N. ; Solis-Mezarino, V. ; Fedisch, A. ; Ninkovic, J. ; Feuchtinger, A. ; Götz, M. ; Walch, A.K. ; Imhof, A.
In situ detection of histone variants and modifications in mouse brain using imaging mass spectrometry.Hüttl, R.E. ; Eckstein, S. ; Stahl, T. ; Petricca, S. ; Ninkovic, J. ; Götz, M. ; Huber, A.B.
Functional dissection of the Pax6 paired domain: Roles in neural tube patterning and peripheral nervous system development.